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Novel gas chromatographic headspace techniques for measuring Single-component liquid isotherms

机译:用于测量单组分液体等温线的新型气相色谱标题技术

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In this study, a novel headspace technique, based on liquid calibration, was developed and compared to the standard headspace or vapor calibration technique. The technique was applied for the measurements of single component liquid adsorption isotherms of xylene isomers, ethylbenzene and toluene on a commercial NaX (13X) zeolite. In comparison to the vapor calibration technique, the liquid calibration technique provided more effective means by faster generating liquid isotherms with more accuracy and less computational complexity. The isotherms were measured at 30, 60 and 90 degrees C using both headspace techniques, and the results were found reasonably consistent. Among the alkylaromatic compounds studied, the NaX zeolite was more selective to toluene and showed the lowest selectivity to m-xylene. In contrast to larger adsorption capacity of toluene compared to ethylbenzene and p-xylene, the isosteric heats of adsorption indicated that ethylbenzene and p-xylene created stronger bonds to the NaX sites. The effects of solute concentration in the liquid phase were investigated with regard to the adsorption capacity and selectivity. The results indicates that the adsorbent selectivity is generally dependent on the concentration of the solute in the solution. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本研究中,基于液体校准的新型顶空技术与标准顶空或蒸汽校准技术相比。将该技术应用于商业纳克斯(13X)沸石上的二甲苯异构体,乙苯和甲苯的单组分液体吸附等温线。与蒸气校准技术相比,液体校准技术通过更快地产生更高的产生液体等温度,更精确地提供更有效的方法。使用顶空技术在30,60和90摄氏度下测量等温物,并且结果被发现合理一致。在所研究的烷基芳族化合物中,纳克斯沸石对甲苯更具选择性,并且对M-二甲苯的选择性最低。与甲苯与乙苯和对二甲苯相比的较大吸附能力相比,吸附的基位溶液表明,乙苯和对二甲苯与纳克萨斯位点产生更强的键。关于吸附能力和选择性,研究了溶质浓度在液相中的影响。结果表明吸附剂选择性通常取决于溶液中溶质的浓度。 (c)2017 Elsevier B.v.保留所有权利。

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