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        <reference>
          <otype>Reference</otype>
          <mtid>71928338</mtid>
          <link>/api/reference/71928338</link>
          <label>1. Dasgupta 2024: Mycoremediation of different wastewater toxicants and its prospects in developing value-added products: A review., J. Water Process Eng., 58, p. 104747, DOI: 10.1016/j.jwpe.2023.104747</label>
          <listPosition>1</listPosition>
          <doi>10.1016/j.jwpe.2023.104747</doi>
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        <reference>
          <otype>Reference</otype>
          <mtid>71928339</mtid>
          <link>/api/reference/71928339</link>
          <label>2. Golovko 2022: Uptake of perfluoroalkyl substances, pharmaceuticals, and parabens by oyster mushrooms (Pleurotus ostreatus) and exposure risk in human consumption., Chemosphere, 291, p. 132898, DOI: 10.1016/j.chemosphere.2021.132898</label>
          <listPosition>2</listPosition>
          <doi>10.1016/j.chemosphere.2021.132898</doi>
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        <reference>
          <otype>Reference</otype>
          <mtid>71928340</mtid>
          <link>/api/reference/71928340</link>
          <label>3. Mohamadhasani 2022: Growth response and mycoremediation of heavy metals by fungus Pleurotus sp., Sci. Rep., 12, p. 19947, DOI: 10.1038/s41598-022-24349-5</label>
          <listPosition>3</listPosition>
          <doi>10.1038/s41598-022-24349-5</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928341</mtid>
          <link>/api/reference/71928341</link>
          <label>4. Kumar 2020: Ligninolytic enzymes and its mechanisms for degradation of lignocellulosic waste in environment., Heliyon, 6, p. e03170, DOI: 10.1016/j.heliyon.2020.e03170</label>
          <listPosition>4</listPosition>
          <doi>10.1016/j.heliyon.2020.e03170</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928342</mtid>
          <link>/api/reference/71928342</link>
          <label>5. Gupta 2024: Valorization of Spent Mushroom Substrate (SMS) as a sustainable approach to remediation of xenobiotic compounds in groundwater—A comprehensive review., Groundw. Sustain. Dev., 26, p. 101290, DOI: 10.1016/j.gsd.2024.101290</label>
          <listPosition>5</listPosition>
          <doi>10.1016/j.gsd.2024.101290</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928343</mtid>
          <link>/api/reference/71928343</link>
          <label>6. Negi 2023: Mycoremediation of wastewater, challenges, and current status: A review., Bioresour. Technol. Rep., 22, p. 101409, DOI: 10.1016/j.biteb.2023.101409</label>
          <listPosition>6</listPosition>
          <doi>10.1016/j.biteb.2023.101409</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928344</mtid>
          <link>/api/reference/71928344</link>
          <label>7. Sahithya 2022: Remediation potential of mushrooms and their spent substrate against environmental contaminants: An overview., Biocatal. Agric. Biotechnol., 42, p. 102323, DOI: 10.1016/j.bcab.2022.102323</label>
          <listPosition>7</listPosition>
          <doi>10.1016/j.bcab.2022.102323</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928345</mtid>
          <link>/api/reference/71928345</link>
          <label>8. Shruthi 2024: Myco-remediation of chromium heavy metal from industrial wastewater: A review., Toxicol. Rep., 13, p. 101740, DOI: 10.1016/j.toxrep.2024.101740</label>
          <listPosition>8</listPosition>
          <doi>10.1016/j.toxrep.2024.101740</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928346</mtid>
          <link>/api/reference/71928346</link>
          <label>9. Stiebeling, D.A., and Labes, A. (2022). Mycoremediation of sewage sludge and manure with marine fungi for the removal of organic pollutants. Front. Mar. Sci., 9., DOI: 10.3389/fmars.2022.946220</label>
          <listPosition>9</listPosition>
          <doi>10.3389/fmars.2022.946220</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928347</mtid>
          <link>/api/reference/71928347</link>
          <label>10. Silva, A., Delerue-Matos, C., Figueiredo, S.A., and Freitas, O.M. (2019). The use of algae and fungi for removal of pharmaceuticals by bioremediation and biosorption processes: A review. Water, 11., DOI: 10.3390/w11081555</label>
          <listPosition>10</listPosition>
          <doi>10.3390/w11081555</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928348</mtid>
          <link>/api/reference/71928348</link>
          <label>11. Iakovleva 2013: The use of low-cost adsorbents for wastewater purification in mining industries., Environ. Sci. Pollut. Res., 20, p. 7878, DOI: 10.1007/s11356-013-1546-8</label>
          <listPosition>11</listPosition>
          <doi>10.1007/s11356-013-1546-8</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928349</mtid>
          <link>/api/reference/71928349</link>
          <label>12. Ghose 2022: Spent waste from edible mushrooms offers innovative strategies for the remediation of persistent organic micropollutants: A review., Environ. Pollut., 305, p. 119285, DOI: 10.1016/j.envpol.2022.119285</label>
          <listPosition>12</listPosition>
          <doi>10.1016/j.envpol.2022.119285</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928350</mtid>
          <link>/api/reference/71928350</link>
          <label>13. Mayans 2021: An assessment of Pleurotus ostreatus to remove sulfonamides, and its role as a biofilter based on its own spent mushroom substrate., Environ. Sci. Pollut. Res., 28, p. 7032, DOI: 10.1007/s11356-020-11078-3</label>
          <listPosition>13</listPosition>
          <doi>10.1007/s11356-020-11078-3</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928351</mtid>
          <link>/api/reference/71928351</link>
          <label>14. Jarial 2024: Comprehensive review on oyster mushroom species (Agaricomycetes): Morphology, nutrition, cultivation and future aspects., Heliyon, 10, p. e26539, DOI: 10.1016/j.heliyon.2024.e26539</label>
          <listPosition>14</listPosition>
          <doi>10.1016/j.heliyon.2024.e26539</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928352</mtid>
          <link>/api/reference/71928352</link>
          <label>15. Marín-Benito, J.M., Sánchez-Martín, M.J., and Rodríguez-Cruz, M.S. (2016). Impact of spent mushroom substrates on the fate of pesticides in soil, and their use for preventing and/or controlling soil and water contamination: A review. Toxics, 4., DOI: 10.3390/toxics4030017</label>
          <listPosition>15</listPosition>
          <doi>10.3390/toxics4030017</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928353</mtid>
          <link>/api/reference/71928353</link>
          <label>16. Roy 2025: Mycoremediation for sustainable remediation of environmental pollutants., Biocatal. Agric. Biotechnol., 64, p. 103526, DOI: 10.1016/j.bcab.2025.103526</label>
          <listPosition>16</listPosition>
          <doi>10.1016/j.bcab.2025.103526</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928354</mtid>
          <link>/api/reference/71928354</link>
