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Effect of thermal pretreatment on chemical composition, physical structure and biogas production kinetics of wheat straw

机译:热处理对麦秸化学成分,物理结构和沼气生成动力学的影响

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Hard lignocellulosic structure of wheat straw is the main hindrance in its anaerobic digestion. Thus, a laboratory scale batch experiment was conducted to study the effect of thermal pretreatment on anaerobic digestion of wheat straw. For this purpose, different thermal pretreatment temperatures of 120, 140, 160 and 180 degrees C were studied and the results were compared with raw wheat straw. Significant differences in biogas production were observed at temperature higher than 160 degrees C. Highest biogas yield of 615 Nml/gVS and volatile solids reduction of 69% was observed from wheat straw pretreated at 180 degrees C. Wheat straw pretreated at 180 degrees C showed 53% higher biogas yield as compared to untreated. Further, FTIR analysis revealed change in chemical bonds of lignocellulosic structure of wheat straw. Modified Gompertz model was best fitted on biogas production data and predicted shorter lag phase time and higher biogas production as the pretreatment temperature increased. Overall, change in lignocellulosic structure and increase in cellulose content were the main reason in enhancing biogas production.
机译:麦秸的硬木质纤维素结构是其厌氧消化的主要障碍。因此,进行了实验室规模的分批实验,以研究热预处理对小麦秸秆厌氧消化的影响。为此,研究了120、140、160和180℃的不同热预处理温度,并将结果与​​未加工的小麦秸秆进行了比较。在高于160摄氏度的温度下观察到沼气产量的显着差异。在180摄氏度下预处理的麦草中观察到最高的沼气产量为615 Nml / gVS,挥发性固体减少了69%。在180摄氏度下预处理的麦草显示53与未经处理的沼气相比,沼气产量提高了%。此外,FTIR分析揭示了麦秸木质纤维素结构的化学键变化。改进的Gompertz模型最适合沼气生产数据,并预测随着预处理温度的升高,滞后阶段时间较短,沼气产量更高。总体而言,木质纤维素结构的变化和纤维素含量的增加是提高沼气产量的主要原因。

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