首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Clathrate Hydrate Equilibrium Data for the Gas Mixture of Carbon Dioxide and Nitrogen in the Presence of an Emulsion of Cyclopentane in Water
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Clathrate Hydrate Equilibrium Data for the Gas Mixture of Carbon Dioxide and Nitrogen in the Presence of an Emulsion of Cyclopentane in Water

机译:存在环戊烷乳液的情况下二氧化碳与氮气混合气体的笼形水合物平衡数据

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摘要

Carbon dioxide and nitrogen gas separation is achieved through clathrate hydrate formation in the presence of cyclopentane. A phase diagram is presented in which the mole fraction of CO2 in the gas phase is plotted against the mole fraction of C02 in the carbon dioxide + nitrogen + cyclopentane mixed hydrate phase, both defined with respect to total amount of CO2 and N2 in the respective phase. The curve is plotted for temperatures ranging from 283.5 K to 287.S K and pressures from 0.76 MPa to 2.23 MPa. The results show that the carbon dioxide selectivity is moderately enhanced when cyclopentane is present in the mixed hydrate phase. Carbon dioxide could be enriched in the hydrate phase by attaining a mole fraction of up to 0.937 when the corresponding mole fraction in the gas mixture amounts to 0.507. When compared to the three phase hydrate-aqueous liquid—vapor equilibrium in the ternary system {water + carbon dioxide + nitrogen}, the equilibrium pressure of the mixed hydrate is reduced by 0.95 up to 0.97. The gas storage capacity approaches 40 m~3 gas-m~(-3) of hydrate. This value turns out to be roughly constant and independent of the gas composition and the operating conditions.
机译:二氧化碳和氮气的分离是通过在环戊烷存在下形成笼形水合物来实现的。给出了一个相图,其中绘制了气相中CO2的摩尔分数与二氧化碳+氮气+环戊烷混合水合物相中CO2的摩尔分数作图,两者均相对于各自中CO2和N2的总量进行定义相。绘制的曲线是温度范围为283.5 K至287.S K,压力范围为0.76 MPa至2.23 MPa。结果表明,当混合水合物相中存在环戊烷时,二氧化碳的选择性得到适度提高。当气体混合物中的相应摩尔分数为0.507时,通过达到高达0.937的摩尔分数,可以使水合相中的二氧化碳富集。与三元体系中的三相水合物-水溶液-水蒸汽平衡(水+二氧化碳+氮气)相比,混合水合物的平衡压力降低了0.95,最高为0.97。储气量接近40 m〜3 gas-m〜(-3)水合物。结果该值大致恒定,并且与气体成分和操作条件无关。

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