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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Co-digestion of oat straw and cow manure during anaerobic digestion: Stimulative and inhibitory effects on fermentation
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Co-digestion of oat straw and cow manure during anaerobic digestion: Stimulative and inhibitory effects on fermentation

机译:燕尾秸秆和牛粪的共消化厌氧消化期间:刺激和抑制对发酵的影响

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摘要

Impacts of adding different amounts of cow manure (CM) on the anaerobic digestion (AD) of oat straw (OS) with total solids content (TS) values of 4%, 6%, 8% and 10% was assessed over 50 days using batch experiments. A modified Gompertz model was introduced to predict the methane yield and determine the kinetic parameters. The optimum addition was a 1:2 ratio of CM to the OS added, which resulted in a suitable C/N ratio of 27 and a higher degradation rate of lignocellulose. The best cumulative methane yield of 841.77 mL/g volatile solids added (VSadded) was 26.64% greater than that of digesting OS alone. In addition, the amount of CM added produced larger effects than that of changes in the TS. However, higher CM concentrations were found to be inhibitory. Clustering analysis could provide significant guidance for demonstrating project process and combining farming and animal husbandry.
机译:在50天内评估每燕秸秆(OS)的燕虫消化(Ts)值(Ts)值,在50天内评估4%,6%,8%和10%的燕牛消化(OS)对燕麦秸秆(OS)的影响的影响 批量实验。 引入改性的Gompertz模型以预测甲烷产量并确定动力学参数。 最佳添加是加入OS的1:2的比例,得到适当的C / N比的27比和木质纤维素的更高降解率。 仅添加(Vsadded)的841.77ml / g挥发性固体的最佳累积甲烷产率比单独的消化OS的26.64%。 此外,增加的CM的量产生的效果大于TS的变化的效果。 然而,发现更高的Cm浓度是抑制性的。 聚类分析可以为展示项目流程和组合农业和畜牧业提供重大指导。

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