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首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Evaluation of coal bed methane potential of coal seams of Sawang Colliery, Jharkhand, India
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Evaluation of coal bed methane potential of coal seams of Sawang Colliery, Jharkhand, India

机译:印度贾坎德邦Sawang煤矿的煤层煤层气潜力评估

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The coal seams of Sawang Colliery, East Bokaro Coalfields are bituminous to sub-bituminous in nature and categorized as high gaseous seams (degree II to degree III level). These seams have the potential for coal bed methane (CBM) and their maturity increases with increasing depth, as a result of enhanced pressure-temperature conditions in the underground. The vitrinite maceral group composition of the investigated coal seams ranges from 62.50-83.15%, whereas the inertinite content varies from 14.93-36.81%. The liptinite content varies from 0.66% to 3.09%. The maximum micro-pores are confined within the vitrinite group of macerals. The coal seams exhibit vitrinite reflectance values (Ro% calculated) from 0.94% (sample CG-97) to 1.21% (sample CG-119). Proximate analyses of the investigated coal samples reveal that the moisture content (M%) ranges from 1.28% to 2.98%, whereas, volatile matter (VM%) content is placed in the range of 27.01% to 33.86%. The ash content (A%) ranges from 10.92% to 30.01%. Fixed carbon (FC%) content varies from 41.53% to 55.93%. Fuel ratio variation shows a restricted range from 1.53 to 1.97. All the coal samples were found to be strongly caking and forming coke buttons. The present study is based on the adsorption isotherm experiments carried out under controlled P-T conditions for determination of actual gas adsorption capacity of the coal seams. This analysis shows that the maximum methane gas adsorbed in the coal sample CG-81 is 17 m~3/t (Std. daf), at maximum pressure of 5.92 MPa and experimental temperature of 30°C. The calculated Langmuir regression parameters P_L and V_L range from 2.49 to 3.75 MPa and 22.94 to 26.88 m~3/t (Std. daf), respectively.
机译:东博卡罗煤田萨旺煤矿的煤层在本质上是烟灰至次烟煤,归类为高气态煤层(II级至III级)。这些煤层有可能产生煤层气(CBM),并且由于地下压力温度条件的增强,其成熟度随深度的增加而增加。所研究煤层的镜质组的一般组成为62.50-83.15%,惰质组的含量为14.93-36.81%。脂肪素含量在0.66%至3.09%之间。最大的微孔被限制在微晶石组的镜质组内。煤层的玻璃质反射率值(计算得出的Ro%)从0.94%(样品CG-97)到1.21%(样品CG-119)。对所研究煤炭样品的近距离分析表明,水分含量(M%)的范围为1.28%至2.98%,而挥发性物质(VM%)的含量范围为27.01%至33.86%。灰分(A%)为10.92%至30.01%。固定碳(FC%)含量从41.53%到55.93%不等。燃油比变化范围为1.53至1.97。发现所有煤样品都强烈结块并形成焦炭纽扣。本研究基于在受控的P-T条件下进行的吸附等温线实验,以确定煤层的实际气体吸附能力。分析表明,在最大压力为5.92 MPa,实验温度为30°C的条件下,煤样CG-81吸附的最大甲烷气体为17 m〜3 / t(标准daf)。计算得出的Langmuir回归参数P_L和V_L分别为2.49至3.75 MPa和22.94至26.88 m〜3 / t(标准daf)。

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