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Continuous Acetone–Butanol–Ethanol (ABE) Fermentation with in Situ Solvent Recovery by Silicalite-1 Filled PDMS/PAN Composite Membrane

机译:连续丙酮 - 丁醇 - 乙醇(aBE)发酵,原位溶剂回收silicalite-1填充pDms / paN复合膜

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摘要

The pervaporation (PV) performance of a thin-film silicalite-1 filled PDMS/PAN composite membrane was investigated in the continuous acetone–butanol–ethanol (ABE) production by a fermentation–PV coupled process. Results showed that continuous removal of ABE from the broth at three different dilution rates greatly increased both the solvent productivity and the glucose utilization rate, in comparison to the control batch fermentation. The high solvent productivity reduced the acid accumulation in the broths because most acids were reassimilated by cells for ABE production. Therefore, a higher total solvent yield of 0.37 g/g was obtained in the fermentation–PV coupled process, with a highly concentrated condensate containing 89.11–160.00 g/L ABE. During 268 h of the fermentation–PV coupled process, the PV membrane showed a high ABE separation factor of more than 30 and a total flux of 486–710 g/m2h. Membrane fouling was negligible for the three different dilution rates. The solution-diffusion model, especially the mass transfer equation, was proved to be applicable to this coupled process.
机译:在通过发酵-PV偶联工艺连续生产丙酮-丁醇-乙醇(ABE)的过程中,研究了填充silicalite-1填充的PDMS / PAN复合薄膜的全蒸发(PV)性能。结果表明,与对照分批发酵相比,以三种不同的稀释率从肉汤中连续去除ABE大大提高了溶剂生产率和葡萄糖利用率。高溶剂生产率降低了肉汤中酸的积累,因为大多数酸被细胞重新同化以产生ABE。因此,在发酵-PV偶联过程中,含有89.11–160.00 g / L ABE的高浓缩冷凝液获得了更高的总溶剂产量0.37 g / g。在发酵-PV偶联过程的268小时内,PV膜显示出超过30的高ABE分离系数,总通量为486-710 g / m2h。对于三种不同的稀释率,膜污染可以忽略不计。溶液-扩散模型,特别是传质方程,被证明适用于该耦合过程。

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