Schmidt S L, Myers M D, Kelley S S, McMillan J D, Padukone N
National Renewable Energy Laboratory, 1617 Cole Blvd., Golden, CO 80401-3393, USA.
Appl Biochem Biotechnol. 1997 Spring;63-65:469-82. doi: 10.1007/BF02920447.
The use of membrane processes for the recovery of fermentation products has been gaining increased acceptance in recent years. Pervaporation has been studied in the past as a process for simultaneous fermentation and recovery of volatile products such as ethanol and butanol. However, membrane fouling and low permeate fluxes have imposed limitations on the effectiveness of the process. In this study, we characterize the performance of a substituted polyacetylene membrane, poly[(l-trimethylsilyl)-l-propyne] (PTMSP), in the recovery of ethanol from aqueous mixtures and fermentation broths. Pervaporation using PTMSP membranes shows a distinct advantage over conventional poly(dimethyl siloxane) (PDMS) membranes in ethanol removal. The flux with PTMSP is about threefold higher and the concentration factor is about twofold higher than the corresponding performance achieved with PDMS under similar conditions. The performance of PTMSP with fermentation broths shows a reduction in both flux and concentration factor relative to ethanol-water mixtures. However, the PTMSP membranes indicate initial promise of increased fouling resistance in operation with cell-containing fermentation broths.
近年来,采用膜工艺回收发酵产物越来越受到认可。过去曾研究过渗透汽化作为一种同时进行发酵和回收挥发性产物(如乙醇和丁醇)的工艺。然而,膜污染和低渗透通量限制了该工艺的有效性。在本研究中,我们表征了一种取代聚乙炔膜,聚[(1-三甲基甲硅烷基)-1-丙炔](PTMSP)在从含水混合物和发酵液中回收乙醇方面的性能。使用PTMSP膜进行渗透汽化在乙醇去除方面比传统的聚二甲基硅氧烷(PDMS)膜具有明显优势。在相似条件下,PTMSP的通量比PDMS高约三倍,浓缩系数比PDMS高约两倍。与乙醇-水混合物相比,PTMSP在发酵液中的性能表现为通量和浓缩系数均降低。然而,PTMSP膜显示出在含细胞发酵液操作中具有增强抗污染性的初步前景。