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Bio-catalytic action of twin-screw extruder enzymatic hydrolysis on the deconstruction of annual plant material: Case of sweet corn co-products

机译:双螺杆挤出机酶促水解对一年生植物材料分解的生物催化作用:以甜玉米副产物为例

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摘要

A continuous process combining an alkaline thermo-mechano-chemical pretreatment neutralization step, followed by injection of enzymes into the twin-screw extruder, was developed using sweet corn co-products as a biomass model. The implementation of the continuous process is described. Particular attention is paid to the influence of the bio-catalytic action of enzymatic hydrolysis on the deconstruction of annual plant material in the twin-screw extruder (a process called "bioextrusion"). The use of a twin-screw extruder allows working with high consistency (20%), in a high shear environment, for a short time (similar to 2 min). In the present work, the nature of the ligno(hemi)cellulosic material transformations, covering solubilization and extraction of saccharides and modification of cellulosic fibers, were investigated. 41% of hemicelluloses and 14% of lignin are extracted by the alkaline pretreatment. Hydrolytic enzymes are not deactivated during bioextrusion, which has a destructing effect on the fiber. It leads to a change of rheological properties and induces an increase of sugars released in the form of mono and polysaccharides (up to 13%/DM of total sugars) with longer chains than in the case of a batch reactor. At the same time, the degree of polymerization decreases and a shortening of the cellulose chains occurs. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用甜玉米副产物作为生物量模型,开发了一种连续过程,该过程结合了碱性热机械化学预处理中和步骤,然后将酶注入双螺杆挤出机中。描述了连续过程的实现。特别注意酶促水解的生物催化作用对双螺杆挤出机中一年生植物材料的解构的影响(称为“生物挤出”的过程)。使用双螺杆挤出机可在高剪切环境下短时间(约2分钟)以高稠度(20%)加工。在本工作中,研究了木质素(半)纤维素材料转化的性质,包括糖的增溶和提取以及纤维素纤维的改性。碱性预处理提取了41%的半纤维素和14%的木质素。水解酶在生物挤出过程中不会失活,这会对纤维产生破坏作用。与分批反应器相比,它具有更长的链长,从而导致流变特性的变化,并导致以单糖和多糖形式释放的糖类增加(最多占总糖类的13%/ DM)。同时,聚合度降低并且纤维素链发生缩短。 (C)2015 Elsevier B.V.保留所有权利。

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