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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Feasibility of multi-hydrolytic enzymes production from optimized grape pomace residues and wheat bran mixture using Aspergillus niger in an integrated citric acid-enzymes production process
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Feasibility of multi-hydrolytic enzymes production from optimized grape pomace residues and wheat bran mixture using Aspergillus niger in an integrated citric acid-enzymes production process

机译:在一体化柠檬酸酶生产过程中,使用曲霉葡萄牙葡萄牙葡萄葡萄渣和小麦麸皮混合物生产多水解酶的可行性

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摘要

In this study, the potential of the co-generation of hydrolytic enzymes in the biorefinery plant for citric acid fermentation was investigated. Aspergillus niger B60 mycelium along with the solid residue after the recovery of sugars from white pomace (WP ') were recycled from citric acid fermentation. A mixture design was used to determine the optimum ternary feedstock mixture composed of WP ' (15%), red grape pomace (15%) and wheat bran (70%) that produced the target enzymes with high activities, which were compared to those from pure feedstocks. Maximum carboxymethyl cellulase, polygalacturonase, amylase, xylanase and acid protease activities obtained through solid-state fermentation (120 h, 30 degrees C) of the feedstock mixture were 668 IU/g, 3,151 IU/g, 1,099 IU/g, 579 IU/g and 204 IU/g (dry mass basis), respectively. The system was successfully simulated in SuperPro Designer. Results showed that the enzymes production process serves as the main contributor to the profitability of the biorefinery plant.
机译:在该研究中,研究了对柠檬酸发酵的生物颗粒植物中的水解酶的生成的潜力。曲霉尼日尔B60菌丝体与固体残留物一起从白色焊料(WP')回收糖(WP')中从柠檬酸发酵再循环。混合设计用于确定由WP'(15%),红葡萄焊渣(15%)和小麦麸(70%)组成的最佳三元原料混合物,其产生具有高活性的靶酶,这与来自纯原料。通过固态发酵(120h,30℃)的原料混合物获得的最大羧甲基纤维素酶,聚糖酶,淀粉酶,木聚糖酶和酸蛋白酶活性为668 IU / g,3,151 IU / g,1,099 IU / G,579 IU / G和204 IU / g(干批量基础)分别。系统在SuperPro Designer中成功模拟。结果表明,酶生产过程是生物遗料厂的盈利能力的主要因素。

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