碱土金属改性碳分子筛对氮和甲烷的动力学分离

IF 2 3区 工程技术 Q3 CHEMISTRY, MULTIDISCIPLINARY
Fangli Jing*, Dehang Yang, Shiqi Zhou, Yuanyuan Zhang*, Huan Xiang and Shi-Zhong Luo, 
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引用次数: 0

摘要

采用初湿浸渍法,用碱土金属(Mg、Ca、Sr和Ba)对商品碳分子筛进行了改性。金属在原始cms上分布良好,并以稳定的二价阳离子形式存在。改性对比表面积的影响大于对总孔体积和平均孔径的影响,这主要与孔入口处金属种类的位置有关,从而增强了扩散阻力。在0.7 MPa下,Ca-、Mg-、Sr-和ba -改性吸附剂对甲烷的吸附减弱了32%以上,但对氮的吸附没有影响。这些类型的金属对甲烷的分离选择性影响很大,使甲烷的选择性在3.7 ~ 5.5之间调节,并且它们对吸附动力学特别是甲烷的扩散也有显著的影响。与cms相比,Mg改性后的样品对氮的扩散几乎没有影响。碱性金属改性吸附剂具有良好的稳定性,吸附量可通过热再生恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing the Kinetic Separation of Nitrogen and Methane on Alkaline Earth Metal-Modified Carbon Molecular Sieves

Enhancing the Kinetic Separation of Nitrogen and Methane on Alkaline Earth Metal-Modified Carbon Molecular Sieves

The commercial carbon molecular sieves (CMSs) were modified with alkaline earth metals (Mg, Ca, Sr, and Ba) by an incipient wetness impregnation method. The metal species were well dispersed on pristine CMSs and existed in the stable form of divalent cations. The modification showed greater influence on specific surface area rather than total pore volume and average diameter, which was mostly related to the location of metal species at the pore entrance, leading to the enhancement of diffusion resistance. The Ca-, Mg-, Sr-, and Ba-modified adsorbents weakened the adsorption of methane by more than 32% at 0.7 MPa without affecting the adsorption of nitrogen. These types of metals affected strongly the separation selectivity, tuning the methane selectivity between 3.7 and 5.5, and they also have significant influence on adsorption kinetics especially for methane diffusion. Compared to CMSs, the sample with Mg modification hardly affects the diffusion of nitrogen. The alkaline metal-modified adsorbents exhibited good stability, and the adsorption capacity can be recovered by thermal regeneration.

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来源期刊
Journal of Chemical & Engineering Data
Journal of Chemical & Engineering Data 工程技术-工程:化工
CiteScore
5.20
自引率
19.20%
发文量
324
审稿时长
2.2 months
期刊介绍: The Journal of Chemical & Engineering Data is a monthly journal devoted to the publication of data obtained from both experiment and computation, which are viewed as complementary. It is the only American Chemical Society journal primarily concerned with articles containing data on the phase behavior and the physical, thermodynamic, and transport properties of well-defined materials, including complex mixtures of known compositions. While environmental and biological samples are of interest, their compositions must be known and reproducible. As a result, adsorption on natural product materials does not generally fit within the scope of Journal of Chemical & Engineering Data.
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