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Adsorption of C2H4, C2H6 and CO2 on Cation-exchanged Clinoptilolite

机译:阳离子交换斜发沸石对C2H4,C2H6和CO2的吸附

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As a means of assessing their possible applications in the separation and purification of the gases concerned, the adsorption kinetics and equilibrium of pure ethylene (C2H4), ethane (C2H6) and carbon dioxide (CO2) onto untreated natural clinoptilolite/heulandite volcanic tuff (Cp) from Villa de Reyes (San Luis Potosí, México) and onto cation-exchanged clinoptilolite samples (Cp–H and Cp–Na) have been measured over the temperature range 0–240 oC using a glass high-vacuum volumetric device. Some of the results have been compared with those obtained on a commercial synthetic zeolite 4A (CECA). The adsorption rates of the various gases were measured automatically via a custom acquisition data card capable of registering pressure and time data simultaneously. All the samples showed a decreasing adsorption affinity in the order CO2 > C2H4 > C2H6. A very slow adsorption process and a large proportion of irreversible adsorption were observed for both hydrocarbons onto Cp at 20 oC. The irreversible adsorption of C2H4 decreased with increasing temperature, with a small irreversible adsorption being detected at 240 oC. Both Cp at 240 oC and Cp–Na at 0 oC could be promising adsorbents for the separation of C2H4/C2H6 mixtures, while Cp–H may be recommended for the separation at 20 oC at times less than 100 s. The high adsorption selectivity toward CO2 of Cp and Cp–Na at all the experimental temperatures studied enables these samples to be recommenced for the purification of C2H4 and C2H6 contaminated with CO2.
机译:作为评估其在相关气体分离和纯化中可能应用的一种手段,纯乙烯(C2H4),乙烷(C2H6)和二氧化碳(CO2)在未经处理的天然斜发沸石/赤铁矿火山凝灰岩(Cp)上的吸附动力学和平衡)从Villa de Reyes(墨西哥San LuisPotosí)到使用阳离子交换斜发沸石样品(Cp–H和Cp–Na)在0–240 oC的温度范围内使用玻璃高真空体积测量仪进行了测量。已将某些结果与在商用合成沸石4A(CECA)上获得的结果进行了比较。各种气体的吸附率通过可同时记录压力和时间数据的定制采集数据卡自动测量。所有样品均显示出降低的吸附亲和力,依次为CO2> C2H4> C2H6。在20 oC下,两种烃在Cp上的吸附过程都非常缓慢,且不可逆吸附的比例很大。 C2H4的不可逆吸附随温度升高而降低,在240 oC处检测到较小的不可逆吸附。 240 oC的Cp和0 oC的Cp–Na均可作为分离C2H4 / C2H6混合物的有希望的吸附剂,而Cp–H则建议在20 oC的条件下(小于100 s)进行分离。在所有研究的温度下,Cp和Cp–Na对CO2的高吸附选择性使这些样品被推荐用于纯化被CO2污染的C2H4和C2H6。

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