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Integrated Process for Ethanol Biogas and Edible Filamentous Fungi-Based Animal Feed Production from Dilute Phosphoric Acid-Pretreated Wheat Straw

机译:用稀磷酸预处理的麦草生产乙醇沼气和可食用的以丝状真菌为基础的动物饲料的综合工艺

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摘要

Integration of wheat straw for a biorefinery-based energy generation process by producing ethanol and biogas together with the production of high-protein fungal biomass (suitable for feed application) was the main focus of the present study. An edible ascomycete fungal strain Neurospora intermedia was used for the ethanol fermentation and subsequent biomass production from dilute phosphoric acid (0.7 to 1.2% w/v) pretreated wheat straw. At optimum pretreatment conditions, an ethanol yield of 84 to 90% of the theoretical maximum, based on glucan content of substrate straw, was observed from fungal fermentation post the enzymatic hydrolysis process. The biogas production from the pretreated straw slurry showed an improved methane yield potential up to 162% increase, as compared to that of the untreated straw. Additional biogas production, using the syrup, a waste stream obtained post the ethanol fermentation, resulted in a combined total energy output of 15.8 MJ/kg wheat straw. Moreover, using thin stillage (a waste stream from the first-generation wheat-based ethanol process) as a co-substrate to the biogas process resulted in an additional increase by about 14 to 27% in the total energy output as compared to using only wheat straw-based substrates.
机译:本研究的主要重点是通过生产乙醇和沼气以及生产高蛋白真菌生物质(适用于饲料)将小麦秸秆用于生物精炼厂的能源生产过程。使用可食用的子囊真菌真菌菌株Neurospora intermedia进行乙醇发酵,然后从稀磷酸(0.7至1.2%w / v)预处理的麦草中生产生物质。在最佳的预处理条件下,酶解过程后的真菌发酵可观察到乙醇(基于底物秸秆的葡聚糖含量)为理论最大值的84%至90%。与未处理的秸秆相比,预处理的秸秆浆液产生的沼气显示出提高的甲烷产量潜力,最高可提高162%。使用糖浆进行额外的沼气生产,这是乙醇发酵后获得的废物流,导致总总能量输出为15.8 MJ / kg麦草。此外,使用稀釜馏物(来自第一代基于小麦的乙醇工艺的废料流)作为沼气工艺的共同底物,与仅使用秸秆相比,总能量输出增加了约14%至27%小麦秸秆为基质。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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