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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Comparative investigation on thermal decomposition of powdered and pelletized biomasses: Thermal conversion characteristics and apparent kinetics
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Comparative investigation on thermal decomposition of powdered and pelletized biomasses: Thermal conversion characteristics and apparent kinetics

机译:粉末和粒状生物质热分解的比较研究:热转换特性和表观动力学

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摘要

In this work, the thermal degradation behaviors of two kinds of biomasses (pinewood and rice husk) with powder and pellet under three oxygen concentrations were investigated by a self-designed macro-thermo-gravimetric analyzer. An obvious hysteresis of thermal degradation of biomass pellets was observed under three conditions. The maximum activation energy of biomass pellets was significantly greater than that of biomass powders, while their average activation energies were almost equal based on distributed activation energy model. For the oxygen-rich combustion, the comprehensive combustion character index of powdered and pelletized biomasses ranged from 3.92 x 10(-7) to 5.16 x 10(-7)%(2).min(-2.)degrees C-3 and from 1.82 x 10(-7) to 1.91 x 10(-7)%(2).min(-2.)degrees C-3, respectively. Furthermore, the derived biochar of powdered biomass has a higher caloricity than that of pelletized biomass during combustion by TG-DSC analysis. The performances of thermal degradation observed by macro-thermogravimetric analyzer could factually reveal the influence of mass and heat transfer on the thermochemical conversion of powdered and pelletized biomasses.
机译:在这项工作中,通过自行设计的宏观热重量分析仪研究了在三种氧浓度下用粉末和颗粒的两种生物量(松木和稻壳)的热降解行为。在三种条件下观察到生物质颗粒的热降解的明显滞后。生物质颗粒的最大活化能量明显大于生物质粉末,而基于分布式激活能量模型几乎相等。对于富氧的燃烧,粉末和造粒生物量的综合燃烧特征指数范围为3.92×10(-7)至5.16×10(-7)%(2).min(-2。)度C-3和从1.82 x 10(-7)至1.91 x 10(-7)%(2).min(-2。)尺度C-3。此外,通过TG-DSC分析,粉末状生物质的衍生生物炭具有比燃烧过程中颗粒化生物质的热度更高。由宏观热重分析仪观察到的热降解的性能可能会揭示质量和传热对粉末和粒化生物质的热化学转化的影响。

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