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煤岩比表面积表征方法

Characterization Method for Coalbed Specific Surface Area

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【作者】 喻廷旭汤达祯房媛汪雷祝武权

【Author】 YU Tingxu;TANG Dazhen;FANG Yuan;WANG Lei;ZHU Wuquan;Research Institute of Engineering Survey and Design,Sichuan Coalfield Geology Bureau;China University of Geosciences,MOE Key Laboratory of Marine Reservoir Evolution and Hydrocarbon Accumulation Mechanism;China University of Geosciences,School of Energy Resources;China Geological Publishing House;

【机构】 四川省煤田地质工程勘察设计研究院中国地质大学海相储层演化与油气富集机理教育部重点实验室中国地质大学能源学院地质出版社

【摘要】 为准确表征煤岩比表面积,以鄂尔多斯盆地韩城矿区煤岩为例,进行氮气、二氧化碳和甲烷的吸附等温实验,从煤岩甲烷等温吸附测得的兰氏体积和气体吸附法测得的比表面积相关性分析可知:甲烷吸附能力与二氧化碳SD-R呈正相关关系,与氮气SBET相关性不明显。基于煤岩的二氧化碳吸附数据,运用DFT模型计算微孔分布可知,煤含有大量孔径为0.5~1.0 nm的微孔,基于微孔充填理论的二氧化碳SD-R比氮气SBET更能有效地反映煤岩的吸附能力。鉴于煤岩具有微孔较为发育、微孔控制吸附能力的特点,建议在分析煤岩比表面积时采用二氧化碳吸附SD-R进行表征。

【Abstract】 Taking Hancheng coal mining area in Ordos basin as an example,this paper presents the isothermal adsorption experiment of N2 and CO2to make proper characterization of coalbed specific surface area.The correlation analysis between Langmuir volume from coalbedmethane isothermal adsorption and specific surface area from N2/CO2 gas adsorption indicates a positive correlation between coalbed meth-ane adsorption capacity and CO2SD-R,and a weak correlation between coalbed methane adsorption capacity and N2 SBET.According to thecoalbed CO2 adsorption data,coalbed contains a great number of micropores with diameter of 0.5~1.0 nm by DET model calculation ap-proach,while for N2 adsorption data,it has poor effective micropores,which shows that CO2SD-Ris more representative of the coalbed ad-sorption capacity than N2 SBET.So the coalbed is characterized by more developed micropores and they control adsorption capacity.It is sug-gested that the coalbed specific surface area should be characterized by CO2SD-R.

【基金】 国家自然科学基金(41272175)
  • 【文献出处】 新疆石油地质 ,Xinjiang Petroleum Geology , 编辑部邮箱 ,2016年01期
  • 【分类号】P618.13
  • 【被引频次】3
  • 【下载频次】205
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