          <label>17. Steffen 2013: Mycoremediation of wood and soil from an old sawmill area contaminated for decades., J. Hazard. Mater., 260, p. 668, DOI: 10.1016/j.jhazmat.2013.06.014</label>
          <listPosition>17</listPosition>
          <doi>10.1016/j.jhazmat.2013.06.014</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928355</mtid>
          <link>/api/reference/71928355</link>
          <label>18. 2024: Pleurotus spp.—An effective way in degradation mycotoxins? A comprehensive review., Mycotoxin Res., 41, p. 1</label>
          <listPosition>18</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928356</mtid>
          <link>/api/reference/71928356</link>
          <label>19. Akpasi, S.O., Anekwe, I.M.S., Tetteh, E.K., Amune, U.O., Shoyiga, H.O., Mahlangu, T.P., and Kiambi, S.L. (2023). Mycoremediation as a Potentially Promising Technology: Current Status and Prospects—A Review. Appl. Sci., 13., DOI: 10.3390/app13084978</label>
          <listPosition>19</listPosition>
          <doi>10.3390/app13084978</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928357</mtid>
          <link>/api/reference/71928357</link>
          <label>20. Hultberg 2020: Use of lignocellulosic substrate colonized by oyster mushroom (Pleurotus ostreatus) for removal of organic micropollutants from water., J. Environ. Manag., 272, p. 111087, DOI: 10.1016/j.jenvman.2020.111087</label>
          <listPosition>20</listPosition>
          <doi>10.1016/j.jenvman.2020.111087</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928358</mtid>
          <link>/api/reference/71928358</link>
          <label>21. Innes, C. (2023). Pleurotus spp. as Agents of Mycoremediation: A Review, Portland State University.</label>
          <listPosition>21</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928359</mtid>
          <link>/api/reference/71928359</link>
          <label>22. Zhuo 2021: A comprehensive insight into the application of white rot fungi and their lignocellulolytic enzymes in the removal of organic pollutants., Sci. Total Environ., 778, p. 146132, DOI: 10.1016/j.scitotenv.2021.146132</label>
          <listPosition>22</listPosition>
          <doi>10.1016/j.scitotenv.2021.146132</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928360</mtid>
          <link>/api/reference/71928360</link>
          <label>23. Caminal 2018: Influence of process variables in a continuous treatment of non-sterile hospital wastewater by Trametes versicolor and novel method for inoculum production., J. Environ. Manag., 212, p. 415, DOI: 10.1016/j.jenvman.2018.02.018</label>
          <listPosition>23</listPosition>
          <doi>10.1016/j.jenvman.2018.02.018</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928361</mtid>
          <link>/api/reference/71928361</link>
          <label>24. Caminal 2017: Comparison between several reactors with Trametes versicolor immobilized on lignocellulosic support for the continuous treatments of hospital wastewater., Bioresour. Technol., 243, p. 966, DOI: 10.1016/j.biortech.2017.07.055</label>
          <listPosition>24</listPosition>
          <doi>10.1016/j.biortech.2017.07.055</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928362</mtid>
          <link>/api/reference/71928362</link>
          <label>25. Migliore 2012: Biodegradation of oxytetracycline by Pleurotus ostreatus mycelium: A mycoremediation technique., J. Hazard. Mater., 215–216, p. 227, DOI: 10.1016/j.jhazmat.2012.02.056</label>
          <listPosition>25</listPosition>
          <doi>10.1016/j.jhazmat.2012.02.056</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928363</mtid>
          <link>/api/reference/71928363</link>
          <label>26. Festa, G., Giardina, P., and Faraco, V. (2005, January 3–6). Atypical laccases from the white-rot fungus Pleurotus ostreatus and their application for the treatment of industrial coloured effluents. Proceedings of the VI Meeting on Genetics and Cellular Biology of Basidiomycetes, Pamplona, Spain.</label>
          <listPosition>26</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928364</mtid>
          <link>/api/reference/71928364</link>
          <label>27. Nguyen 2016: Continuous adsorption and biotransformation of micropollutants by granular activated carbon-bound laccase in a packed-bed enzyme reactor., Bioresour. Technol., 210, p. 108, DOI: 10.1016/j.biortech.2016.01.014</label>
          <listPosition>27</listPosition>
          <doi>10.1016/j.biortech.2016.01.014</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928365</mtid>
          <link>/api/reference/71928365</link>
          <label>28. Das 2013: Column studies on removal of Ag(I) from electroplating wastewater by macrofungus Pleurotus platypus: Use of modelling and response surface methodology., Nat. Environ. Pollut. Technol., 12, p. 273</label>
          <listPosition>28</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928366</mtid>
          <link>/api/reference/71928366</link>
          <label>29. Dichiara 2015: On the Choice of Batch or Fixed Bed Adsorption Processes for Wastewater Treatment., Ind. Eng. Chem. Res., 54, p. 8579, DOI: 10.1021/acs.iecr.5b02350</label>
          <listPosition>29</listPosition>
          <doi>10.1021/acs.iecr.5b02350</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928367</mtid>
          <link>/api/reference/71928367</link>
          <label>30. Patel 2021: Comparison of batch and fixed bed column adsorption: A critical review., Int. J. Environ. Sci. Technol., 19, p. 10409, DOI: 10.1007/s13762-021-03492-y</label>
          <listPosition>30</listPosition>
          <doi>10.1007/s13762-021-03492-y</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928368</mtid>
          <link>/api/reference/71928368</link>
          <label>31. Ahmed 2018: Removal of emerging pharmaceutical contaminants by adsorption in a fixed-bed column: A review., Ecotoxicol. Environ. Saf., 149, p. 257, DOI: 10.1016/j.ecoenv.2017.12.012</label>
          <listPosition>31</listPosition>
          <doi>10.1016/j.ecoenv.2017.12.012</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928369</mtid>
          <link>/api/reference/71928369</link>
          <label>32. Malik 2018: Heavy Metal Removal by Fixed-Bed Column—A Review., ChemBioEng Rev., 5, p. 173, DOI: 10.1002/cben.201700018</label>
          <listPosition>32</listPosition>
          <doi>10.1002/cben.201700018</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928370</mtid>
          <link>/api/reference/71928370</link>
          <label>33. Feijoo 2012: Operation of stirred tank reactors (STRs) and fixed-bed reactors (FBRs) with free and immobilized Phanerochaete chrysosporium for the continuous removal of pharmaceutical compounds., Biochem. Eng. J., 66, p. 38, DOI: 10.1016/j.bej.2012.04.011</label>
          <listPosition>33</listPosition>
          <doi>10.1016/j.bej.2012.04.011</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928371</mtid>
          <link>/api/reference/71928371</link>
          <label>34. Wang 2025: Compare fixed-bed reactor with fluidized-bed reactor in electrocatalytic advanced oxidation for high-concentration phenol wastewater., J. Water Process Eng., 75, p. 107874, DOI: 10.1016/j.jwpe.2025.107874</label>
