Adsorption properties of n-octane/1-octene binary mixtures in the zeolitic imidazolate frameworks, ZIF-8 and ZIF-67: Combined experimental and molecular simulation study

IF 4.8 3区 材料科学 Q1 CHEMISTRY, APPLIED
Sungbin Jo , Jayeon Kim , Taesung Jung , Dong-Woo Cho , Chung-Yul Yoo
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Abstract

1-Octene, a linear α-olefin, can be used as a comonomer for producing plastics, oils, waxes, and surfactants. High-purity 1-octene can be obtained by removing paraffin byproducts using energy-intensive distillation. Adsorptive separation using porous material–based adsorbents is a promising alternative to distillation. Most reported adsorbents are zeolites, which preferentially adsorb 1-octene rather than n-octane owing to their polar framework. However, the existing studies are insufficient for investigating apolar adsorbents that adsorb more amounts of n-octane than 1-octene. Herein, the adsorption properties of the apolar adsorbents, zeolitic imidazolate frameworks-8 (ZIF-8) and ZIF-67, obtained from a n-octane/1-octene liquid binary mixture were systematically investigated by conducting batch adsorption experiments for the n-octane volume fraction of 10 %–90 %. Results show that ZIF-8 and ZIF-67 are promising adsorbents for the selective adsorption of n-octane owing to the preferential adsorption of n-octane in the micropores of the ZIFs at the high concentration of n-octane. Configurational-bias grand canonical Monte Carlo simulations confirm that the host–adsorbate energy between ZIF-8 and n-octane is higher than that between ZIF-8 and 1-octene, whereas the host–adsorbate energy between ZIF-67 and n-octane is similar to that between ZIF-67 and 1-octene.

Abstract Image

正辛烷/1-辛烯二元混合物在沸石咪唑啉框架 ZIF-8 和 ZIF-67 中的吸附特性:实验与分子模拟相结合的研究
1 辛烯是一种线性 α 烯烃,可用作生产塑料、油、蜡和表面活性剂的共聚单体。高纯度的 1-辛烯可通过高能耗的蒸馏法去除石蜡副产品获得。使用基于多孔材料的吸附剂进行吸附分离是一种很有前途的蒸馏替代方法。大多数报道的吸附剂都是沸石,由于其极性框架,沸石更倾向于吸附 1-辛烯而不是正辛烷。然而,现有研究还不足以研究吸附正辛烷多于 1-辛烯的非极性吸附剂。本文通过对正辛烷体积分数为 10%-90% 的正辛烷液体二元混合物进行批量吸附实验,系统地研究了从正辛烷/1-辛烯液体二元混合物中获得的极性吸附剂沸石咪唑酸框架-8(ZIF-8)和 ZIF-67 的吸附特性。结果表明,ZIF-8 和 ZIF-67 是很有前途的正辛烷选择性吸附剂,因为在正辛烷浓度较高时,正辛烷会优先吸附在 ZIF 的微孔中。配置偏置大规范蒙特卡洛模拟证实,ZIF-8 与正辛烷之间的主吸附能高于 ZIF-8 与 1-辛烯之间的主吸附能,而 ZIF-67 与正辛烷之间的主吸附能与 ZIF-67 与 1-辛烯之间的主吸附能相似。
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来源期刊
Microporous and Mesoporous Materials
Microporous and Mesoporous Materials 化学-材料科学:综合
CiteScore
10.70
自引率
5.80%
发文量
649
审稿时长
26 days
期刊介绍: Microporous and Mesoporous Materials covers novel and significant aspects of porous solids classified as either microporous (pore size up to 2 nm) or mesoporous (pore size 2 to 50 nm). The porosity should have a specific impact on the material properties or application. Typical examples are zeolites and zeolite-like materials, pillared materials, clathrasils and clathrates, carbon molecular sieves, ordered mesoporous materials, organic/inorganic porous hybrid materials, or porous metal oxides. Both natural and synthetic porous materials are within the scope of the journal. Topics which are particularly of interest include: All aspects of natural microporous and mesoporous solids The synthesis of crystalline or amorphous porous materials The physico-chemical characterization of microporous and mesoporous solids, especially spectroscopic and microscopic The modification of microporous and mesoporous solids, for example by ion exchange or solid-state reactions All topics related to diffusion of mobile species in the pores of microporous and mesoporous materials Adsorption (and other separation techniques) using microporous or mesoporous adsorbents Catalysis by microporous and mesoporous materials Host/guest interactions Theoretical chemistry and modelling of host/guest interactions All topics related to the application of microporous and mesoporous materials in industrial catalysis, separation technology, environmental protection, electrochemistry, membranes, sensors, optical devices, etc.
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