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Effects of cellulose, hemicellulose and lignin on biomass pyrolysis kinetics

机译:纤维素,半纤维素和木质素对生物质热解动力学的影响

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In order to investigate interactions among biomass components on pyrolysis kinetics, pyrolysis experiments of individual components, synthetic biomass (designed by Design-Export software) and natural biomass (rice husk and corn straw) were conducted on a thermogravimetric analyzer (TGA). The results revealed that the pyrolysis behavior of cellulose is sharp, which is with low pyrolysis reaction order (1.38), high activation energy (168.61 kJ/mol) and high pre-exponential factor (3.50E+12/s). The pyrolysis behavior of hemicellulose and lignin is slower but more complicated, both with high pyrolysis reaction order (2.30, 1.51), low activation energy (126.31, 87.21 kJ/mol), and low pre-exponential factor (9.67E+09, 2.59E+05 /s). Comparison of the experimental and calculated kinetics of synthetic samples confirmed that interactive effects on pyrolysis kinetics exist in the co-pyrolysis process. In particular, the presence of lignin inhibited the pyrolysis reaction rate of synthetic biomass, and cellulose played the dominant role in the activation energy and frequency factor. The pyrolysis reaction order was strongly influenced by hemicellulose owing to its abundant and complex branched chains. The predicted model was also established for calculating kinetic parameters of natural biomass with known proportions of three components. The predicted results were consistent with the experimental ones, validating the effectiveness of the prediction model.
机译:为了研究热解动力学对生物量组分的相互作用,在热量分析仪(TGA)上进行各个组分的热解实验,单个组分,合成生物量(由设计出口软件设计)和天然生物量(稻壳和玉米秸秆)。结果表明,纤维素的热解作业是尖锐的,其具有低热解反应顺序(1.38),高活化能量(168.61kJ / mol)和高预指数(3.50e + 12 / s)。半纤维素和木质素的热解作业较慢但更复杂,既具有高热解反应顺序(2.30,1.51),低激活能量(126.31,87.21 kJ / mol),低预指数(9.67e + 09,2.59 E + 05 / s)。合成样品的实验性和计算动力学的比较证实,在共热分解过程中存在对热解动力学的互动作用。特别地,木质素的存在抑制了合成生物质的热解反应速率,并且纤维素在激活能量和频率因子中发挥了显着作用。由于其丰富和复杂的支链,热解反应顺序受到半纤维素的强烈影响。还建立了预测模型,用于计算具有三种组分的已知比例的自然生物质的动力学参数。预测结果与实验结果一致,验证预测模型的有效性。

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