          <listPosition>34</listPosition>
          <doi>10.1016/j.jwpe.2025.107874</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928372</mtid>
          <link>/api/reference/71928372</link>
          <label>35. Banzhaf 2016: Use of column experiments to investigate the fate of organic micropollutants—A review., Hydrol. Earth Syst. Sci., 20, p. 3719, DOI: 10.5194/hess-20-3719-2016</label>
          <listPosition>35</listPosition>
          <doi>10.5194/hess-20-3719-2016</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928373</mtid>
          <link>/api/reference/71928373</link>
          <label>36. Rajandran 2024: Fixed-bed adsorption for industrial wastewater purification: An in-depth review., Int. J. Environ. Sci. Technol., 22, p. 3943, DOI: 10.1007/s13762-024-06034-4</label>
          <listPosition>36</listPosition>
          <doi>10.1007/s13762-024-06034-4</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928374</mtid>
          <link>/api/reference/71928374</link>
          <label>37. Cajthaml 2020: Biodegradation of PCBs in contaminated water using spent oyster mushroom substrate and a trickle-bed bioreactor., Water Res., 170, p. 115274, DOI: 10.1016/j.watres.2019.115274</label>
          <listPosition>37</listPosition>
          <doi>10.1016/j.watres.2019.115274</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928375</mtid>
          <link>/api/reference/71928375</link>
          <label>38. Cajthaml 2018: Biodegradation of endocrine disruptors in urban wastewater using Pleurotus ostreatus bioreactor., New Biotechnol., 43, p. 53, DOI: 10.1016/j.nbt.2017.05.004</label>
          <listPosition>38</listPosition>
          <doi>10.1016/j.nbt.2017.05.004</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928376</mtid>
          <link>/api/reference/71928376</link>
          <label>39. Zhang, X., Zhao, C., Xue, F., Xia, B., Lu, Y., Ying, R., and Hu, Z. (2024). Adsorption of Zinc(II) Ion by Spent and Raw Agaricus bisporus in Aqueous Solution. Processes, 12., DOI: 10.3390/pr12040717</label>
          <listPosition>39</listPosition>
          <doi>10.3390/pr12040717</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928377</mtid>
          <link>/api/reference/71928377</link>
          <label>40. Karas 2016: The potential of organic substrates based on mushroom substrate and straw to dissipate fungicides contained in effluents from the fruit-packaging industry—Is there a role for Pleurotus ostreatus?., Ecotoxicol. Environ. Saf., 124, p. 447, DOI: 10.1016/j.ecoenv.2015.11.022</label>
          <listPosition>40</listPosition>
          <doi>10.1016/j.ecoenv.2015.11.022</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928378</mtid>
          <link>/api/reference/71928378</link>
          <label>41. Vimala 2011: Packed bed column studies on Cd(II) removal from industrial wastewater by macrofungus Pleurotus platypus., Desalination, 275, p. 291, DOI: 10.1016/j.desal.2011.03.014</label>
          <listPosition>41</listPosition>
          <doi>10.1016/j.desal.2011.03.014</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928379</mtid>
          <link>/api/reference/71928379</link>
          <label>42. Long 2015: Treatment of metal wastewater in pilot-Scale packed bed systems: Efficiency of single- vs. Mixed-Mushrooms., RSC Adv., 5, p. 29145, DOI: 10.1039/C5RA02409A</label>
          <listPosition>42</listPosition>
          <doi>10.1039/C5RA02409A</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928380</mtid>
          <link>/api/reference/71928380</link>
          <label>43. Cerrone 2011: Efficient removal of pollutants from olive washing wastewater in bubble-column bioreactor by Trametes versicolor., Chemosphere, 84, p. 254, DOI: 10.1016/j.chemosphere.2011.03.066</label>
          <listPosition>43</listPosition>
          <doi>10.1016/j.chemosphere.2011.03.066</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928381</mtid>
          <link>/api/reference/71928381</link>
          <label>44. Binupriya 2007: Liquid-phase separation of reactive dye by wood-rotting fungus: A biotechnological approach., Biotechnol. J., 2, p. 1014, DOI: 10.1002/biot.200600238</label>
          <listPosition>44</listPosition>
          <doi>10.1002/biot.200600238</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928382</mtid>
          <link>/api/reference/71928382</link>
          <label>45. Sá, H., Michelin, M., Tavares, T., and Silva, B. (2022). Current Challenges for Biological Treatment of Pharmaceutical-Based Contaminants with Oxidoreductase Enzymes: Immobilization Processes, Real Aqueous Matrices and Hybrid Techniques. Biomolecules, 12., DOI: 10.3390/biom12101489</label>
          <listPosition>45</listPosition>
          <doi>10.3390/biom12101489</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928383</mtid>
          <link>/api/reference/71928383</link>
          <label>46. Kocaoba 2018: Biosorption of cadmium(II) and lead(II) from aqueous solutions using Pleurotus ostreatus immobilized on bentonite., Sep. Sci. Technol., 53, p. 1703, DOI: 10.1080/01496395.2018.1442477</label>
          <listPosition>46</listPosition>
          <doi>10.1080/01496395.2018.1442477</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928384</mtid>
          <link>/api/reference/71928384</link>
          <label>47. Pezzella 2014: Immobilization of a Pleurotus ostreatus laccase mixture on perlite and its application to dye decolourisation., BioMed Res. Int., 2014, p. 308613, DOI: 10.1155/2014/308613</label>
          <listPosition>47</listPosition>
          <doi>10.1155/2014/308613</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928385</mtid>
          <link>/api/reference/71928385</link>
          <label>48. Jin 2018: Batch and fixed-bed biosorption of Cd(II) from aqueous solution using immobilized Pleurotus ostreatus spent substrate., Chemosphere, 191, p. 799, DOI: 10.1016/j.chemosphere.2017.08.154</label>
          <listPosition>48</listPosition>
          <doi>10.1016/j.chemosphere.2017.08.154</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928386</mtid>
          <link>/api/reference/71928386</link>
          <label>49. Palli 2016: Biodegradation of 2-naphthalensulfonic acid polymers by white-rot fungi: Scale-up into non-sterile packed bed bioreactors., Chemosphere, 164, p. 120, DOI: 10.1016/j.chemosphere.2016.08.071</label>
          <listPosition>49</listPosition>
          <doi>10.1016/j.chemosphere.2016.08.071</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928387</mtid>
          <link>/api/reference/71928387</link>
          <label>50. Hublik 2000: Characterization and immobilization of the laccase from Pleurotus ostreatus and its use for the continuous elimination of phenolic pollutants., Enzym. Microb. Technol., 27, p. 330, DOI: 10.1016/S0141-0229(00)00220-9</label>
          <listPosition>50</listPosition>
          <doi>10.1016/S0141-0229(00)00220-9</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928388</mtid>
          <link>/api/reference/71928388</link>
