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首页> 外文期刊>Biotechnology Progress >High Solid Fed-Batch Butanol Fermentation with Simultaneous Product Recovery: Part II-Process Integration
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High Solid Fed-Batch Butanol Fermentation with Simultaneous Product Recovery: Part II-Process Integration

机译:高固体喂养 - 分类丁醇发酵,同时产品回收:第二部分 - 工艺集成

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摘要

In these studies, liquid hot water (LHW) pretreated and enzymatically hydrolyzed Sweet Sorghum Bagasse (SSB) hydrolyzates were fermented in a fed-batch reactor. As reported in the preceding paper, the culture was not able to ferment the hydrolyzate I in a batch process due to presence of high level of toxic chemicals, in particular acetic acid released from SSB during the hydrolytic process. To be able to ferment the hydrolyzate I obtained from 250 g L-1 SSB hydrolysis, a fed-batch reactor with in situ butanol recovery was devised. The process was started with the hydrolyzate II and when good cell growth and vigorous fermentation were observed, the hydrolyzate I was slowly fed to the reactor. In this manner the culture was able to ferment all the sugars present in both the hydrolyzates to acetone butanol ethanol (ABE). In a control batch reactor in which ABE was produced from glucose, ABE productivity and yield of 0.42 g L-1 h(-1) and 0.36 were obtained, respectively. In the fed-batch reactor fed with SSB hydrolyzates, these productivity and yield values were 0.44 g L-1 h(-1) and 0.45, respectively. ABE yield in the integrated system was high due to utilization of acetic acid to convert to ABE. In summary we were able to utilize both the hydrolyzates obtained from LHW pretreated and enzymatically hydrolyzed SSB (250 g L-1) and convert them to ABE. Complete fermentation was possible due to simultaneous recovery of ABE by vacuum. (C) 2018 American Institute of Chemical Engineers
机译:在这些研究中,在FED分批反应器中发酵液体热水(LHW)预处理和酶促水解的甜心高粱(SSB)水解物。如在上面的纸张中所报道的,由于存在高水平的有毒化学物质,特别是在水解过程中,培养物不能在批量过程中在分批过程中发酵水解产物I。为了能够发酵从250g L-1 SSB水解中获得的水解产物,设计了一种具有原位丁醇回收的FED分批反应器。通过水解产物II开始该方法,并且当观察到良好的细胞生长和剧烈发酵时,将水解产物I缓慢加入反应器中。以这种方式,培养物能够将两种水解产物中存在的所有糖发酵到丙酮丁醇乙醇(ABE)中。在葡萄糖中产生ABE的对照反应器中,分别获得ABE生产率和0.42g L-1 H(-1)和0.36的产率。在用SSB水解产物供给的美联储批量反应器中,这些生产率和产量值分别为0.44g L-1 H(-1)和0.45。由于醋酸的利用转换为ABE,综合系统中的ABE产量很高。总之,我们能够利用从LHW预处理和酶促水解的SSB(250g L-1)获得的水解产物并将它们转化为ABE。由于真空同时恢复ABE,可以完全发酵。 (c)2018美国化学工程研究所

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