焙烧对麦秸和花生秸秆生物量热行为的影响:动力学和热力学研究

Bhautik Gajera , Uplabdhi Tyagi , Anil Kumar Sarma , Mithilesh Kumar Jha
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引用次数: 0

摘要

研究了小麦秸秆和花生秸秆的物化行为及其对热解过程热行为的影响。在20、30、40和50℃/min 5种等温加热速率下,采用热重分析(TGA)对焙烧效果进行了实验研究。结果表明,在焙烧过程中,半纤维素含量和挥发分含量显著降低,提高了热值。结果表明,随着焙烧温度的升高,燃料的挥发分含量降低,含碳量增加,热值提高。动力学参数分析表明,Ozawa-Flynn-Wall和Starink模型在计算活化能方面具有显著性,小麦秸秆和小麦秸秆的平均活化能分别为240和238 kJ/mol,花生秸秆和花生秸秆的平均活化能分别为127 kJ/mol和129 kJ/mol。lnA与e - α呈良好的线性关系,表明在惊吓过程中e - α与lnA之间存在补偿效应。这些结果为玉米秸秆热化学转化为能源和化学品提供了重要的基础数据支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of torrefaction on thermal behavior of wheat straw and groundnut stalk biomass: Kinetic and thermodynamic study

This study investigates the physicochemical behavior of Wheat Straw and Groundnut Stalk biomass and its impact on the thermal behavior during torrefaction process. The torrefaction was experimentally investigated by thermogravimetric analysis (TGA) at five isothermal heating rates of 20, 30, 40 and 50 °C/min. Results revealed that during the torrefaction process, significant fraction of hemicellulose and volatile content reduces that improves the high heating value. The results indicated that torrefaction treatment improved the fuel properties with elevated torrefaction temperature, including the lower volatile content, higher carbon content, and higher heating value. Kinetic parameter analysis indicated that the Ozawa–Flynn–Wall and Starink model were significant in calculating the activation energy, and the average activation energy was 240 kJ/mol and 238 kJ/mol (Wheat Stalk and torrified wheat Stalk) 127 kJ/mol and 129 kJ/mol (Groundnut Stalk and torrified Groundnut Stalk). An excellent linear relationship between lnA and Eα was observed, indicating that the compensation effect existed between the Eα and lnA during torrification. These results provide important basic data support for the thermochemical conversion of cornstalk to energy and chemicals.

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