          <label>51. Das 2015: Removal of Ag(I) and Zn(II) ions from single and binary solution using sulfonated form of gum arabic-powdered mushroom composite hollow semispheres: Equilibrium, kinetic, thermodynamic and ex-situ studies., Ecol. Eng., 75, p. 116, DOI: 10.1016/j.ecoleng.2014.11.037</label>
          <listPosition>51</listPosition>
          <doi>10.1016/j.ecoleng.2014.11.037</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928389</mtid>
          <link>/api/reference/71928389</link>
          <label>52. Eliescu 2020: Biosorption of Pb(II) from Aqueous Solution Using Mushroom (Pleurotus ostreatus) Biomass and Spent Mushroom Substrate., Anal. Lett., 53, p. 2292, DOI: 10.1080/00032719.2020.1740722</label>
          <listPosition>52</listPosition>
          <doi>10.1080/00032719.2020.1740722</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928390</mtid>
          <link>/api/reference/71928390</link>
          <label>53. Chen, C., Yu, G., Guo, Z., Yang, Q., Su, W., Xie, Q., Yang, G., Ren, Y., and Li, H. (2022). Expression, Characterization, Fermentation, Immobilization, and Application of a Novel Esterase Est804 from Metagenomic Library in Pesticide Degradation. Front. Microbiol., 13., DOI: 10.3389/fmicb.2022.922506</label>
          <listPosition>53</listPosition>
          <doi>10.3389/fmicb.2022.922506</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928391</mtid>
          <link>/api/reference/71928391</link>
          <label>54. Guzik 2014: Immobilization as a Strategy for Improving Enzyme Properties-Application to Oxidoreductases., Molecules, 19, p. 8995, DOI: 10.3390/molecules19078995</label>
          <listPosition>54</listPosition>
          <doi>10.3390/molecules19078995</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928392</mtid>
          <link>/api/reference/71928392</link>
          <label>55. Zou 2019: Facile Fabrication of a Novel and Reusable 3D Laccase Reactor for Efficient Removal of Pollutants from Wastewater., Catal. Lett., 149, p. 2706, DOI: 10.1007/s10562-019-02732-8</label>
          <listPosition>55</listPosition>
          <doi>10.1007/s10562-019-02732-8</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928393</mtid>
          <link>/api/reference/71928393</link>
          <label>56. Zhang 2020: Magnetic biochar derived from biosolids via hydrothermal carbonization: Enzyme immobilization, immobilized-enzyme kinetics, environmental toxicity., J. Hazard. Mater., 384, p. 121272, DOI: 10.1016/j.jhazmat.2019.121272</label>
          <listPosition>56</listPosition>
          <doi>10.1016/j.jhazmat.2019.121272</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928394</mtid>
          <link>/api/reference/71928394</link>
          <label>57. Vallejo 2025: Optimization and stability of a reusable laccase-polymer hybrid film for the removal of bisphenol A in water., Environ. Technol. Innov., 38, p. 104093., DOI: 10.1016/j.eti.2025.104093</label>
          <listPosition>57</listPosition>
          <doi>10.1016/j.eti.2025.104093</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928395</mtid>
          <link>/api/reference/71928395</link>
          <label>58. Wang 2025: Colloids and Surfaces A: Physicochemical and Engineering Aspects Preparation of Lac @ MOF-PVA/CMC hydrogel bio-composite for enhancing laccase stability and dye decolorization efficiency., Colloids Surf. A Physicochem. Eng. Asp., 727, p. 138170, DOI: 10.1016/j.colsurfa.2025.138170</label>
          <listPosition>58</listPosition>
          <doi>10.1016/j.colsurfa.2025.138170</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928396</mtid>
          <link>/api/reference/71928396</link>
          <label>59. Othman 2025: Characterization and evaluation of the immobilized laccase enzyme potential in dye degradation via one factor and response surface methodology approaches., Sci. Rep., 15, p. 735, DOI: 10.1038/s41598-024-82310-0</label>
          <listPosition>59</listPosition>
          <doi>10.1038/s41598-024-82310-0</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928397</mtid>
          <link>/api/reference/71928397</link>
          <label>60. Tayar 2023: Effect of dissolved oxygen on the degradation activity and consumption capacity of white-rot fungi., J. Water Process Eng., 55, p. 104105, DOI: 10.1016/j.jwpe.2023.104105</label>
          <listPosition>60</listPosition>
          <doi>10.1016/j.jwpe.2023.104105</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928398</mtid>
          <link>/api/reference/71928398</link>
          <label>61. Hu 2021: Remediation of bentazone contaminated water by Trametes versicolor: Characterization, identification of transformation products, and implementation in a trickle-bed reactor under non-sterile conditions., J. Hazard. Mater., 409, p. 124476, DOI: 10.1016/j.jhazmat.2020.124476</label>
          <listPosition>61</listPosition>
          <doi>10.1016/j.jhazmat.2020.124476</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928399</mtid>
          <link>/api/reference/71928399</link>
          <label>62. D’enginyeria, E., and Hu, K. (2021). Developing and Scaling Up a Trickle Bed Reactor for Degrading Pesticides from Agricultural Wastewater by Fungi, Universitat Autònoma de Barcelona.</label>
          <listPosition>62</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928400</mtid>
          <link>/api/reference/71928400</link>
          <label>63. Tayar 2024: Biodegradation of tri-butyl phosphate by Trametes versicolor and its application in a trickle bed reactor under non-sterile conditions., Environ. Technol. Innov., 36, p. 103867, DOI: 10.1016/j.eti.2024.103867</label>
          <listPosition>63</listPosition>
          <doi>10.1016/j.eti.2024.103867</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928401</mtid>
          <link>/api/reference/71928401</link>
          <label>64. 2021: Removal of pharmaceuticals and ecotoxicological changes in wastewater using Trametes versicolor: A comparison of fungal stirred tank and trickle-bed bioreactors., Chem. Eng. J., 410, p. 128210, DOI: 10.1016/j.cej.2020.128210</label>
          <listPosition>64</listPosition>
          <doi>10.1016/j.cej.2020.128210</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928402</mtid>
          <link>/api/reference/71928402</link>
          <label>65. Ottoni 2014: Effect of different carbon sources on decolourisation of an industrial textile dye under alkaline-saline conditions., Curr. Microbiol., 68, p. 53, DOI: 10.1007/s00284-013-0441-3</label>
          <listPosition>65</listPosition>
          <doi>10.1007/s00284-013-0441-3</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928403</mtid>
          <link>/api/reference/71928403</link>
          <label>66. Sanghi 2010: Long-term chromate reduction by immobilized fungus in continuous column., Chem. Eng. J., 162, p. 122, DOI: 10.1016/j.cej.2010.05.011</label>
          <listPosition>66</listPosition>
          <doi>10.1016/j.cej.2010.05.011</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928404</mtid>
          <link>/api/reference/71928404</link>
