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Enhancing the hydrolysis and acidification of steam-exploded cornstalks by intermittent pH adjustment with an enriched microbial community

机译:通过利用丰富的微生物群落进行间歇性pH调节来增强蒸汽爆炸玉米秸秆的水解和酸化

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摘要

Intermittent pH adjustment was used to increase the degradation rate of steam-exploded cornstalks (SEC) and the production of organic acids by an enriched microbial community. The results showed that the degradation rate of SEC was as high as 75% and not affected by the intermittent pH adjustment within the range of 7.0-9.0. However, the total concentration of major water soluble metabolites (acetate and propionate) were increased with pH enhancement, showing the results of 1.86gL ~(-1) for pH 7.0, 2.04gL ~(-1) for pH 8.0 and 3.32gL ~(-1) for pH 9.0 after 84h of fermentation. Based on 16s rDNA analysis by denaturing gradient gel electrophoresis (DGGE), different strains were dominant due to pH shift by intermittent adjustment, which would consequently cause the change in fermentation pattern. Intermittent pH adjustment was considered to be a useful way to enhance bioconversion potentiality of lignocellulose.
机译:间歇性调节pH值可提高蒸汽爆炸玉米秸秆(SEC)的降解率,并通过富集微生物群落增加有机酸的产生。结果表明,SEC的降解率高达75%,不受间歇pH调节在7.0-9.0范围内的影响。但是,随着pH的升高,主要水溶性代谢物(乙酸盐和丙酸盐)的总浓度增加,pH 7.0的结果为1.86gL〜(-1),pH 8.0的结果为2.04gL〜(-1)和3.32gL〜 (-1)发酵84小时后的pH值为9.0。基于变性梯度凝胶电泳(DGGE)的16s rDNA分析,由于间歇调节的pH值变化,不同菌株占主导地位,从而导致发酵模式的改变。间歇性调节pH被认为是增强木质纤维素生物转化潜力的有用方法。

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