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MFI 型沸石对醇和多元醇吸附的分子筛选。

Molecular screening of alcohol and polyol adsorption onto MFI-type zeolites.

机构信息

Department of Chemical Engineering, University of Delaware, Newark, Delaware 19716, United States.

出版信息

Langmuir. 2012 Mar 6;28(9):4491-9. doi: 10.1021/la204710j. Epub 2012 Feb 22.

Abstract

Configurational-bias grand canonical Monte Carlo (CB-GCMC) simulations and expanded ensemble (EE)-CB-GCMC simulations were performed to obtain adsorption isotherms of alcohols and polyols onto MFI-type zeolites from the gas phase and aqueous solution. In adsorption from both phases, Henry's constants and heats of adsorption at infinite dilution for straight-chain alcohols, diols, and triols in silicalite-1 are found to increase, and the saturation loadings decrease with increasing carbon number. Adsorption of straight-chain alcohols is more favorable than that of branched-chain alcohols. Henry's constants increase with increasing number of hydroxyl groups for gas-phase adsorption but decrease for adsorption from aqueous solution due to the strong hydrophilic solvent effect of water. The location of the hydroxyls does not affect significantly the adsorption from aqueous solution but does so in gas-phase adsorption. The saturation pressures for gas-phase adsorption decrease by orders of magnitude from the alcohols to the triols. Nonframework cations increase the adsorption of the small alcohols by an order magnitude at low concentrations (<1 mg/mL), but result in only a factor of 2 increase for larger alcohols like butanol at low concentrations (<0.03 mg/mL), and then decrease the adsorption at higher concentrations. Overall, the simulated results are in reasonable agreement with available experimental data.

摘要

采用构象偏倚巨正则蒙特卡罗(CB-GCMC)模拟和扩展系综(EE)-CB-GCMC 模拟,从气相和水溶液中获得了醇和多元醇在 MFI 型沸石上的吸附等温线。在从两相吸附中,发现直链醇、二醇和三醇在 silicalite-1 中的亨利常数和无限稀释吸附热随碳数的增加而增加,饱和负载量随碳数的增加而降低。直链醇的吸附比支链醇更有利。对于气相吸附,亨利常数随羟基数量的增加而增加,但对于从水溶液吸附,由于水的强亲水性溶剂效应,亨利常数会降低。羟基的位置对水溶液吸附的影响不大,但对气相吸附的影响较大。从气相吸附的饱和压力从醇到三醇降低了几个数量级。在低浓度(<1mg/mL)下,非骨架阳离子会使小醇的吸附增加一个数量级,但在低浓度(<0.03mg/mL)下,对较大醇如丁醇的吸附仅增加 2 倍,然后在高浓度下会降低吸附。总的来说,模拟结果与现有实验数据具有较好的一致性。

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