TY - JOUR AU - Hirsch, Edit AU - Pataki, Hajnalka AU - Domján, Júlia AU - Farkas, Attila AU - Vass, Panna AU - Fehér, Csaba AU - Barta, Zsolt AU - Nagy, Zsombor Kristóf AU - Marosi, György AU - Csontos, István TI - Inline noninvasive Raman monitoring and feedback control of glucose concentration during ethanol fermentation JF - BIOTECHNOLOGY PROGRESS J2 - BIOTECHNOL PROGR VL - 35 PY - 2019 IS - 5 SN - 8756-7938 DO - 10.1002/btpr.2848 UR - https://m2.mtmt.hu/api/publication/30704769 ID - 30704769 N1 - Összes idézések száma a WoS-ban: 0 LA - English DB - MTMT ER - TY - JOUR AU - Fehér, Anikó AU - Fehér, Csaba AU - Rozbach, M AU - Rácz, Gergely Attila AU - Fekete, M AU - Hegedűs, László AU - Barta, Zsolt TI - Treatments of lignocellulosic hydrolysate and continuous-flow hydrogenation of xylose to xylitol JF - CHEMICAL ENGINEERING & TECHNOLOGY J2 - CHEM ENG TECHNOL VL - 41 PY - 2018 IS - 3 SP - 496 EP - 503 PG - 11 SN - 0930-7516 DO - 10.1002/ceat.201700103 UR - https://m2.mtmt.hu/api/publication/3292620 ID - 3292620 N1 - Budapest University of Technology and Economics, Department of Applied Biotechnology and Food Science, Faculty of Chemical Technology and Biotechnology, Szt. Gellért tér 4, Budapest, 1111, Hungary Enzymicals AG, Walther-Rathenau-Straße 49a, Greifswald, 17489, Germany Budapest University of Technology and Economics and Hungarian Academy of Sciences, MTA–BME Organic Chemical Technology Research Group, Department of Organic Chemistry and Technology, Faculty of Chemical Technology and Biotechnology, Budafoki út 8, Budapest, 1111, Hungary Cited By :10 Export Date: 7 February 2022 CODEN: CETEE Correspondence Address: Barta, Z.; Budapest University of Technology and Economics, Szt. Gellért tér 4, Hungary; email: zsolt_barta@mail.bme.hu LA - English DB - MTMT ER - TY - JOUR AU - Liang, Wang AU - Barta-Rajnai, Eszter AU - Øyvind, Skreiberg AU - Roger, Khalil AU - Czégény, Zsuzsanna AU - Pekkerné Jakab, Emma AU - Barta, Zsolt AU - Morten, Grønli TI - Effect of torrefaction on physiochemical characteristics and grindability of stem wood, stump and bark JF - APPLIED ENERGY J2 - APPL ENERG VL - 227 PY - 2018 SP - 137 EP - 148 PG - 12 SN - 0306-2619 DO - 10.1016/j.apenergy.2017.07.024 UR - https://m2.mtmt.hu/api/publication/3253299 ID - 3253299 LA - English DB - MTMT ER - TY - JOUR AU - Rácz, Gergely Attila AU - Fehér, Csaba AU - Barta, Zsolt TI - Lignocellulózokból nyerhető prebiotikus oligoszacharidok előállításának lehetőségei JF - ÉLELMISZER TUDOMÁNY TECHNOLÓGIA J2 - ÉLELMISZER TUDOMÁNY TECHNOLÓGIA VL - 71 PY - 2017 IS - 2 SP - 1 EP - 4 PG - 4 SN - 2061-3954 UR - https://m2.mtmt.hu/api/publication/30695670 ID - 30695670 LA - Hungarian DB - MTMT ER - TY - JOUR AU - Rácz, Gergely Attila AU - Fehér, Csaba AU - Szarka, András AU - Németh, Áron AU - Tömösközi, Sándor AU - Barta, Zsolt TI - Lignocellulózokból nyerhető oligoszacharidok prebiotikus alkalmazási lehetőségei JF - ÉLELMISZER TUDOMÁNY TECHNOLÓGIA J2 - ÉLELMISZER TUDOMÁNY TECHNOLÓGIA VL - 71 PY - 2017 IS - 1 SP - 2 EP - 5 PG - 4 SN - 2061-3954 UR - https://m2.mtmt.hu/api/publication/3269338 ID - 3269338 LA - Hungarian DB - MTMT ER - TY - JOUR AU - Barta-Rajnai, Eszter AU - Wang, Liang AU - Sebestyén, Zoltán AU - Barta, Zsolt AU - Khalil, Roger AU - Skreiberg, Øyvind AU - Grønli, Morten AU - Pekkerné Jakab, Emma AU - Czégény, Zsuzsanna TI - Comparative study on the thermal behavior of untreated and various torrefied bark, stem wood, and stump of Norway spruce JF - APPLIED