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Thermogravimetric and thermal properties analysis of bituminous coal from coalfield fire area

机译:煤田火区烟煤的热重和热性能分析

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摘要

This paper combined the thermogravimetry TG209F1 Libra with Netzsch LFA 457 to study the thermogravimetric behaviours from 25 degrees C-650 degrees C and measured thermal properties from 25 degrees C-300 degrees C for bituminous coals taken from Wuda coalfield. The characteristic temperatures and different stages of reaction were determined using thermogravimetry (TG-DTG). The thermal diffusivity of the bituminous coal decreases with increasing temperature (from 0.11 +/- 0.03 mm(2) x s(-1) to 0.078 + 0.02 mm(2) x s(-1), depending on the material). Moreover, the specific heat capacity of coal samples presented closely a linear increase with increasing temperature up to 300 degrees C, thermal conductivity of coal appeared a cubic polynomial growth (0.117 - 0.175 W / (m x K)). It might happen because that the thermal expansion plays a more important role than the release of gases and volatile on the quantity of pores.
机译:本文将热重法TG209F1天秤座与Netzsch LFA 457结合使用,研究了从Wuda煤田中提取的烟煤在25摄氏度至650摄氏度之间的热重行为,并在25摄氏度至300摄氏度下测量了热性质。使用热重分析法(TG-DTG)测定特征温度和反应的不同阶段。烟煤的热扩散率随温度的升高而降低(取决于材料,从0.11 +/- 0.03 mm(2)x s(-1)到0.078 + 0.02 mm(2)x s(-1))。此外,煤样品的比热容随温度升高至300摄氏度而呈线性增长,煤的导热系数呈三次多项式增长(0.117-0.175 W /(m x K))。这可能是因为热膨胀比释放气体和挥发物对孔的数量起更大的作用。

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