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Review on cryogenic technologies for CO_(2) removal from natural gas 被引量:2
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作者 Yujing BI Yonglin JU 《Frontiers in Energy》 SCIE CSCD 2022年第5期793-811,共19页
CO_(2) in natural gas(NG)is prone to condense directly from gas to solid or solidify from liquid to solid at low temperatures due to its high triple point and boiling temperature,which can cause a block of equipment.M... CO_(2) in natural gas(NG)is prone to condense directly from gas to solid or solidify from liquid to solid at low temperatures due to its high triple point and boiling temperature,which can cause a block of equipment.Meanwhile,CO_(2) will also affect the calorific value of NG.Based on the above reasons,CO_(2) must be removed during the NG liquefaction process.Compared with conventional methods,cryogenic technologies for CO_(2) removal from NG have attracted wide attention due to their nonpolluting and low-cost advantages.Its integration with NG liquefaction can make rational use of the cold energy and realize the purification of NG and the production of byproduct liquid CO_(2).In this paper,the phase behavior of the CH_(4)-CO_(2) binary mixture is summarized,which provides a basis for the process design of cryogenic CO_(2) removal from NG.Then,the detailed techniques of design and optimization for cryogenic CO_(2) removal in recent years are summarized,including the gas-liquid phase change technique and the gas-solid phase change technique.Finally,several improvements for further development of the cryogenic CO_(2) removal process are proposed.The removal process in combination with the phase change and the traditional techniques with renewable energy will be the broad prospect for future development. 展开更多
关键词 cryogenic co_(2)removal purification of natural gas(NG) biogas upgrading ch_(4)-co_(2)binary system
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煤中二元气体竞争吸附与置换解吸的差异性及其置换规律 被引量:32
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作者 杨宏民 王兆丰 任子阳 《煤炭学报》 EI CAS CSCD 北大核心 2015年第7期1550-1554,共5页
煤对气体的吸附有强弱之分,多元气体之间存在竞争吸附和置换解吸。他们之间会不会因为气体进入的先后顺序不同而产生差异呢?为此进行了煤对CH4-CO2混合气体的竞争吸附和CO2置换煤中CH4的置换吸附对比实验。实验表明,煤对CH4-CO2二元气... 煤对气体的吸附有强弱之分,多元气体之间存在竞争吸附和置换解吸。他们之间会不会因为气体进入的先后顺序不同而产生差异呢?为此进行了煤对CH4-CO2混合气体的竞争吸附和CO2置换煤中CH4的置换吸附对比实验。实验表明,煤对CH4-CO2二元气体的竞争吸附与置换解吸结果是一致的,理论分析表明煤对气体的吸附解吸与气体进入煤体先后顺序和过程无关,只与吸附前后的状态有关。气体置换煤中CH4的规律为:混合气体中强吸附性气体含量越大,置换效率越高;置换压力越大置换效率越高。最后对煤层注气措施提出了建议:应先将煤层瓦斯压力降到安全范围再实施注气措施。 展开更多
关键词 ch4-co2二元气体 竞争吸附 置换解吸 差异性 置换规律
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