{ "labelLang" : "hun", "responseDate" : "2024-03-28 21:06", "content" : { "otype" : "JournalArticle", "mtid" : 2541332, "status" : "ADMIN_APPROVED", "published" : true, "comment" : "Department of Chemical and Environmental Process Engineering, Budapest University of Technology and Economics, Budafoki út 8, H-1111 Budapest, Hungary \n Research Institute of Chemical and Process Engineering, University of Pannonia, Egyetem utca 10, H-8200 Veszprém, Hungary \n Cited By :42 \n Export Date: 8 April 2021 \n CODEN: CERDE \n Correspondence Address: Valentínyi, N.; Department of Chemical and Environmental Process Engineering, Budafoki út 8, H-1111 Budapest, Hungary; email: n.valentinyi@mail.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, T 76139, TAMOP-4.2.2/B-10/1-2010-0009, TAMOP-4.2.2/B-10/1-2010-0025 \n Funding text 1: This work was supported by OTKA , Hungarian Sciences Research Fund ; Grant T 76139 , No. SH 7/2/14 Swiss-Hungarian Joined project, Grant TAMOP-4.2.2/B-10/1-2010-0009 and TAMOP-4.2.2/B-10/1-2010-0025 .\nDepartment of Chemical and Environmental Process Engineering, Budapest University of Technology and Economics, Budafoki út 8, H-1111 Budapest, Hungary \n Research Institute of Chemical and Process Engineering, University of Pannonia, Egyetem utca 10, H-8200 Veszprém, Hungary \n Cited By :42 \n Export Date: 9 April 2021 \n CODEN: CERDE \n Correspondence Address: Valentínyi, N.; Department of Chemical and Environmental Process Engineering, Budafoki út 8, H-1111 Budapest, Hungary; email: n.valentinyi@mail.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, T 76139, TAMOP-4.2.2/B-10/1-2010-0009, TAMOP-4.2.2/B-10/1-2010-0025 \n Funding text 1: This work was supported by OTKA , Hungarian Sciences Research Fund ; Grant T 76139 , No. SH 7/2/14 Swiss-Hungarian Joined project, Grant TAMOP-4.2.2/B-10/1-2010-0009 and TAMOP-4.2.2/B-10/1-2010-0025 .\nDepartment of Chemical and Environmental Process Engineering, Budapest University of Technology and Economics, Budafoki út 8, H-1111 Budapest, Hungary \n Research Institute of Chemical and Process Engineering, University of Pannonia, Egyetem utca 10, H-8200 Veszprém, Hungary \n Cited By :42 \n Export Date: 2 July 2021 \n CODEN: CERDE \n Correspondence Address: Valentínyi, N.; Department of Chemical and Environmental Process Engineering, Budafoki út 8, H-1111 Budapest, Hungary; email: n.valentinyi@mail.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, T 76139, TAMOP-4.2.2/B-10/1-2010-0009, TAMOP-4.2.2/B-10/1-2010-0025 \n Funding text 1: This work was supported by OTKA , Hungarian Sciences Research Fund ; Grant T 76139 , No. SH 7/2/14 Swiss-Hungarian Joined project, Grant TAMOP-4.2.2/B-10/1-2010-0009 and TAMOP-4.2.2/B-10/1-2010-0025 .\nDepartment of Chemical and Environmental Process Engineering, Budapest University of Technology and Economics, Budafoki út 8, H-1111 Budapest, Hungary \n Research Institute of Chemical and Process Engineering, University of Pannonia, Egyetem utca 10, H-8200 Veszprém, Hungary \n Cited By :42 \n Export Date: 5 July 2021 \n CODEN: CERDE \n Correspondence Address: Valentínyi, N.; Department of Chemical and Environmental Process Engineering, Budafoki út 8, H-1111 Budapest, Hungary; email: n.valentinyi@mail.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, T 76139, TAMOP-4.2.2/B-10/1-2010-0009, TAMOP-4.2.2/B-10/1-2010-0025 \n Funding text 1: This work was supported by OTKA , Hungarian Sciences Research Fund ; Grant T 76139 , No. SH 7/2/14 Swiss-Hungarian Joined project, Grant TAMOP-4.2.2/B-10/1-2010-0009 and TAMOP-4.2.2/B-10/1-2010-0025 .\nDepartment of Chemical and Environmental Process Engineering, Budapest University of Technology and Economics, Budafoki út 8, H-1111 Budapest, Hungary \n Research Institute of Chemical and Process Engineering, University of Pannonia, Egyetem utca 10, H-8200 Veszprém, Hungary \n Cited By :42 \n Export Date: 8 July 2021 \n CODEN: CERDE \n Correspondence Address: Valentínyi, N.; Department of Chemical and Environmental Process Engineering, Budafoki út 8, H-1111 Budapest, Hungary; email: n.valentinyi@mail.bme.hu \n Funding details: Hungarian Scientific Research Fund, OTKA, T 76139, TAMOP-4.2.2/B-10/1-2010-0009, TAMOP-4.2.2/B-10/1-2010-0025 \n Funding text 1: This work was supported by OTKA , Hungarian Sciences Research Fund ; Grant T 76139 , No. SH 7/2/14 Swiss-Hungarian Joined project, Grant TAMOP-4.2.2/B-10/1-2010-0009 and TAMOP-4.2.2/B-10/1-2010-0025 .\nDepartment of Chemical and Environmental Process Engineering, Budapest University of Technology and Economics, Budafoki út 8, H-1111 Budapest, Hungary \n Research Institute of Chemical and Process Engineering, University of Pannonia, Egyetem utca 10, H-8200 Veszprém, Hungary \n Cited By :43 \n Export Date: 3 September 2021 \n CODEN: CERDE \n Correspondence Address: Valentínyi, N.; Department of Chemical and Environmental Process Engineering, Budafoki út 8, 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However, to become a widely applied process in the industry it is of crucial importance to develop membrane properties, process and module design as well as proper modelling in professional software environment. In this work a pervaporation model improvement of the basic solution-diffusion model (Rautenbach et al., 1990) is recommended and tested on experimental data. The reason behind this improvement is that the transport coefficient cannot be considered as constant assumed in the basic model in a wide concentration range. The change of the transport coefficient is considered as an exponential function of the composition of permeating compound. This exponential dependency is assumed by the authors after investigating the shape of the flux curves measured in a wider feed concentration range. The accuracy of this improved model is experimentally tested with the pervaporation of isobutanol-water, n-butanol-water, and ethanol-water mixtures on commercial hydrophilic composite membranes. This model improvement gives accurate and reliable data for a wide range of feed concentration proving that the assumption of practically constant transport coefficient cannot be applied. 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