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首页> 外文期刊>Arabian journal of geosciences >Study of gas adsorption characteristics influenced by moisture content, different coal particle sizes, and gas pressures
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Study of gas adsorption characteristics influenced by moisture content, different coal particle sizes, and gas pressures

机译:受水分含量,不同煤粒子尺寸和气体压力影响的气体吸附特性研究

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摘要

In coal reservoirs, coal, gas, and water coexist. Different moisture conditions may cause different gas storage capacity. In this paper, a series of isothermal adsorption experiments were conducted which consider different coal particle sizes, moisture ratios, and gas adsorption pressures. The Dubinin-Astakhov isothermal model is adopted in our simulations, and some adsorption parameters such as capacity, rate constant, and energy are obtained. Our key results are as follows: (1) the isothermal gas adsorption characteristics of coal are influenced by moisture, where the adsorption capacity decreases as the moisture content increases. The characteristic energy of adsorption decreases both as a function of particle size and as the moisture content increases. (2) The transient adsorption capacity initially increases sharply with time, which later increases slowly and gradually reaches equilibrium. (3) From the viewpoint of moisture content and particle size, the gas adsorption characteristic is inhibited by increased moisture levels and larger sizes. At the same time, the surface area of a coal sample with smaller particle sizes is greater than that of a sample with larger particle sample. This is inferred from our experiments because the sites for adsorption increase for smaller size samples. Our results can be used to ascertain the adsorption mechanism between gas and moisture on coal.
机译:在煤炭储层,煤炭,煤气和水共存。不同的水分条件可能导致不同的储气能力。在本文中,进行了一系列等温吸附实验,其考虑了不同的煤粒子尺寸,湿度比和气体吸附压力。在我们的模拟中采用Dubinin-Astakhov等温模型,获得了一些吸附参数,如容量,速率常数和能量。我们的关键结果如下:(1)煤的等温气体吸附特性受水分的影响,随着水分含量的增加,吸附能力降低。吸附的特征能量随着粒度的函数而降低,并且随着水分含量的增加。 (2)瞬态吸附容量随时间急剧增加,后来缓慢增加并逐渐达到平衡。 (3)从水分含量和粒径的观点来看,通过增加的水分水平和较大尺寸来抑制气体吸附特性。同时,具有较小粒径的煤样的表面积大于具有较大颗粒样品的样品的表面积。这是从我们的实验推断出的,因为吸附的位点增加较小尺寸样本。我们的结果可用于确定煤炭气体和水分之间的吸附机制。

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