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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Cation exchange modification of clinoptilolite -thermodynamic effects on adsorption separations of carbon dioxide, methane, and nitrogen
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Cation exchange modification of clinoptilolite -thermodynamic effects on adsorption separations of carbon dioxide, methane, and nitrogen

机译:阳离子硫化石 - 热再动力学作用对二氧化碳,甲烷和氮气吸附分离

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摘要

This study details an experimental analysis of the thermodynamics of adsorption equilibrium behaviour of pure CO2, CH4, and N-2 gases on raw, Fe3+, Ca2+, and Cs+ cation exchanged clinoptilolite. Equilibrium adsorption isotherms were experimentally determined for CO2, CH4, and N-2 at three different temperatures ranging from 303K up to 363K, at pressures up to 8.0atm using the microgravimetric technique. Kinetic adsorption uptake data was measured at different temperatures for CH4 and N-2 gases, and the results were compared for raw and Ca2+ clinoptilolite. Heat of adsorption values were calculated for all three gases on the studied clinoptilolite samples using the chromatographic method. These results were compared to the isosteric adsorption enthalpies determined from the adsorption isotherms at different temperatures. The isosteric heat of adsorption was the highest for CO2 followed by CH4, and N-2. Temperature dependent Sips, Toth, and Dual-Site Langmuir isotherm models were fitted with experimental data and selectivity factor values were calculated for CO2/CH4 and CH4/N-2 gas separations using the regressed isotherm models. Ca2+ clinoptilolite shows the best potential for CO2/CH(4 )separations due to its high selectivity. However, higher temperatures are needed in order to compensate for the slow kinetic behaviour. For CH4/N-2 separations, Fe3+ clinoptilolite selectivity displays both high values and less variability compared to Cs+ clinoptilolite over a broader range of temperatures and pressures.
机译:本研究详细说明了纯CO2,CH4和N-2气体的吸附平衡行为的热力学的实验分析,Fe3 +,Ca2 +和CS +阳离子交换了Clinophogolite。在三种不同温度范围为303k至363K的不同温度下,在高达8.0ATM的三种不同温度下,在三种不同温度下进行实验测定平衡吸附等温线。在CH4和N-2气体的不同温度下测量动力学吸附吸收数据,并将结果与​​Raw和Ca2 + Clinopholite进行比较。使用色谱法计算研究的临床硫醇酯样品上的所有三种气体的吸附值热量。将这些结果与在不同温度下的吸附等温线中测定的基石吸附焓进行了比较。吸附的旁边热量是CO 2最高,然后是CH 4和N-2。温度依赖性啜饮,茶叶和双部位朗米尔等温模型配有实验数据,使用回归等温线模型计算CO 2 / CH4和CH4 / N-2气体分离的选择性因子值。 CA2 + Clinoptilolite表示由于其高选择性,CO 2 / CH(4)分离的最佳潜力。然而,需要较高的温度以补偿缓慢的动力学行为。对于CH4 / N-2分离,与在更广泛的温度和压力范围内的Cs + Clinophitolite相比,Fe3 + Clinopholepite选择性显示出高值和更少的可变性。

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