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首页> 外文期刊>Environmental Progress & Sustainable Energy >Inhibition of Cellulase, β-Glucosidase, and Xylanase Activities and Enzymatic Hydrolysis of Dilute Acid Pretreated Wheat Straw by Acetone-Butanol-Ethanol Fermentation Products
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Inhibition of Cellulase, β-Glucosidase, and Xylanase Activities and Enzymatic Hydrolysis of Dilute Acid Pretreated Wheat Straw by Acetone-Butanol-Ethanol Fermentation Products

机译:抑制纤维素酶,β葡糖苷酶和酶水解木聚糖酶的活动稀酸预处理麦草Acetone-Butanol-Ethanol发酵产品

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摘要

Simultaneous saccharification and fermentation has been regarded as a promising process for byconversion of lignocellulosic biomass to acetone-butanol-ethanol (ABE); however, there exits potential inhibition of cellulase, β-glucosidase, and xylanase by the fermentation produces) due to the combination of enzymatic hydrolysis and microbial fermentation in one vessel. The effects of ABE fermentation products including acetone, butanol, ethanol, acetic acid, and butyric acid, individually and in a combination, on the cellulase, β-glucosidase, and xylanase activities and enzymatic saccharification of dilute acid pretreated wheat straw (WS) were studied. The experimental results showed that butanol and mixture of inhibitor compounds strongly depressed cellulolytic and hemicellulolytic activities, and no synergistic inhibiting effect between inhibitors on enzyme - activities was observed. Saccharification of pretreated WS was mainly affected by butanol and temperature. Moreover, preincubation of enzyme solutions with inhibitors mixture for 72 h decreased cellulose and xylanase activities by 15-25% at the three temperatures examined (30, 37, and 50° C), and a significant decrease (64%) in β-glucosidase activity was found at 50° C.
机译:同步糖化和发酵被认为是一个有前途的过程byconversion木质生物质acetone-butanol-ethanol(安);出口的潜在抑制纤维素酶,β葡糖苷酶,木聚糖酶的发酵由于酶的结合产生)水解和微生物发酵船。包括丙酮、丁醇、乙醇、乙酸、和丁酸,单独的组合,纤维素酶,β葡糖苷酶,木聚糖酶的活动和酶糖化的稀酸预处理小麦稻草(WS)进行了研究。表明,丁醇和抑制剂的混合物化合物降解纤维素和强烈的抑郁hemicellulolytic活动,没有协同酶抑制剂——之间的抑制效应观察活动。WS预处理主要是受到丁醇和影响温度。解决方案与抑制剂混合物72 h降低纤维素和木聚糖酶的活动15 - 25%的三个温度检测(30日37岁和50°C),明显降低(64%)在β葡糖苷酶活性被发现在50°C。

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