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Comparative study of the enzymatic convertibility of glycerol- and dilute acid-pretreated sugarcane bagasse using Penicillium- and Trichoderma-based cellulase preparations

机译:使用基于青霉和木霉的纤维素酶制剂对甘油和稀酸预处理的甘蔗渣进行酶促转化的比较研究

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Three enzyme preparations based on the cellulase complex of Penicillium verruculosum and three Trichoderma reesei-based enzyme cocktails were used for evaluating the enzymatic convertibility of cellulose contained in glycerol- and sulfuric acid-pretreated bagasse. The hydrolysis was initially monitored with a micro-scale method using 2 mL of reaction mixture containing 50 g/L of pretreated solids, and at an enzyme load of 10 mg proteinig cellulose. The results were further validated at a higher scale in a setup consisting of 20 mL of reaction mixture with a substrate concentration of 100 g/L. For all the cellulase preparations, and regardless of the experiment scale, glycerol-pretreated bagasse displayed better enzymatic convertibility than acid-pretreated bagasse. It was observed that when the enzyme load is increased from 2 to 10 mg/g, the cellulose conversion is improved but the specific hydrolysis rate is only marginally affected. Although the Trichoderma-based commercial cocktail CC-3 led to higher hydrolysis rates and conversions than all the other enzyme preparations, the Penicillium-based cellulases, especially PV-Xyl PCA and PV-Hist BGL, also showed good potential. PV-Xyl PCA was relatively effective for hydrolysing acid-pretreated bagasse, and PV-Hist BGL displayed reasonable performance in the hydrolysis in absence of exogenous beta-glucosidase. (C) 2015 Elsevier B.V. All rights reserved.
机译:三种基于疣状青霉纤维素酶复合物的酶制剂和三种基于里氏木霉的酶混合物用于评估甘油和硫酸预处理的蔗渣中所含纤维素的酶促可转化性。最初使用2 mL含有50 g / L预处理固体的反应混合物,以10 mg蛋白纤维素作为酶负荷,通过微量方法监测水解。在由20 mL底物浓度为100 g / L的反应混合物组成的设置中,进一步验证了结果。对于所有纤维素酶制剂,无论实验规模如何,甘油预处理的蔗渣均显示出比酸预处理的蔗渣更好的酶转化性。观察到,当酶负荷从2增加到10mg / g时,纤维素转化率提高,但是比水解速率仅受到很小的影响。尽管基于木霉的商业鸡尾酒CC-3导致比所有其他酶制剂更高的水解速率和转化率,但基于青霉属的纤维素酶,尤其是PV-Xyl PCA和PV-Hist BGL,也显示出了良好的潜力。 PV-Xyl PCA在水解酸预处理的蔗渣方面相对有效,PV-Hist BGL在没有外源β-葡萄糖苷酶的情况下在水解中表现出合理的性能。 (C)2015 Elsevier B.V.保留所有权利。

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