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Suitability assessment of a continuous process combining thermo-mechano-chemical and bio-catalytic action in a single pilot-scale twin-screw extruder for six different biomass sources

机译:在一台中试双螺杆挤出机中将热机械化学和生物催化作用相结合的连续过程对六种不同生物质来源的适用性评估

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摘要

A process has been validated for the deconstruction of lignocellulose on a pilot scale installation using six types of biomass selected for their sustainability, accessibility, worldwide availability, and differences of chemical composition and physical structure. The process combines thermo-mechano-chemical and bio-catalytic action in a single twin-screw extruder. Three treatment phases were sequentially performed: an alkaline pretreatment, a neutralization step coupled with an extraction–separation phase and a bioextrusion treatment. Alkaline pretreatment destructured the wall polymers after just a few minutes and allowed the initial extraction of 18–54% of the hemicelluloses and 9–41% of the lignin. The bioextrusion step induced the start of enzymatic hydrolysis and increased the proportion of soluble organic matter. Extension of saccharification for 24 h at high consistency (20%) and without the addition of new enzyme resulted in the production of 39–84% of the potential glucose.
机译:已经验证了使用六种类型的生物质在中试规模的设施上对木质纤维素进行解构的过程,这些生物质是根据其可持续性,可及性,全球可利用性以及化学组成和物理结构的差异而选择的。该方法在单个双螺杆挤出机中结合了热机械化学和生物催化作用。依次执行三个处理阶段:碱性预处理,中和步骤以及萃取-分离阶段和生物挤压处理。碱性预处理仅需几分钟即可使壁聚合物变形,并允许最初提取18–54%的半纤维素和9–41%的木质素。生物挤出步骤诱导了酶促水解的开始,并增加了可溶性有机物的比例。在高浓度(20%)且不添加新酶的情况下将糖化作用延长24小时可产生39-84%的潜在葡萄糖。

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