The Experts below are selected from a list of 174 Experts worldwide ranked by ideXlab platform
John Zhou - One of the best experts on this subject based on the ideXlab platform.
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Preparation of novel high permeability and antifouling polysulfone-vanillin membrane
Desalination, 2020Co-Authors: Sudesh Yadav, Ibrar Ibrar, Ali Altaee, Sébastien Déon, John ZhouAbstract:A novel high-performance nanofiltration membrane was fabricated by a simple and scalable route involving in situ cross-linking of hydrophilic, cheap, and environmentally friendly vanillin as antifouling agent with polysulfone (PSf) for salt rejection performance. Vanillin acts as a porogen, which induces a negative surface charge on the membrane surface due to the presence of polar functional groups like alcohol and aldehyde. The surface properties, including charge, morphology, and hydrophilicity, were investigated in detail using analytical instruments. The nanofiltration performance of the fabricated PSf-vanillin membranes was dependent on the percentage of vanillin added in the casting solution. The PSf-vanillin membrane antifouling tests were evaluated using 200 mg/L bovine serum albumin (BSA), and results showed 99% rejection with 88.55% flux recovery ratio. Performance studies were compared with commercially available TRISEP® UA60 nanofiltration membrane. PSf-vanillin membrane M2 showed higher MgSO4 (87.49%), NaCl (25.78%) rejection with excellent antifouling properties compared to commercial UA60 membrane. It is believed that charged membranes are the building blocks for the development of future generation desalination membranes possessing high permeability and selectivity index. The developed membranes have potential Niche Application in the pre-treatment of feed solution.
Markus Eisenbarth - One of the best experts on this subject based on the ideXlab platform.
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Tailored diesel engines for electrical propulsion systems or tailored electrification for future diesel powertrains
Proceedings, 2017Co-Authors: Thomas Körfer, Bastian Holderbaum, David Blanco-rodriguez, Giovanni Vagnoni, Markus EisenbarthAbstract:The DI Diesel engine has gained an increasing market share in the recent 25 years and has converted from a Niche Application to an established, highly appreciated propulsion system in the Light-Duty vehicle segment, covering passenger car as well as light commercial Applications. In vehicle classes with high market penetration this low CO2 concept offers a substantial contribution to minimize Greenhouse gas (GHG) emissions from the transportation sector.
Sudesh Yadav - One of the best experts on this subject based on the ideXlab platform.
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Preparation of novel high permeability and antifouling polysulfone-vanillin membrane
Desalination, 2020Co-Authors: Sudesh Yadav, Ibrar Ibrar, Ali Altaee, Sébastien Déon, John ZhouAbstract:A novel high-performance nanofiltration membrane was fabricated by a simple and scalable route involving in situ cross-linking of hydrophilic, cheap, and environmentally friendly vanillin as antifouling agent with polysulfone (PSf) for salt rejection performance. Vanillin acts as a porogen, which induces a negative surface charge on the membrane surface due to the presence of polar functional groups like alcohol and aldehyde. The surface properties, including charge, morphology, and hydrophilicity, were investigated in detail using analytical instruments. The nanofiltration performance of the fabricated PSf-vanillin membranes was dependent on the percentage of vanillin added in the casting solution. The PSf-vanillin membrane antifouling tests were evaluated using 200 mg/L bovine serum albumin (BSA), and results showed 99% rejection with 88.55% flux recovery ratio. Performance studies were compared with commercially available TRISEP® UA60 nanofiltration membrane. PSf-vanillin membrane M2 showed higher MgSO4 (87.49%), NaCl (25.78%) rejection with excellent antifouling properties compared to commercial UA60 membrane. It is believed that charged membranes are the building blocks for the development of future generation desalination membranes possessing high permeability and selectivity index. The developed membranes have potential Niche Application in the pre-treatment of feed solution.
Thomas Körfer - One of the best experts on this subject based on the ideXlab platform.
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Tailored diesel engines for electrical propulsion systems or tailored electrification for future diesel powertrains
Proceedings, 2017Co-Authors: Thomas Körfer, Bastian Holderbaum, David Blanco-rodriguez, Giovanni Vagnoni, Markus EisenbarthAbstract:The DI Diesel engine has gained an increasing market share in the recent 25 years and has converted from a Niche Application to an established, highly appreciated propulsion system in the Light-Duty vehicle segment, covering passenger car as well as light commercial Applications. In vehicle classes with high market penetration this low CO2 concept offers a substantial contribution to minimize Greenhouse gas (GHG) emissions from the transportation sector.
Ibrar Ibrar - One of the best experts on this subject based on the ideXlab platform.
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Preparation of novel high permeability and antifouling polysulfone-vanillin membrane
Desalination, 2020Co-Authors: Sudesh Yadav, Ibrar Ibrar, Ali Altaee, Sébastien Déon, John ZhouAbstract:A novel high-performance nanofiltration membrane was fabricated by a simple and scalable route involving in situ cross-linking of hydrophilic, cheap, and environmentally friendly vanillin as antifouling agent with polysulfone (PSf) for salt rejection performance. Vanillin acts as a porogen, which induces a negative surface charge on the membrane surface due to the presence of polar functional groups like alcohol and aldehyde. The surface properties, including charge, morphology, and hydrophilicity, were investigated in detail using analytical instruments. The nanofiltration performance of the fabricated PSf-vanillin membranes was dependent on the percentage of vanillin added in the casting solution. The PSf-vanillin membrane antifouling tests were evaluated using 200 mg/L bovine serum albumin (BSA), and results showed 99% rejection with 88.55% flux recovery ratio. Performance studies were compared with commercially available TRISEP® UA60 nanofiltration membrane. PSf-vanillin membrane M2 showed higher MgSO4 (87.49%), NaCl (25.78%) rejection with excellent antifouling properties compared to commercial UA60 membrane. It is believed that charged membranes are the building blocks for the development of future generation desalination membranes possessing high permeability and selectivity index. The developed membranes have potential Niche Application in the pre-treatment of feed solution.
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Preparation of novel high permeability and antifouling polysulfone-vanillin membrane
'Elsevier BV', 2020Co-Authors: Yadav Sudesh, Ibrar Ibrar, Altaee Ali, Déon Sébastien, Zhou JohnAbstract:International audienceA novel high-performance nanofiltration membrane was fabricated by a simple and scalable route involving in situ cross-linking of hydrophilic, cheap, and environmentally friendly vanillin as antifouling agent with polysulfone (PSf) for salt rejection performance. Vanillin acts as a porogen, which induces a negative surface charge on the membrane surface due to the presence of polar functional groups like alcohol and aldehyde. The surface properties, including charge, morphology, and hydrophilicity, were investigated in detail using analytical instruments. The nanofiltration performance of the fabricated PSf-vanillin membranes was dependent on the percentage of vanillin added in the casting solution. The PSf-vanillin membrane antifouling tests were evaluated using 200 mg/L bovine serum albumin (BSA), and results showed 99% rejection with 88.55% flux recovery ratio. Performance studies were compared with commercially available TRISEP® UA60 nanofiltration membrane. PSf-vanillin membrane M2 showed higher MgSO4 (87.49%), NaCl (25.78%) rejection with excellent antifouling properties compared to commercial UA60 membrane. It is believed that charged membranes are the building blocks for the development of future generation desalination membranes possessing high permeability and selectivity index. The developed membranes have potential Niche Application in the pre-treatment of feed solution