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首页> 外文期刊>International Journal of Oil, Gas and Coal Technology: IJOGCT >Effects of temperature and pressure on gas desorption in coal in an enclosed system: a theoretical and experimental study
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Effects of temperature and pressure on gas desorption in coal in an enclosed system: a theoretical and experimental study

机译:温度和压力对封闭系统中煤中瓦斯解吸的影响:理论和实验研究

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The desorption of a gas from any type of coal depends on the gas's pressure and temperature. The adsorption capacity of coal decreases as temperature increase and gas pressure decrease. Desorption capacity increases as temperature rise, and then gas pressure of system also rises in a closed system. The objective of this paper was to determine the relationship between desorption temperature and gas pressure in a closed coal-gas system. At temperatures between 30 degrees C and 240 degrees C, three different types of coal samples (such as lean coal, anthracite and coke coal) were prepared for desorption experiments with methane and nitrogen. Curves describing the relationship between desorption pressure and temperature were obtained. Based on the Boltzmann energy distribution law and the ideal gas state equation, a theoretical model of the desorption pressure and temperature in the system considered was established. The Dubinin-Radushkevich equation was also introduced into the new model. Finally, the gas adsorption capacities of coal at any temperature and pressure could be forecast using the new mathematical model.
机译:气体从任何类型的煤中解吸取决于气体的压力和温度。煤的吸附能力随着温度的升高和气压的降低而降低。解吸能力随着温度的升高而增加,然后在封闭系统中系统的气压也随之升高。本文的目的是确定在封闭的煤气系统中解吸温度和气压之间的关系。在30摄氏度和240摄氏度之间的温度下,准备了三种不同类型的煤样品(如贫煤,无​​烟煤和焦煤)用于甲烷和氮气的解吸实验。获得描述解吸压力和温度之间关系的曲线。根据玻尔兹曼能量分布定律和理想气体状态方程,建立了所考虑系统中解吸压力和温度的理论模型。 Dubinin-Radushkevich方程也被引入到新模型中。最后,可以使用新的数学模型预测在任何温度和压力下煤的气体吸附能力。

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