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Influence of coal particle size on coal adsorption and desorption characteristics

机译:煤粒度对煤吸附解吸特性的影响

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摘要

Accurate testing coal isotherm can play a significant role in the areas of coal seam gas drainage, outburst control, CO2 geo-sequestration, coalbed methane (CBM) and enhanced coalbed methane recovery (ECBM) etc. The effect of particle size on the CO2 and CH4 sorption capacity of bituminous coal from Illawarra, Australia was investigated at 35°C and at pressure up to 4 MPa. A unique indirect gravimetric apparatus was used to measure the gas adsorption and desorption isotherms of coal of different particle sizes ranging from around 150 urn to 16 mm. Langmuir model was used to analysis the experimental results of all gases. Coal particle size was found to have an apparent effect on the coal ash content and helium density results. Coal with larger particle size had higher ash content and higher helium density. The sorption isotherm was found to be highly sensitive with helium density of coal which was determined in the procedure of testing the void volume of sample cell. Hence, coal particle size had a significant influence on the coal sorption characteristics including sorption capacity and desorption hysteresis for CO2 and CH4, especially calculated with dry basis of coal. In this study, the 150-212 um (150 um) coal samples achieved higher sorption capacity and followed by 2.36-3.35 mm (2.4 mm), 8-9.5 mm (8 mm) and 16-19 mm (16 mm) particle size samples. However, the differences between different coal particles were getting smaller when the sorption isotherms are calculated with dry ash free basis. Test with 150 um coal samples were also found to have relatively smaller desorption hysteresis compared with the other larger particle size samples. The different results including adsorption/desorption isotherm, Langmuir parameters and coal hysteresis were all analysed with the CO2 and CH4 gases.
机译:煤等温线的准确测试可以在煤层瓦斯抽放,突出控制,CO2固存,煤层气(CBM)和增强煤层气回收率(ECBM)等领域中发挥重要作用。粒度对CO2和CO2的影响在35°C和最高4 MPa的压力下研究了来自澳大利亚Illawarra的烟煤对CH4的吸附能力。独特的间接重量分析仪用于测量粒径在150微米至16毫米之间的不同粒径的煤的气体吸附和解吸等温线。用Langmuir模型分析所有气体的实验结果。发现煤的粒度对煤灰含量和氦气密度结果有明显的影响。较大粒径的煤具有较高的灰分含量和较高的氦气密度。发现吸附等温线对煤的氦气密度高度敏感,这是通过测试样品池的空隙体积的程序确定的。因此,煤的粒径对煤的吸附特性有很大的影响,包括对CO2和CH4的吸附能力和解吸滞后,特别是以干基计算。在这项研究中,150-212 um(150 um)的煤样品具有更高的吸附能力,其后的粒径为2.36-3.35 mm(2.4 mm),8-9.5 mm(8 mm)和16-19 mm(16 mm)样品。然而,当以无灰分为基础计算吸附等温线时,不同煤颗粒之间的差异变得越来越小。与其他较大粒径的样品相比,使用150 um煤样品进行的测试也具有相对较小的解吸滞后现象。吸附/解吸等温线,Langmuir参数和煤滞后等不同结果均使用CO2和CH4气体进行了分析。

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