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PYROLYSIS AND COMBUSTION ENERGETIC CHARACTERIZATION OF COAL-BIOMASS FUEL BLENDS

机译:煤-生物质燃料混合物的热解和燃烧能表征

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A simultaneous thermogravimetric analyzer (STA) and a microscale combustion calorimeter (MCC) were used to investigate the energetic properties of coal, biomass and mixture samples. The STA was used to measure the gravimetric and energetic response of a pyrolyzing sample under inert atmosphere. A pyrolysis mathematical model was used to calculate the heat of pyrolysis of samples from the STA data. The MCC was used to quantify the dynamic heat output from the combustion of the gases produced during the pyrolysis process. The measurement of heat output as a function of temperature was used to calculate the heat of combustion of fuels. It was found that the co-pyrolysis of coal and biomass fuel mixtures exhibited a weighted additive gravimetric and energetic behavior, both from pyrolysis and combustion aspects. It was further validated and concluded that the weighted sum prediction for the heat of pyrolysis and heat of combustion for the coal-biomass fuel mixtures must be conducted on the basis of their individual volatile mass contributions, and not on the basis of initial fuel mixture proportion.
机译:同时热重分析仪(STA)和微型燃烧量热仪(MCC)用于研究煤,生物质和混合物样品的能量特性。 STA用于在惰性气氛下测量热解样品的重量和能量响应。使用热解数学模型从STA数据计算样品的热解热。 MCC用于量化热解过程中产生的气体燃烧产生的动态热量。随温度变化的热量输出测量值被用于计算燃料燃烧的热量。发现从热解和燃烧方面来看,煤和生物质燃料混合物的共热解表现出加权的添加剂重量和能量行为。进一步证实并得出结论,煤-生物质燃料混合物的热解热和燃烧热的加权和预测必须根据其各自的挥发性质量贡献来进行,而不要基于初始燃料混合物的比例来进行。 。

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