首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Establishment of adsorption isotherms of m- and p-cresols in chromatographic process with aluminum terephthalate metal-organic framework as stationary phase
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Establishment of adsorption isotherms of m- and p-cresols in chromatographic process with aluminum terephthalate metal-organic framework as stationary phase

机译:用铝对苯二甲酸铝金属 - 有机框架在色谱法中建立吸附等温线,用铝对苯二甲酸铝金属 - 有机框架作为固定相

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Close boiling points pose great challenges to the separation of the isomers m-cresol and p-cresol. Metal-organic frameworks (MOFs) material with uniform pore structure, high specific surface area and good chemical stability is a potential adsorbent. In this study, m-cresol and p-cresol were separated by a chromatographic process with aluminum terephthalate metal-organic framework (MIL-53(Al)) as stationary phase and acetonitrile as mobile phase. In view of the unique "breathing" effect of MOFs materials, according to the kinetic process and thermodynamic equilibrium of adsorption and desorption, the hybrid adsorption isotherm equations were established, which can reflect the "breathing" effect by combining the Langmuir adsorption process of narrow pore and the multi-stage adsorption process of large pore. The parameters of adsorption isotherm were determined by inverse method and genetic algorithm, and the adaptability of the equilibrium dispersive chromatography model based on this adsorption isotherm to the single-component adsorption process and two-component competitive adsorption process was proved under different injection concentration, injection time and flow velocity conditions. The separation process of m-cresol and p-cresol was optimized by the chromatographic model and genetic algorithm. Under the optimized conditions, the separated m-cresol and p-cresol were obtained with the purity values of 96.26% and 93.23%, and the recovery values of 96.93% and 96.59%, respectively. (C) 2019 Elsevier B.V. All rights reserved.
机译:关闭沸点对异构体M-甲酚和p甲酚的分离构成了巨大挑战。金属有机框架(MOF)具有均匀孔结构,高比表面积和良好的化学稳定性是潜在的吸附剂。在该研究中,通过用铝对苯二甲酸铝金属 - 有机骨架(MIL-53(Al))作为固定相和乙腈作为流动相,通过色谱法分离M-甲酚和p-甲酚。鉴于MOFS材料的独特性“呼吸”效果,根据吸附和解吸的动力学平衡,建立了杂交吸附等温线方程,这可以通过组合狭窄的朗米尔吸附过程来反映“呼吸”效果孔隙和大孔的多级吸附过程。通过逆方法和遗传算法确定吸附等温线,并在不同的注射浓度下,证明了基于该吸附等温线的平衡色散色谱模型对单组分吸附过程和双组分竞争吸附过程的适应性。时间和流速条件。通过色谱模型和遗传算法优化了M-甲酚和p甲酚的分离过程。在优化的条件下,获得分离的M-甲酚和p-甲酚,纯度值为96.26%和93.23%,恢复值分别为96.93%和96.59%。 (c)2019 Elsevier B.v.保留所有权利。

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