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高、低煤阶CO_2与CH_4竞争吸附解吸置换效果分析 被引量:11
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作者 王向浩 王延忠 +1 位作者 张磊 王延斌 《非常规油气》 2018年第3期46-51,共6页
基于山西沁水盆地柿庄北煤层气勘探开发资料以及新疆硫磺沟煤矿地质资料,采用U.S.A TerraTek IS-100等温吸附解吸仪开展了CH_4、CO_2单组分吸附解吸试验以及CO_2、CH_4混合气体竞争吸附解吸试验研究,分析了高、低煤阶煤对CH_4、CO_2单... 基于山西沁水盆地柿庄北煤层气勘探开发资料以及新疆硫磺沟煤矿地质资料,采用U.S.A TerraTek IS-100等温吸附解吸仪开展了CH_4、CO_2单组分吸附解吸试验以及CO_2、CH_4混合气体竞争吸附解吸试验研究,分析了高、低煤阶煤对CH_4、CO_2单组分气体吸附解吸规律以及CO_2、CH_4混合气体竞争吸附解吸特性。结果表明:山西沁水高煤阶煤样吸附能力强于新疆硫磺沟低煤阶煤样,高煤阶煤样对CH_4、CO_2气体的吸附解吸曲线具有可逆性,低煤阶煤样对CO_2气体的解吸曲线具有明显的滞后现象;混合气体竞争吸附解吸过程中,高煤阶煤样中CO_2、CH_4吸附浓度及吸附量变化较大,高煤阶煤样CH_4对CO_2的分离因子强于低煤阶煤,高煤阶煤样竞争解吸效果明显,因此高煤阶煤更利于CO_2置换CH_4,且低压置换效果更好;低煤阶煤样中CO_2、CH_4吸附浓度及吸附量变化不大,竞争吸附解吸效果不明显,置换效果较差,说明高煤阶煤更适合通过注CO_2置换CH_4来提高煤层气的采收率。 展开更多
关键词 高、低煤阶 CO2 CH4 竞争吸附解吸
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Development and application of an efficient gas extraction model for low-rank high-gas coal beds 被引量:28
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作者 Baiquan Lin 《International Journal of Coal Science & Technology》 EI 2015年第1期76-83,共8页
To promote gas extraction in low-rank high-gas coal beds, the pore structure characteristics of the coal and their effect on gas desorption were studied. The results show that micropores are relatively rare in low-ran... To promote gas extraction in low-rank high-gas coal beds, the pore structure characteristics of the coal and their effect on gas desorption were studied. The results show that micropores are relatively rare in low-rank coal; mesopores are usually semi-open and inkpot-shaped whereas macropores are usually slit-shaped. Gas desorption is relatively easy at high- pressure stages, whereas it is difficult at low-pressure stages because of the 'bottleneck effect' of the semi-open inkpot-shaped mesopores. A 'two-three-two' gas extraction model was established following experimental analysis and engineering practice applied in the Binchang mining area. In this model, gas extraction is divided into three periods: a planning period, a transitional period and a production period. In each period, surface extraction and underground extraction are performed simultaneously, and pressure-relief extraction and conventional extraction are coupled to each other. After applying this model, the gas extraction rate rose to 78.8 %. 展开更多
关键词 Low-rank coal Pore structure Gas extraction Inkpot-shaped pore
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