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首页> 外文期刊>Journal of Thermal Analysis and Calorimetry >Effect of particle size on pyrolysis characteristics of Elbistan lignite
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Effect of particle size on pyrolysis characteristics of Elbistan lignite

机译:粒径对Elbistan褐煤热解特性的影响

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摘要

In this study, the relationship between particle size and pyrolysis characteristics of Elbistan lignite was examined by using the thermogravimetric (TG/DTG) and differential thermal analysis (DTA) techniques. Lignite samples were separated into different size fractions. Experiments were conducted at non-isothermal conditions with a heating rate of 10°C min?1 under nitrogen atmosphere up to 900°C. Pyrolysis regions, maximum pyrolysis rates and characteristic peak temperatures were determined from TG/DTG curves. Thermogravimetric data were analyzed by a reaction rate model assuming first-order kinetics. Apparent activation energy (E) and Arrhenius constant (A r) of pyrolysis reaction of each particle size fraction were evaluated by applying Arrhenius kinetic model. The apparent activation energies in the essential pyrolysis region were calculated as 27.36 and 28.81 kJ mol?1 for the largest (?2360+2000 μm) and finest (?38 μm) particle sizes, respectively.
机译:在这项研究中,通过使用热重法(TG / DTG)和差热分析(​​DTA)技术研究了Elbistan褐煤的粒径与热解特性之间的关系。褐煤样品被分成不同的大小部分。实验是在非等温条件下进行的,升温速率为10°C min?1 ,最高达900°C的氮气氛。从TG / DTG曲线确定热解区域,最大热解速率和特征峰温度。通过假定一级动力学的反应速率模型分析热重数据。通过应用Arrhenius动力学模型评估了每个粒度级分的热解反应的表观活化能(E)和Arrhenius常数(A rsub)。对于最大粒径(?2360 + 2000μm)和最小粒径(?38μm),基本热解区的表观活化能分别为27.36和28.81 kJ mol?1

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