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Thermogravimetric study on the pyrolysis kinetic mechanism of waste biomass from fruit processing industry

机译:水果加工行业废生物质热解动力学机制的热重分析

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The detailed kinetic analysis of slow pyrolysis process of apricot (Prunus armeniaca L.) kernal shells has been estimated, under non-isothermal conditions, through thermogravimetric analysis (TGA) and derivative thermogravimetry (DTG). Thermal decomposition was implemented using four different heating rates (5, 10, 15 and 20 ?C min-1), with consideration of how this parameter effects on the process kinetics. The higher heating rates provoke the shift of thermo-analytical curves towards more elevated temperatures. Using isoconversional differential method, the variation of activation energy (Ea) with conversion fraction (?) was detected, and pyrolysis reaction profile was discussed. After resolving the pyrolysis rate curves of individual biomass constituents, the temperature and conversion ranges of their thermal transformations were clearly identified. In the latter stage of analysis, every identified reaction step was considered through mechanistic description, which involves selection of the appropriate kinetic model function. The comparison of the results as well as discrepancies between them has been discussed. The corresponding rate-law equations related to thermal decomposition reactions of all biomass constituents present in the tested agricultural waste material have been identified.
机译:在非等温条件下,通过热重分析(TGA)和衍生热重量法(DTG),估计了杏(Prunus armeniaca L.)核壳慢热解过程的详细动力学分析。使用四种不同的加热速率(5,10,15和20≤CIM-1)来实现热分解,考虑到如何对过程动力学的影响。较高的加热速率挑选了热分析曲线朝向更高升高的温度的变化。使用异阳型差分方法,检测转换级分(α)的活化能量(EA)的变化,并讨论了热解反应谱。在解析单个生物质成分的热解率曲线之后,清楚地识别了其热转化的温度和转化范围。在后一段的分析中,通过机械描述考虑了每个识别的反应步骤,这涉及选择适当的动力学模型功能。讨论了结果的比较以及它们之间的差异。已经确定了与测试的农业废物材料中所有生物质成分的热分解反应相关的相应率 - 法律方程。

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