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首页> 外文期刊>Biotechnology and Bioengineering >Impact of Recycling Stillage on Conversion of Dilute Sulfuric Acid Pretreated Corn Stover to Ethanol
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Impact of Recycling Stillage on Conversion of Dilute Sulfuric Acid Pretreated Corn Stover to Ethanol

机译:回收釜馏物对稀硫酸预处理玉米秸秆转化为乙醇的影响

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Both the current corn starch to ethanol industry and the emerging lignocellulosic biofuels industry view recycling of spent fermentation broth or stillage as a method to reduce fresh water use. The objective of this study was to understand the impact of recycling stillage on conversion of corn stover to ethanol. Sugars in a dilute-acid pretreated corn stover hydrolysate were fermented to ethanol by the glucose-xylose fermenting bacteria Zymomonas mobilis 8b. Three serial fermentations were performed at two different initial sugar concentrations using either 10% or 25% of the stillage as makeup water for the next fermentation in the series. Serial fermentations were performed to achieve near steady state concentration of inhibitors and other compounds in the corn stover hydrolysate. Little impact on ethanol yields was seen at sugar concentrations equivalent to pretreated corn stover slurry at 15% (w/w) with 10% recycle of the stillage. However, ethanol yields became progressively poorer as the sugar concentration increased and fraction of the stillage recycled increased. At an equivalent corn stover slurry concentration of 20% with 25% recycled stillage the ethanol yield was only 5%. For this microorganism with dilute-acid pretreated corn stover, recycling a large fraction of the stillage had a significant negative impact on fermentation performance. Although this finding is of concern for biochemical-based lignocellulose conversion processes, other microorganism/pretreatment technology combinations will likely perform differently.
机译:当前的玉米淀粉制乙醇工业和新兴的木质纤维素生物燃料工业都将废发酵液或釜馏物的回收视为减少淡水使用的一种方法。这项研究的目的是了解回收釜馏物对玉米秸秆向乙醇转化的影响。葡萄糖-木糖发酵菌运动发酵单胞菌(Zymomonas mobilis)8b将稀酸预处理的玉米秸秆水解产物中的糖发酵为乙醇。在两个不同的初始糖浓度下进行了三个系列发酵,使用10%或25%的釜馏物作为补充水,用于系列中的下一个发酵。进行系列发酵以达到玉米秸秆水解产物中抑制剂和其他化合物的接近稳态浓度。在相当于15%(w / w)预处理玉米秸秆浆液的糖浓度下,以10%的釜馏物回收率,对乙醇产量的影响很小。但是,随着糖浓度的增加和回收馏分的增加,乙醇的收率逐渐变差。在玉米秸秆的当量浆液浓度为20%,回收釜馏物为25%的情况下,乙醇的收率仅为5%。对于这种用稀酸预处理的玉米秸秆的微生物而言,回收大部分的釜馏物会对发酵性能产生重大的负面影响。尽管此发现与基于生物化学的木质纤维素转化过程有关,但其他微生物/预处理技术的组合可能会有不同的表现。

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