          <label>67. Ottoni, C., Simões, M.F., Fernandes, S., Santos, C.R., and Lima, N. (2016). High laccase expression by Trametes versicolor in a simulated textile effluent with different carbon sources and PHs. Int. J. Environ. Res. Public Health, 13., DOI: 10.3390/ijerph13080778</label>
          <listPosition>67</listPosition>
          <doi>10.3390/ijerph13080778</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928405</mtid>
          <link>/api/reference/71928405</link>
          <label>68. 2021: Pesticide bioremediation by Trametes versicolor: Application in a fixed-bed reactor, sorption contribution and bioregeneration., Sci. Total Environ., 794, p. 148386, DOI: 10.1016/j.scitotenv.2021.148386</label>
          <listPosition>68</listPosition>
          <doi>10.1016/j.scitotenv.2021.148386</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928406</mtid>
          <link>/api/reference/71928406</link>
          <label>69. Hu 2022: Oak wood provides suitable nutrients for long-term continuous pesticides removal by Trametes versicolor in a pilot plant trickle bed reactor., J. Clean. Prod., 380, p. 135059, DOI: 10.1016/j.jclepro.2022.135059</label>
          <listPosition>69</listPosition>
          <doi>10.1016/j.jclepro.2022.135059</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928407</mtid>
          <link>/api/reference/71928407</link>
          <label>70. 2013: Adsorption and biological removal of basic green 4 dye using white-rot fungi immobilized on agave tequilana weber waste., Fresenius Environ. Bull., 22, p. 2334</label>
          <listPosition>70</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928408</mtid>
          <link>/api/reference/71928408</link>
          <label>71. 2021: Preconcentrations of Ni(II) and Pb(II) from water and food samples by solid-phase extraction using Pleurotus ostreatus immobilized iron oxide nanoparticles., Food Chem., 336, p. 127675, DOI: 10.1016/j.foodchem.2020.127675</label>
          <listPosition>71</listPosition>
          <doi>10.1016/j.foodchem.2020.127675</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928409</mtid>
          <link>/api/reference/71928409</link>
          <label>72. Kalnake 2023: Enhanced degradation of azo dye using mixed cultures of white-rot fungi in a modified rotating packed disc bioreactor and reuse of treated water., Bioresour. Technol. Rep., 22, p. 101449, DOI: 10.1016/j.biteb.2023.101449</label>
          <listPosition>72</listPosition>
          <doi>10.1016/j.biteb.2023.101449</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928410</mtid>
          <link>/api/reference/71928410</link>
          <label>73. Grimm 2023: Cellulose Fiber Rejects as Raw Material for Integrated Production of Pleurotus spp. Mushrooms and Activated Biochar for Removal of Emerging Pollutants from Aqueous Media., ACS Omega, 8, p. 5361, DOI: 10.1021/acsomega.2c06453</label>
          <listPosition>73</listPosition>
          <doi>10.1021/acsomega.2c06453</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928411</mtid>
          <link>/api/reference/71928411</link>
          <label>74. Zhen 2024: Porous red mud ceramsite for aquatic phosphorus removal: Application in constructed wetlands., Environ. Pollut., 360, p. 124688, DOI: 10.1016/j.envpol.2024.124688</label>
          <listPosition>74</listPosition>
          <doi>10.1016/j.envpol.2024.124688</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928412</mtid>
          <link>/api/reference/71928412</link>
          <label>75. Zhao 2023: Highly stable natural zeolite/montmorillonite hybrid microspheres with green preparation process for efficient adsorption of ammonia nitrogen in wastewater., Appl. Clay Sci., 243, p. 106787, DOI: 10.1016/j.clay.2022.106787</label>
          <listPosition>75</listPosition>
          <doi>10.1016/j.clay.2022.106787</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928413</mtid>
          <link>/api/reference/71928413</link>
          <label>76. Iandolo 2011: Fungal solid state fermentation on agro-industrial wastes for acid wastewater decolorization in a continuous flow packed-bed bioreactor., Bioresour. Technol., 102, p. 7603, DOI: 10.1016/j.biortech.2011.05.029</label>
          <listPosition>76</listPosition>
          <doi>10.1016/j.biortech.2011.05.029</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928414</mtid>
          <link>/api/reference/71928414</link>
          <label>77. Qu 2019: Removal of Cd(II) ions from aqueous solutions using immobilized spent substrates of pleurotus ostreatus in a fixed-bed column., Environ. Eng. Sci., 36, p. 1162, DOI: 10.1089/ees.2019.0088</label>
          <listPosition>77</listPosition>
          <doi>10.1089/ees.2019.0088</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928415</mtid>
          <link>/api/reference/71928415</link>
          <label>78. Khitous 2016: Biosorption of Cd(II) by Pleurotus mutilus biomass in fixed-bed column: Experimental and breakthrough curves analysis., Desalin. Water Treat., 57, p. 16559, DOI: 10.1080/19443994.2015.1081625</label>
          <listPosition>78</listPosition>
          <doi>10.1080/19443994.2015.1081625</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928416</mtid>
          <link>/api/reference/71928416</link>
          <label>79. Amin 2018: Efficient entrapping of toxic Pb(II) ions from aqueous system on a fixed-bed column of fungal biosorbent., Geol. Ecol. Landsc., 2, p. 39</label>
          <listPosition>79</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928417</mtid>
          <link>/api/reference/71928417</link>
          <label>80. Zang 2017: Removal of Cr(VI) by modified and immobilized Auricularia auricula spent substrate in a fixed-bed column., Ecol. Eng., 99, p. 358, DOI: 10.1016/j.ecoleng.2016.11.070</label>
          <listPosition>80</listPosition>
          <doi>10.1016/j.ecoleng.2016.11.070</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928418</mtid>
          <link>/api/reference/71928418</link>
          <label>81. Anastasi 2010: Scale-up of a bioprocess for textile wastewater treatment using Bjerkandera adusta., Bioresour. Technol., 101, p. 3067, DOI: 10.1016/j.biortech.2009.12.067</label>
          <listPosition>81</listPosition>
          <doi>10.1016/j.biortech.2009.12.067</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928419</mtid>
          <link>/api/reference/71928419</link>
          <label>82. Yang 2018: High efficiency removal of Pb(Ii) by modified spent compost of Hypsizygus marmoreus in a fixed-bed column., Desalin. Water Treat., 102, p. 220, DOI: 10.5004/dwt.2018.21869</label>
          <listPosition>82</listPosition>
          <doi>10.5004/dwt.2018.21869</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928420</mtid>
          <link>/api/reference/71928420</link>
          <label>83. Mnkandla 2024: Mycofiltration of Aqueous Iron (III) and Imidacloprid Solutions, and the Effects of the Filtrates on Selected Biomarkers of the Freshwater Snail Helisoma duryi., Arch. Environ. Contam. Toxicol., 86, p. 187, DOI: 10.1007/s00244-023-01049-3</label>
          <listPosition>83</listPosition>
          <doi>10.1007/s00244-023-01049-3</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928421</mtid>
