Getting insight into the influence of coexisting airborne nanoparticles on gas adsorption performance over porous materials

吸附 甲苯 化学工程 化学 多孔性 粒径 ZSM-5型 纳米颗粒 沸石 传质 多孔介质 色谱法 分子筛 催化作用 有机化学 物理化学 工程类
作者
Yi Xing,Yongkang Cui,Ziyi Li,Yingshu Liu,Danqi Bao,Wei Su,Chuen‐Jinn Tsai,Chao Heng Tseng,Angus Shiue,David Y.H. Pui,Ralph T. Yang
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:386: 121928-121928 被引量:15
标识
DOI:10.1016/j.jhazmat.2019.121928
摘要

Adsorption as one of the most important air cleaning methods has been extensively applied during which the coexisting airborne nanoparticles (NPs) with sizes close to adsorbent pore sizes could inevitably influence gas adsorption processes. In this work, the influence of sub-20 nm NPs on toluene adsorption on ZSM-5 zeolites exchanged with different cations (Li+, Na+ and K+) were studied based on gas-and-particle coexisting adsorption/filtration tests. Affinities for both toluene and NPs on adsorbents follow Li-ZSM-5 > Na-ZSM-5 > K-ZSM-5 regarding the orders of charge density, pore size, and internal and external specific surface areas. The toluene adsorption was shown to be impaired by coexisting NPs from perspectives of thermodynamics and kinetics. For Li-ZSM-5, Na-ZSM-5 and K-ZSM-5, significant relative reductions of 10.4 %, 10.5 % and 16.0 % in toluene adsorption capacity at the lower feed concentration, and of 20.3 %, 15.2 % and 2.3 % in mass transfer coefficient at the higher feed concentration were observed, respectively. The influential mechanisms regarding competitiveness between toluene and NPs in interaction with cationic and porous surfaces were accordingly proposed, which are of practical significance for selecting robust adsorbents under realistic harsh air conditions.

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