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Hydrothermal pretreatment for deconstruction of plant cell wall: Part II. Effect on cellulose structure and bioconversion

机译:植物细胞壁解构的水热预处理:第二部分。 对纤维素结构和生物转化的影响

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Influences of both ultrastructural modification of cellulose after hydrothermal pretreatment and products derived from lignin-carbohydrate complex (LCC) on the subsequent enzymatic digestibility and fermentation were studied in this study. Under hydrothermal conditions, it was found that the rearrangement of hydrogen bonding pattern in cellulose via allomorph and conformational changes which was mainly severity-dependent increased the numbers of water-exposed glycosidic bond and the formation of amorphous-like cellulose fibril facilitated enzymatic hydrolysis. Pseudo lignin, soluble xylo-oligomers, phenols and degradation products from high severity impeded enzymatic digestion. LCC and phenols which were rich in pH-controlled prehydrolyzate did not sufficiently inhibit yeast while furans and some aromatics which were rich in high-severity prehydrolyzate might be potential inhibitors. Trade-off phenomenon was solved by pH-controlled operation and high yields in both glucose (83-93%) and xylose (75-80%) were simultaneously obtained. The final ethanol yield from cellulose to ethanol reached as high as 84-93%. (c) 2018 American Institute of Chemical Engineers AIChE J, 64: 1954-1964, 2018
机译:本研究研究了水热预处理和衍生自木质素 - 碳水化合物复合物(LCC)后水热预处理(LINGIN-碳水化合物络合物(LCC)后的纤维素超微结构改性的影响。在水热条件下,发现纤维素中的氢粘合图案通过全常规和构象变化重排,主要是严重程度依赖性的增加增加了水暴露的糖苷键的数量和无定形纤维素原纤维的形成促进酶水解。伪木质素,可溶性木龙低聚物,酚类和降解产物从高严重程度阻碍酶消化。 LCC和富含pH值控制的富氢化物的酚在呋喃和一些富含高度饱和额的芳族化合物中抑制酵母可能是潜在的抑制剂。通过pH控制的操作来解决权衡现象,同时获得葡萄糖(83-93%)和木糖(75-80%)的高收率。从纤维素到乙醇的最终乙醇产量达到高达84-93%。 (c)2018美国化学工程师学院Aiche J,64:1954-1964,2018

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