          <link>/api/reference/71928421</link>
          <label>84. Patel 2019: Fixed-Bed column adsorption study: A comprehensive review., Appl. Water Sci., 9, p. 45, DOI: 10.1007/s13201-019-0927-7</label>
          <listPosition>84</listPosition>
          <doi>10.1007/s13201-019-0927-7</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928422</mtid>
          <link>/api/reference/71928422</link>
          <label>85. 2010: Desarrollo de un bioadsorbente laminar con Phanerochaete chrysosporium hipertolerante al cadmio, al níquel y al plomo para el tratamiento de aguas., Rev. Iberoam. Micol., 27, p. 111, DOI: 10.1016/j.riam.2010.02.002</label>
          <listPosition>85</listPosition>
          <doi>10.1016/j.riam.2010.02.002</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928423</mtid>
          <link>/api/reference/71928423</link>
          <label>86. Georgescu 2019: Performance of Pleurotus ostreatus Mushrooms and Spent Substrate for the Biosorption of Cd(II) From Aqueous Solution., Anal. Lett., 52, p. 2007, DOI: 10.1080/00032719.2019.1590380</label>
          <listPosition>86</listPosition>
          <doi>10.1080/00032719.2019.1590380</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928424</mtid>
          <link>/api/reference/71928424</link>
          <label>87. Madani 2018: Modeling of Manganese (II) biosorption by a dead biomass in a fixed bed-column., Alger. J. Environ. Sci. Technol., 4, p. 714</label>
          <listPosition>87</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928425</mtid>
          <link>/api/reference/71928425</link>
          <label>88. Kamarudzaman 2015: Biosorption of Mn(II) ions from Aqueous Solution by Pleurotus Spent Mushroom Compost in a Fixed-Bed Column., Procedia-Soc. Behav. Sci., 195, p. 2709, DOI: 10.1016/j.sbspro.2015.06.379</label>
          <listPosition>88</listPosition>
          <doi>10.1016/j.sbspro.2015.06.379</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928426</mtid>
          <link>/api/reference/71928426</link>
          <label>89. Kamarudzaman 2019: Competitive biosorption study of Fe(II) and Mn(II) from aqueous solution by Pleurotus spent mushroom compost in a fixed-bed column., AIP Conf. Proc., 2157, p. 020021, DOI: 10.1063/1.5126556</label>
          <listPosition>89</listPosition>
          <doi>10.1063/1.5126556</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928427</mtid>
          <link>/api/reference/71928427</link>
          <label>90. Kamarudzaman 2014: Study of Fe(II) biosorption using pleurotus spent mushroom compost in a fixed-bed column., Appl. Mech. Mater., 664, p. 392, DOI: 10.4028/www.scientific.net/AMM.664.392</label>
          <listPosition>90</listPosition>
          <doi>10.4028/www.scientific.net/AMM.664.392</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928428</mtid>
          <link>/api/reference/71928428</link>
          <label>91. Osarenotor 2021: Removal of pollutants by mycelium-colonized sawdust., Water Pract. Technol., 16, p. 1036, DOI: 10.2166/wpt.2021.028</label>
          <listPosition>91</listPosition>
          <doi>10.2166/wpt.2021.028</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928429</mtid>
          <link>/api/reference/71928429</link>
          <label>92. Zeytunluoglu 2025: Biosorptive removal of textile dye Eriochrome black T from aqueous solutions using the mushroom Morchella esculenta., J. Mol. Liq., 437, p. 128561, DOI: 10.1016/j.molliq.2025.128561</label>
          <listPosition>92</listPosition>
          <doi>10.1016/j.molliq.2025.128561</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928430</mtid>
          <link>/api/reference/71928430</link>
          <label>93. Russo 2008: Assessment of anthraquinone-dye conversion by free and immobilized crude laccase mixtures., Enzym. Microb. Technol., 42, p. 521, DOI: 10.1016/j.enzmictec.2008.01.011</label>
          <listPosition>93</listPosition>
          <doi>10.1016/j.enzmictec.2008.01.011</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928431</mtid>
          <link>/api/reference/71928431</link>
          <label>94. Zhao 2008: Decolorization of cotton pulp black liquor by Pleurotus ostreatus in a bubble-column reactor., Bull. Environ. Contam. Toxicol., 80, p. 44, DOI: 10.1007/s00128-007-9313-5</label>
          <listPosition>94</listPosition>
          <doi>10.1007/s00128-007-9313-5</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928432</mtid>
          <link>/api/reference/71928432</link>
          <label>95. Palmieri 2005: Laccase-mediated Remazol Brilliant Blue R decolorization in a fixed-bed bioreactor., Biotechnol. Prog., 21, p. 1436, DOI: 10.1021/bp050140i</label>
          <listPosition>95</listPosition>
          <doi>10.1021/bp050140i</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928433</mtid>
          <link>/api/reference/71928433</link>
          <label>96. Tapie 2016: Biodegradation of sugarcane vinasses by the white-rot fungi Pleurotus ostreatus in a packed bed reactor., Trop. Subtrop. Agroecosyst., 19, p. 145</label>
          <listPosition>96</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928434</mtid>
          <link>/api/reference/71928434</link>
          <label>97. Mnkandla 2024: Fixed bed mycofilter column optimization and performance evaluation through the removal of a food coloring agent from an aqueous solution., Bioremediat. J., 28, p. 368, DOI: 10.1080/10889868.2023.2236644</label>
          <listPosition>97</listPosition>
          <doi>10.1080/10889868.2023.2236644</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928435</mtid>
          <link>/api/reference/71928435</link>
          <label>98. Silva, A.D.M., Sousa, J., Hultberg, M., Figueiredo, S.A., Freitas, O.M., and Delerue-Matos, C. (2022). Fluoxetine Removal from Aqueous Solutions Using a Lignocellulosic Substrate Colonized by the White-Rot Fungus Pleurotus ostreatus. Int. J. Environ. Res. Public Health, 19., DOI: 10.3390/ijerph19052672</label>
          <listPosition>98</listPosition>
          <doi>10.3390/ijerph19052672</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928436</mtid>
          <link>/api/reference/71928436</link>
          <label>99. Palli 2017: Preliminary evaluation of Pleurotus ostreatus for the removal of selected pharmaceuticals from hospital wastewater., Biotechnol. Prog., 33, p. 1529, DOI: 10.1002/btpr.2520</label>
          <listPosition>99</listPosition>
          <doi>10.1002/btpr.2520</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928437</mtid>
          <link>/api/reference/71928437</link>
          <label>100. Yonten 2016: Adsorption of bisphenol A from aqueous solutions by Pleurotus eryngii immobilized on Amberlite XAD-4 using as a new adsorbent., Desalin. Water Treat., 57, p. 22362, DOI: 10.1080/19443994.2015.1130659</label>
          <listPosition>100</listPosition>
          <doi>10.1080/19443994.2015.1130659</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928438</mtid>
          <link>/api/reference/71928438</link>
          <label>101. Akdogan 2011: Fluorene biodegradation by P. osteratus—Part II: Biodegradation by immobilized cells in a recycled packed bed reactor., Process Biochem., 46, p. 840, DOI: 10.1016/j.procbio.2011.01.008</label>
