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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Biomass pyrolysis and combustion integral and differential reaction heats with temperatures using thermogravimetric analysis/differential scanning calorimetry
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Biomass pyrolysis and combustion integral and differential reaction heats with temperatures using thermogravimetric analysis/differential scanning calorimetry

机译:使用热重分析/差示扫描量热法测量生物质热解和燃烧积分和微分反应热随温度的变化

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摘要

Integral reaction heats of switchgrass, big bluestem, and corn stalks were determined using thermogravimetric analysis/differential scanning calorimetry (TGA/DSC). Iso-conversion differential reaction heats using TGA/DSC pyrolysis and combustion of biomass were not available, despite reports available on heats required and released. A concept of iso-conversion differential reaction heats was used to determine the differential reaction heats of each thermal characteristics segment of these materials. Results showed that the integral reaction heats were endothermic from 30 to 700 degrees C for pyrolysis of switchgrass and big bluestem, but they were exothermic for corn stalks prior to 587 degrees C. However, the integral reaction heats for combustion of the materials followed an endothermic to exothermic transition. The differential reaction heats of switchgrass pyrolysis were predominantly endothermic in the fraction of mass loss (0.0536-0.975), and were exothermic for corn stalks (0.0885-0.850) and big bluestem (0.736-0.919). Study results provided better insight into biomass thermal mechanism. Published by Elsevier Ltd.
机译:使用热重分析/差示扫描量热法(TGA / DSC)测定了柳枝,、大蓝茎和玉米秸秆的整体反应热。尽管有关于所需和释放的热量的报道,但无法获得使用TGA / DSC热解的等转化差反应热和生物质燃烧。等转化差反应热的概念用于确定这些材料的每个热特性片段的差反应热。结果表明,对于柳枝and和大蓝茎的热解,积分反应热在30到700℃之间是吸热的,而在587℃之前对于玉米秸秆它们是放热的。但是,物料燃烧时的积分反应热是在吸热之后进行的。放热过渡。柳枝pyr热解的差异反应热主要是吸热的,其质量损失分数为(0.0536-0.975),而玉米秸秆(0.0885-0.850)和大的蓝茎(0.736-0.919)则放热。研究结果为生物质的热机理提供了更好的见识。由Elsevier Ltd.发布

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