ENERGY J2 - APPL ENERG VL - 204 PY - 2017 SP - 1043 EP - 1054 PG - 12 SN - 0306-2619 DO - 10.1016/j.apenergy.2017.05.057 UR - https://m2.mtmt.hu/api/publication/3237837 ID - 3237837 LA - English DB - MTMT ER - TY - JOUR AU - Liang, Wang AU - Barta-Rajnai, Eszter AU - Øyvind, Skreiberg AU - Roger, Khalil AU - Czégény, Zsuzsanna AU - Pekkerné Jakab, Emma AU - Barta, Zsolt AU - Morten, Grønli TI - Impact of torrefaction on woody biomass properties JF - ENERGY PROCEDIA J2 - ENERGY PROCEDIA VL - 105 PY - 2017 SP - 1149 EP - 1154 PG - 6 SN - 1876-6102 DO - 10.1016/j.egypro.2017.03.486 UR - https://m2.mtmt.hu/api/publication/3237766 ID - 3237766 LA - English DB - MTMT ER - TY - JOUR AU - Barta-Rajnai, Eszter AU - Liang, Wang AU - Sebestyén, Zoltán AU - Barta, Zsolt AU - Roger, Khalil AU - Øyvind, Skreiberg AU - Morten, Grønli AU - Pekkerné Jakab, Emma AU - Czégény, Zsuzsanna TI - Effect of temperature and duration of torrefaction on the thermal behavior of stem wood, bark, and stump of spruce JF - ENERGY PROCEDIA J2 - ENERGY PROCEDIA VL - 105 PY - 2017 IS - Beijing SP - 551 EP - 556 PG - 6 SN - 1876-6102 DO - 10.1016/j.egypro.2017.03.355 UR - https://m2.mtmt.hu/api/publication/3237761 ID - 3237761 LA - English DB - MTMT ER - TY - JOUR AU - Fehér, Anikó AU - Fehér, Csaba AU - Rozbach, M AU - Barta, Zsolt TI - Combined approaches to Xylose production from corn Stover by dilute acid hydrolysis JF - CHEMICAL AND BIOCHEMICAL ENGINEERING QUARTERLY J2 - CHEM BIOCHEM ENG Q VL - 31 PY - 2017 IS - 1 SP - 77 EP - 87 PG - 11 SN - 0352-9568 DO - 10.15255/CABEQ.2016.913 UR - https://m2.mtmt.hu/api/publication/3219998 ID - 3219998 N1 - Funding Agency and Grant Number: Hungarian National, Research, Development and Innovation Office (NKFIH) [OTKA PD-108389, OTKA PD-121024]; New Hungary Development Plan [TAMOP-4.2.1/B-09/1/KMR-2010-0002] Funding text: The authors gratefully acknowledge the Project OTKA PD-108389 and OTKA PD-121024 of the Hungarian National, Research, Development and Innovation Office (NKFIH) and the New Hungary Development Plan (Project ID: TAMOP-4.2.1/B-09/1/KMR-2010-0002) for their financial support. AB - Corn stover is a lignocellulosic biomass, an agricultural by-product, a possible raw material for xylose production. In this study corn stover was hydrolyzed with sulfuric and hydrochloric acid. In the presented work, hydrochloric acid resulted in the highest, 88.8 % xylose yield of theoretical under the conditions of 2 % (w/w) hydrochloric acid concentration, 40-minute reaction time, 10 % (w/w) dry matter, at 120 C. Sulfuric acid experiments resulted in 81.9 % xylose yield of theoretical by using 1.5 % (w/w) sulfuric acid, 60-minute reaction time, at 140 C, 7 % (w/w) dry matter. Acid hydrolysis at low dry matter content resulted in relatively low sugar concentrations. Hydrolyzate recycling concentrated xylose to three-times, while the recycling does not decrease the xylose yields. It is also shown that the pseudo first-order and biphasic kinetic models can be based on total sugar concentrations. LA - English DB - MTMT ER - TY - JOUR AU - Olofsson, J AU - Barta, Zsolt AU - Börjesson, P AU - Wallberg, O TI - Integrating enzyme fermentation in lignocellulosic ethanol production: Life-cycle assessment and techno-economic analysis JF - BIOTECHNOLOGY FOR BIOFUELS J2 - BIOTECHNOL BIOFUELS VL - 10 PY - 2017 IS - 1 SN - 1754-6834 DO - 10.1186/s13068-017-0733-0 UR - https://m2.mtmt.hu/api/publication/3209166 ID - 3209166 LA - English DB - MTMT ER -