          <listPosition>101</listPosition>
          <doi>10.1016/j.procbio.2011.01.008</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928439</mtid>
          <link>/api/reference/71928439</link>
          <label>102. Sen, K., Llewellyn, M., Taheri, B., Turner, R.J., Berglund, T., and Maloney, K. (2023). Mechanism of fungal remediation of wetland water: Stropharia rugosoannulata as promising fungal species for the development of biofilters to remove clinically important pathogenic and antibiotic resistant bacteria in contaminated water. Front. Microbiol., 14., DOI: 10.3389/fmicb.2023.1234586</label>
          <listPosition>102</listPosition>
          <doi>10.3389/fmicb.2023.1234586</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928440</mtid>
          <link>/api/reference/71928440</link>
          <label>103. Kang 2023: Continuous operation of fungal wheel reactor based on solid-state fermentation for the removal of pharmaceutical and personal care products., J. Environ. Manag., 331, p. 117316, DOI: 10.1016/j.jenvman.2023.117316</label>
          <listPosition>103</listPosition>
          <doi>10.1016/j.jenvman.2023.117316</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928441</mtid>
          <link>/api/reference/71928441</link>
          <label>104. Legorreta-Castañeda, A.J., Lucho-Constantino, C.A., Beltrán-Hernández, R.I., Coronel-Olivares, C., and Vázquez-Rodríguez, G.A. (2020). Biosorption of water pollutants by fungal pellets. Water, 12., DOI: 10.3390/w12041155</label>
          <listPosition>104</listPosition>
          <doi>10.3390/w12041155</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928442</mtid>
          <link>/api/reference/71928442</link>
          <label>105. Hu 2021: Comparison between two reactors using Trametes versicolor for agricultural wastewater treatment under non-sterile condition in sequencing batch mode., J. Environ. Manag., 293, p. 112859, DOI: 10.1016/j.jenvman.2021.112859</label>
          <listPosition>105</listPosition>
          <doi>10.1016/j.jenvman.2021.112859</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928443</mtid>
          <link>/api/reference/71928443</link>
          <label>106. Rigas 2005: Biodegradation of lindane by Pleurotus ostreatus via central composite design., Environ. Int., 31, p. 191, DOI: 10.1016/j.envint.2004.09.024</label>
          <listPosition>106</listPosition>
          <doi>10.1016/j.envint.2004.09.024</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928444</mtid>
          <link>/api/reference/71928444</link>
          <label>107. Efremenko, E., Stepanov, N., Senko, O., Aslanli, A., and Maslova, O. (2024). Using Fungi in Artificial Microbial Consortia to Solve Bioremediation Problems. Microorganisms, 12., DOI: 10.3390/microorganisms12030470</label>
          <listPosition>107</listPosition>
          <doi>10.3390/microorganisms12030470</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928445</mtid>
          <link>/api/reference/71928445</link>
          <label>108. Prasad, B., Malik, T., Sarkar, O., Gupta, S., and Negi, K.S. (2024). A comprehensive review on sustainable removal of micropollutants in wastewater by micro- biotechnological approaches with special reference to microbial associated nanoparticles. Bioremediat. J., 1–27., DOI: 10.1080/10889868.2024.2440758</label>
          <listPosition>108</listPosition>
          <doi>10.1080/10889868.2024.2440758</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928446</mtid>
          <link>/api/reference/71928446</link>
          <label>109. Hamimed 2024: Innovative entrapped Yarrowia lipolytica within polyvinylpyrrolidone (PVP)/ polyethylene glycol (PEG)/agar for improving olive mill wastewater bioremediation., J. Clean. Prod., 449, p. 141828, DOI: 10.1016/j.jclepro.2024.141828</label>
          <listPosition>109</listPosition>
          <doi>10.1016/j.jclepro.2024.141828</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>71928447</mtid>
          <link>/api/reference/71928447</link>
          <label>110. Renganathan, P., Gaysina, L.A., Gutiérrez, C.G., Puente, E.O.R., and Sainz-Hernández, J.C. (2025). Harnessing Engineered Microbial Consortia for Xenobiotic Bioremediation: Integrating Multi-Omics and AI for Next-Generation Wastewater Treatment. J. Xenobiotics, 15., DOI: 10.3390/jox15040133</label>
          <listPosition>110</listPosition>
          <doi>10.3390/jox15040133</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
      </references>
      <link>/api/publication/36910379</link>
      <label>Kondor A Cs et al. Main Parameters of Fixed-Bed Column Systems Using White-Rot Fungi (Pleurotus spp., Trametes versicolor) and Their Effect on the Removal of Micropollutants from Water: An Overview. (2026) WATER 2073-4441 18 3</label><template>&lt;div class=&quot;JournalArticle Publication short-list&quot;&gt; &lt;div class=&quot;authors&quot;&gt; &lt;span class=&quot;author-name&quot; mtid=&quot;10015138&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10015138&quot; target=&quot;_blank&quot;&gt;Kondor, A Cs&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10084042&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10084042&quot; target=&quot;_blank&quot;&gt;Bauer, L ✉&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10063470&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10063470&quot; target=&quot;_blank&quot;&gt;Vancsik, A&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10099611&quot;&gt; 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Közlemény:36910379 &lt;/span&gt; &lt;span class=&quot;status-holder&quot;&gt;&lt;span class=&quot;status-data status-ADMIN_APPROVED&quot;&gt; Admin láttamozott &lt;/span&gt;&lt;/span&gt; &lt;span class=&quot;pub-core&quot;&gt;Forrás &lt;/span&gt; &lt;span class=&quot;pub-type&quot;&gt;Folyóiratcikk (Szakcikk ) &lt;/span&gt; &lt;!-- &amp;&amp; !record.category.scientific --&gt; &lt;span class=&quot;pub-category&quot;&gt;Tudományos&lt;/span&gt; &lt;/div&gt; &lt;/div&gt; &lt;/div&gt;</template><template2>&lt;div class=&quot;JournalArticle Publication long-list&quot;&gt; &lt;div class=&quot;authors&quot;&gt; &lt;img title=&quot;Forrásközlemény&quot; style=&quot;float: left&quot; src=&quot;/frontend/resources/grid/publication-core-icon.png&quot;&gt; &lt;div class=&quot;autype autype0&quot;&gt; &lt;span class=&quot;author-name&quot; mtid=&quot;10015138&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10015138&quot; target=&quot;_blank&quot;&gt;Kondor A Cs (&lt;span class=&quot;authorship-author-name&quot;&gt;Kondor Attila Csaba&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; Földtudomány&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;HUN-REN Csillagászati és Földtudományi Kutatóközpont&quot;&gt;HRN CSFK&lt;/span&gt;/&lt;span title=&quot;Földrajztudományi Intézet&quot;&gt;FTI&lt;/span&gt;/Társadalomföldrajzi Osztály&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10084042&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10084042&quot; target=&quot;_blank&quot;&gt;Bauer L ✉ (&lt;span