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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Comparison of micellar isotherms of benzene determined by headspace gas chromatography and micellar electrokinetic chromatography
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Comparison of micellar isotherms of benzene determined by headspace gas chromatography and micellar electrokinetic chromatography

机译:顶空气相色谱法和胶束电动色谱法测定苯的胶束等温线的比较

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摘要

The possibility is discussed that micellar isotherms determined by vacancy-micellar electrokinetic chromatography (vacancy-MEKC) differ from isotherms in electrolyte-free surfactants due to thermodynamic effects of buffer. Also discussed is the possibility that they are biased at high solute concentrations by solubilization-induced changes of electrical conductivity. Such bias could invalidate a theory on peak asymmetry of neutral solutes in MEKC that is based on thermodynamic interpretation of the isotherms. To evaluate these possibilities, the nonlinear concave upward isotherm of benzene in a pH 7.0, 0.0060 M sodium phosphate buffer containing 50 mM sodium dodecyl sulfate (SDS) was measured by headspace gas chromatography. Of interest is the finding that benzene is more stable in the surfactant-free buffer than in water. The isotherm was compared to that previously measured by vacancy-MEKC in the same buffer and 10, 30, or 50 mM SDS. No difference was found between the isotherms. However, the isotherm indeed differed from that of benzene in buffer-free 50 mM SDS, which was also determined and agreed favorably with previous results. A partial explanation is given for the independence of the vacancy-MEKC isotherm of solubilization-induced conductivity changes.
机译:讨论了通过空位-胶束电动色谱法(vacancy-MEKC)测定的胶束等温线与无电解质表面活性剂的等温线由于缓冲液的热力学效应而不同的可能性。还讨论了由增溶诱导的电导率变化将它们偏置在高溶质浓度下的可能性。这种偏倚可能会使基于等温线热力学解释的MEKC中中性溶质的峰不对称性理论无效。为了评估这些可能性,通过顶空气相色谱法在pH 7.0、0.0060 M磷酸钠缓冲液(含50 mM十二烷基硫酸钠(SDS))中测量了苯的非线性向上凹等温线。有趣的发现是苯在无表面活性剂的缓冲液中比在水中更稳定。将等温线与先前在相同缓冲液和10、30或50 mM SDS中通过空位MEKC测量的等温线进行比较。等温线之间没有发现差异。但是,等温线确实与不含缓冲液的50 mM SDS中的苯等温线不同,后者也已确定并与以前的结果相吻合。对于溶解诱导的电导率变化的空位-MEKC等温线的独立性给出了部分解释。

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