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An electrogenerated base for the alkaline oxidative pretreatment of lignocellulosic biomass to produce bioethanol

机译:一种用于碱氧化预处理木质纤维素生物质以生产生物乙醇的电生成碱

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In this study, we aimed to develop an alternative base to substitute for NaOH for use in alkaline oxidative biomass pretreatment. An electrogenerated base (EGB) from water electrolysis was employed in the alkaline oxidative pretreatment of corn stover (CS). Similar to NaOH, when the EGB was used in pretreatment, 56.6% of the original lignin was removed after 6?h pretreatment, leading to significantly enhanced enzymatic digestibility. The glucan digestibility of the pretreated CS was 3.8 times higher than that of raw CS after 24 h. The ethanol metabolic yields were 64.6% and 72.4% when using activated carbon detoxified hydrolysate or hydrolysate at pH 5.5, respectively. These results demonstrate that an EGB, a byproduct from various electrocatalytic processes, could be used as a potential replacement for NaOH. Moreover, we propose a new biorefinery concept, which combines water electrolysis, biological conversion and thermochemical/catalytic conversion to produce bioethanol, hydrogen, hydrocarbon fuels and valuable chemicals.
机译:在这项研究中,我们旨在开发一种替代性碱,以替代用于碱性氧化生物质预处理的NaOH。玉米秸秆(CS)的碱性氧化预处理中使用了水电解制得的电生成碱(EGB)。与NaOH相似,当使用EGB进行预处理时,预处理6?h后会除去原始木质素的56.6%,从而显着提高了酶消化率。 24小时后,预处理过的CS的葡聚糖消化率比未加工的CS高3.8倍。当使用活性炭脱毒的水解产物或pH 5.5的水解产物时,乙醇的代谢产率分别为64.6%和72.4%。这些结果表明,来自各种电催化过程的副产品EGB可以用作NaOH的潜在替代品。此外,我们提出了一种新的生物精炼概念,该概念将水电解,生物转化和热化学/催化转化相结合,以生产生物乙醇,氢气,碳氢化合物燃料和有价值的化学品。

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