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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Evaluation of Enzyme Mixtures in Releasing Fermentable Sugars from Pre-pulping Extracts of Mixed Northeast Hardwoods
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Evaluation of Enzyme Mixtures in Releasing Fermentable Sugars from Pre-pulping Extracts of Mixed Northeast Hardwoods

机译:东北混合硬木预制浆中释放可发酵糖中酶混合物的评价

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摘要

One near-term option to developing a forest product biorefinery is to derive pre-pulping extract from incoming wood chips before the main pulping step. The release of monomer sugars from a xylan-rich extract, creating a fermentable substrate is a prerequisite for utilization of pre-pulping extract for production of ethanol or other valueadded products. This study examined the individual and mixture efficiencies of two hemicellulolytic microbial enzymes and two xylanase preparations in catalyzing degradation of green liquor (GL) and hot water (HW) pre-pulping extracts. The effects of four commercial enzyme preparations were determined by assessing yields of xylose +galactose + mannose (xmg) obtained under different reaction conditions. Of the individual enzyme preparations tested, a sample NS 50012 was superior to the other enzyme preparations in releasing xmg under conditions optimized for separate hydrolysis and fermentation and for simultaneous saccharification and fermentation. In comparison to pre-pulping extracts treated with HW, extract treated with GL was found to inhibit the action of all tested enzymes. This inhibition may be related to higher salt and lignin phenol in the GL extract. On both types of extracts, the mixture constituted by NS 50012 and NS 50030 provided the highest yield of hemicellulose conversion at 55 °C and pH 5.5. The generated digestibility thus signified that the synergistic effectiveness in xylan + galactan + mannan (XMG) hydrolysis between NS 50012 (from Aspergillus aculeatus) and NS 50030 (from Aspergillus oryzae) is the result of an interaction mechanism involving different XMG-degrading enzyme activities in the two enzyme preparations.
机译:发展林产品生物精炼厂的近期选择之一是,在主要制浆步骤之前,从传入的木片中提取预制浆的提取物。从富含木聚糖的提取物中释放单体糖,产生可发酵的底物是利用预制浆提取物生产乙醇或其他增值产品的前提条件。这项研究检查了两种半纤维素分解微生物酶和两种木聚糖酶制剂在催化绿液(GL)和热水(HW)预制浆提取物的降解中的个体效率和混合物效率。通过评估在不同反应条件下获得的木糖+半乳糖+甘露糖(xmg)的产量来确定四种商业酶制剂的效果。在测试的各个酶制剂中,样品NS 50012在优化用于单独水解和发酵以及同时糖化和发酵的条件下释放xmg方面优于其他酶制剂。与经HW处理的预制浆提取物相比,经GL处理的提取物可抑制所有测试酶的作用。这种抑制作用可能与GL提取物中的高级盐和木质素酚有关。在两种类型的提取物中,由NS 50012和NS 50030组成的混合物在55°C和pH 5.5时都能提供最高的半纤维素转化率。因此产生的消化率表明,NS 50012(来自米曲霉)和NS 50030(米曲霉)在木聚糖+半乳聚糖+甘露聚糖(XMG)水解中的协同增效是相互作用机制的结果,该相互作用机制涉及不同的XMG降解酶活性。两种酶制剂。

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