class=&quot;authorship-author-name&quot;&gt;Bauer László&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; környezetföldrajz, környezetkémia, kemometria&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;HUN-REN Csillagászati és Földtudományi Kutatóközpont&quot;&gt;HRN CSFK&lt;/span&gt;/&lt;span title=&quot;Földrajztudományi Intézet&quot;&gt;FTI&lt;/span&gt;/Természetföldrajzi Osztály&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10063470&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10063470&quot; target=&quot;_blank&quot;&gt;Vancsik A (&lt;span class=&quot;authorship-author-name&quot;&gt;Vancsik Anna&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; Környezetföldtan&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;HUN-REN Csillagászati és Földtudományi Kutatóközpont&quot;&gt;HRN CSFK&lt;/span&gt;/&lt;span title=&quot;Földrajztudományi Intézet&quot;&gt;FTI&lt;/span&gt;/Természetföldrajzi Osztály&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10099611&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10099611&quot; target=&quot;_blank&quot;&gt;Szávai P (&lt;span class=&quot;authorship-author-name&quot;&gt;Szávai Péter&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; Környezetföldtan, környezetkémia&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;HUN-REN Csillagászati és Földtudományi Kutatóközpont&quot;&gt;HRN CSFK&lt;/span&gt;/&lt;span title=&quot;Földrajztudományi Intézet&quot;&gt;FTI&lt;/span&gt;/Természetföldrajzi Osztály&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10002480&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10002480&quot; target=&quot;_blank&quot;&gt;Szalai Z (&lt;span class=&quot;authorship-author-name&quot;&gt;Szalai Zoltán&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; Természetföldrajz&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Eötvös Loránd Tudományegyetem&quot;&gt;ELTE&lt;/span&gt;/&lt;span title=&quot;Természettudományi Kar&quot;&gt;TTK&lt;/span&gt;/&lt;span title=&quot;Földrajz- és Földtudományi Intézet&quot;&gt;FoldrFoldt_I&lt;/span&gt;/&lt;span title=&quot;Földrajztudományi Központ&quot;&gt;Frt_K&lt;/span&gt;/Környezet- és Tájföldrajzi Tanszék&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10048313&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10048313&quot; target=&quot;_blank&quot;&gt;Krüzselyi D (&lt;span class=&quot;authorship-author-name&quot;&gt;Krüzselyi Dániel&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; biokémia, analitika, mikológia&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;HUN-REN Agrártudományi Kutatóközpont&quot;&gt;HRN ATK&lt;/span&gt;/&lt;span title=&quot;Növényvédelmi Intézet&quot;&gt;NÖVI&lt;/span&gt;/Növényi Kórélettani Osztály&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10020748&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10020748&quot; target=&quot;_blank&quot;&gt;Pintye A (&lt;span class=&quot;authorship-author-name&quot;&gt;Pintye Alexandra&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; Biológiai tudományok&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;HUN-REN Agrártudományi Kutatóközpont&quot;&gt;HRN ATK&lt;/span&gt;/&lt;span title=&quot;Növényvédelmi Intézet&quot;&gt;NÖVI&lt;/span&gt;/Növénykórtani Osztály; &lt;span title=&quot;Eötvös Loránd Tudományegyetem&quot;&gt;ELTE&lt;/span&gt;/&lt;span title=&quot;Természettudományi Kar&quot;&gt;TTK&lt;/span&gt;/&lt;span title=&quot;Biológiai Intézet&quot;&gt;Bio_I&lt;/span&gt;/Növényszervezettani Tanszék&lt;/span&gt; ;&amp;nbsp;&amp;nbsp;&amp;nbsp; &lt;span class=&quot;author-name&quot; mtid=&quot;10060902&quot;&gt;&lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10060902&quot; target=&quot;_blank&quot;&gt;Szabó L (&lt;span class=&quot;authorship-author-name&quot;&gt;Szabó Lili&lt;/span&gt; &lt;span class=&quot;authorAux-mtmt&quot;&gt; Környezetkémia, Földtudomány&lt;/span&gt;) &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;HUN-REN Csillagászati és Földtudományi Kutatóközpont&quot;&gt;HRN CSFK&lt;/span&gt;/&lt;span title=&quot;Földrajztudományi Intézet&quot;&gt;FTI&lt;/span&gt;/Természetföldrajzi Osztály&lt;/span&gt; &lt;/div&gt; &lt;/div&gt; &lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;36910379&quot; target=&quot;_blank&quot;&gt;Main Parameters of Fixed-Bed Column Systems Using White-Rot Fungi (Pleurotus spp., Trametes versicolor) and Their Effect on the Removal of Micropollutants from Water: An Overview&lt;/a&gt;&lt;/div&gt; &lt;div&gt; &lt;span class=&quot;journal-title&quot;&gt;WATER&lt;/span&gt; &lt;span class=&quot;journal-issn&quot;&gt;( &lt;a target=&quot;_blank&quot; href=&quot;https://portal.issn.org/resource/ISSN/2073-4441&quot;&gt;2073-4441&lt;/a&gt;)&lt;/span&gt;: &lt;span class=&quot;journal-volume&quot;&gt;18&lt;/span&gt; &lt;span class=&quot;journal-issue&quot;&gt;3&lt;/span&gt; &lt;span class=&quot;page&quot;&gt; Paper 334. &lt;/span&gt; &lt;span class=&quot;year&quot;&gt;(2026)&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;pub-footer&quot;&gt;  &lt;span class=&quot;language&quot; xmlns=&quot;http://www.w3.org/1999/html&quot;&gt;Nyelv: Angol | &lt;/span&gt; &lt;span class=&quot;identifiers&quot;&gt; &lt;span class=&quot;id identifier oa_GOLD&quot; title=&quot; Gold &quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;10.3390/w18030334&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.3390/w18030334&quot;&gt; DOI &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;105030284030&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-105030284030&quot;&gt; Scopus &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;https://www.mdpi.com/2073-4441/18/3/334&quot; target=&quot;_blank&quot; href=&quot;https://www.mdpi.com/2073-4441/18/3/334&quot;&gt; Egyéb URL &lt;/a&gt; &lt;/span&gt; &lt;/span&gt; &lt;OnlyViewableByAuthor&gt;&lt;div class=&quot;ratings&quot;&gt; &lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Aquatic Science&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q1&lt;/div&gt; &lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Geography, Planning and Development&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q1&lt;/div&gt; &lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Water Science and Technology&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q1&lt;/div&gt; &lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Biochemistry&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q2&lt;/div&gt; &lt;/div&gt;&lt;/OnlyViewableByAuthor&gt;  &lt;div class=&quot;mtid&quot;&gt;&lt;span class=&quot;long-pub-mtid&quot;&gt;Közlemény: 36910379&lt;/span&gt; | &lt;span class=&quot;status-data status-ADMIN_APPROVED&quot;&gt; Admin láttamozott &lt;/span&gt; Forrás | &lt;span class=&quot;type-subtype&quot;&gt;Folyóiratcikk ( Szakcikk ) &lt;/span&gt; | &lt;span class=&quot;pub-category&quot;&gt;Tudományos&lt;/span&gt; | &lt;span class=&quot;publication-sourceOfData&quot;&gt;&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;lastModified&quot;&gt;Utolsó módosítás: 2026.02.26. 10:24 Szabó Regina (ELTE TTK admin 5) &lt;/div&gt; &lt;/div&gt;&lt;/div&gt;</template2>
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