首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pretreatment of polysaccharidic wastes with cellulolytic Aspergillus fumigatus for enhanced production of biohythane in a dual-stage process
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Pretreatment of polysaccharidic wastes with cellulolytic Aspergillus fumigatus for enhanced production of biohythane in a dual-stage process

机译:用纤维素分解曲霉菌的预处理用纤维素毒素Fumigatus加强双阶段过程中生物合奇的生产

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摘要

Biological pretreatment of polysaccharidic wastes (PWs) is a cost-effective and environmentally friendly approach to improve the digestibility and utilization of these valuable substrates in dual-stage biohythane production. In order to reduce the prolonged incubation time and loss of carbohydrate during the pretreatment of PWs with Aspergillus fumigatus, a systematic optimization using Taguchi methodology resulted in an unprecedented recovery of soluble carbohydrates (362.84 mg g(-1)) within 5 days. The disruption and fragmentation of lignocellulosic structures in PWs, and possible saccharification of cellulose and hemicellulose components, increased its digestibility. A dual-stage biohythane production with pretreated PWs showed increased yield (214.13 mL g(-1) VSadded), which was 56% higher than the corresponding value with the untreated PWs. This resulted in 47% higher energy recovery as biohythane in pretreated biomass compared to untreated biomass. Optimized fungal pretreatment is, therefore, an effective method to improve the digestibility of PWs and its subsequent conversion to biohythane.
机译:多糖废物(PWS)的生物预处理是一种成本效益和环保的方法,可以改善这些有价值的基材在双阶段生物律生产中的消化率和利用。为了减少曲霉菌的预处理期间延长孵育时间和碳水化合物的损失,使用Taguchi方法的系统优化导致了5天内未溶解的碳水化合物(362.84mg(-1))的恢复。木质纤维素结构在PWS中的破坏和破碎,以及纤维素和半纤维素组分的可能糖化,增加了其消化率。具有预处理PW的双阶段生物律生产显示产率升高(214.13ml G(-1)Vsadded),其比未处理的PWS的相应值高56%。与未处理的生物质相比,这导致预处理生物质中的生物合高能恢复47%。因此,优化的真菌预处理是改善PWS的消化率及其随后转化为生物律的有效方法。

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