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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Production and characterization of enzymatic cocktail produced by Aspergillus niger using green macroalgae as nitrogen source and its application in the pre-treatment for biogas production from Ulva rigida
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Production and characterization of enzymatic cocktail produced by Aspergillus niger using green macroalgae as nitrogen source and its application in the pre-treatment for biogas production from Ulva rigida

机译:以绿色大型藻类为氮源的黑曲霉酶混合物的生产,表征及其在乌尔瓦僵菌生产沼气的预处理中的应用

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摘要

Marine macroalgae are gaining more and more importance as a renewable feedstock for durable bioenergy production, but polysaccharides of this macroalgae are structurally complex in its chemical composition. The use of enzymatic hydrolysis may provide new pathways in the conversion of complex polysaccharides to fermentable sugars. In this study, an enzymatic cocktail with high specificity was first isolated from Aspergillus niger using the green macroalgae Ulva rigida as nitrogen source. The cocktail is rich on beta-glucosidase, pectinase and carboxy-methyl-cellulase ( CMCase). The highest activity was obtained with beta-glucosidase ( 109 IU mL (1)) and pectinase ( 76 IU mL (1)), while CMCase present the lowest activity 4.6 IU mL (1). The U. rigida pre-treatment with this enzymatic cocktail showed high rate of reduced sugar release, and could bring promising prospects for enzymatic pre-treatment of the biogas production from U. rigida biomass which reached 1175 mL g CODint1. (C) 2016 Elsevier Ltd. All rights reserved.
机译:作为可持续的生物能源生产,海洋大型藻类作为可再生原料正变得越来越重要,但是这种大型藻类的多糖在化学成分上结构复杂。酶促水解的使用可为复杂多糖向可发酵糖的转化提供新途径。在这项研究中,首先使用绿色大型藻类Ulva harda作为氮源从黑曲霉中分离出具有高特异性的酶混合物。该鸡尾酒富含β-葡萄糖苷酶,果胶酶和羧甲基纤维素酶(CMCase)。用β-葡萄糖苷酶(109 IU mL(1))和果胶酶(76 IU mL(1))获得最高活性,而CMCase最低活性4.6 IU mL(1)。用这种酶混合物进行的僵硬酶预处理显示出较高的糖释放率降低,并可能为酶促处理僵硬拟南芥生物质产生的沼气(达到1175 mL g CODint1)带来广阔的前景。 (C)2016 Elsevier Ltd.保留所有权利。

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