Block copolymer pervaporation membrane for in situ product removal during acetone–butanol–ethanol fermentation

ty10086 提交于 周四, 08/26/2021 - 13:28
文章英文标题
Block copolymer pervaporation membrane for in situ product removal during acetone–butanol–ethanol fermentation
正文
Abstract(#br)We address two major challenges facing commercialization of acetone–butanol–ethanol (ABE) fermentation: product inhibition and low productivity. We studied a polystyrene- b -polydimethylsiloxane- b -polystyrene (SDS) triblock copolymer membrane for selective removal of butanol from aqueous solutions by pervaporation. The SDS membrane exhibited higher permeabilities than a commercially available cross-linked polydimethylsiloxane (PDMS) membrane. Both types of pervaporation membrane were also used for in situ product removal of ABE biofuels in Clostridium acetobutylicum fermentations operated in a semi-continuous mode. Membrane performance and its effect on the fermentation process were assessed by measuring flux, OD 600 and concentrations of different components in the fermenter as a function of time. Volumetric ABE productivity increased from 0.45\u003cce:hsp sp=\"0.25\"/\u003eg/(L\u003cce:hsp sp=\"0.25\"/\u003eh) in simple batch fermentation to 0.66\u003cce:hsp sp=\"0.25\"/\u003eg/(L\u003cce:hsp sp=\"0.25\"/\u003eh) in the case of pervaporative-fermentation with the PDMS membrane. A further increase in productivity to 0.94\u003cce:hsp sp=\"0.25\"/\u003eg/(L\u003cce:hsp sp=\"0.25\"/\u003eh) was obtained in the case of pervaporative-fermentation with the SDS membrane. Overall, total ABE production improved by a factor of three, viable fermentation time increased by a factor of two, and cell density increased by a factor of 2.5 upon applying SDS membrane pervaporation, relative to the batch process.
文章内容(英文)
Abstract(#br)We address two major challenges facing commercialization of acetone–butanol–ethanol (ABE) fermentation: product inhibition and low productivity. We studied a polystyrene- b -polydimethylsiloxane- b -polystyrene (SDS) triblock copolymer membrane for selective removal of butanol from aqueous solutions by pervaporation. The SDS membrane exhibited higher permeabilities than a commercially available cross-linked polydimethylsiloxane (PDMS) membrane. Both types of pervaporation membrane were also used for in situ product removal of ABE biofuels in Clostridium acetobutylicum fermentations operated in a semi-continuous mode. Membrane performance and its effect on the fermentation process were assessed by measuring flux, OD 600 and concentrations of different components in the fermenter as a function of time. Volumetric ABE productivity increased from 0.45\u003cce:hsp sp=\"0.25\"/\u003eg/(L\u003cce:hsp sp=\"0.25\"/\u003eh) in simple batch fermentation to 0.66\u003cce:hsp sp=\"0.25\"/\u003eg/(L\u003cce:hsp sp=\"0.25\"/\u003eh) in the case of pervaporative-fermentation with the PDMS membrane. A further increase in productivity to 0.94\u003cce:hsp sp=\"0.25\"/\u003eg/(L\u003cce:hsp sp=\"0.25\"/\u003eh) was obtained in the case of pervaporative-fermentation with the SDS membrane. Overall, total ABE production improved by a factor of three, viable fermentation time increased by a factor of two, and cell density increased by a factor of 2.5 upon applying SDS membrane pervaporation, relative to the batch process.
来源出处
Journal|[J]Journal of Membrane ScienceVolume 484, 2015. PP 57-63
DOI
https://doi.org/10.1016/j.memsci.2015.03.005

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