Effect of pore size distribution of biomass activated carbon adsorbents on the adsorption capacity

Author:

Wang Qiren1,Li Tingyu2,Tian Haodong2,Zou Die2,Zeng Jia1,Chen Shuang3,Xie Hongmei1,Zhou Guilin13ORCID

Affiliation:

1. Chongqing Key Laboratory of Catalysis and Environmental New Materials, Key Laboratory of Catalysis Science and Technology of Chongqing Education Commission, Department of Chemical Engineering Chongqing Technology and Business University Chongqing China

2. Chongqing No.11 Middle School Chongqing China

3. Engineering Research Center for Waste Oil Recovery Technology and Equipment, Ministry of Education Chongqing China

Abstract

AbstractBACKGROUNDIn order to investigate the correlation between the pore size distribution of biomass activated carbon adsorbents (BACAs) and VOCs (volatile organic compounds) adsorption/desorption performance. Four BACAs with same specific surface area but different pore size distribution were prepared under different experimental conditions and processes.RESULTSThe impact of the pore size distribution of BACAs on the adsorption/desorption performance of benzene, toluene and xylene was investigated. The results indicated that the adsorption ability of the prepared BACAs for benzene, toluene and xylene was mostly affected by the pore sizes distributed in the 2.60 ~ 3.25, 2.68 ~ 3.35and 4.20 ~ 4.90 nm ranges, respectively, when the studied BACAs had similar specific surface area (SBET ≈ 1080 m2 g−1). However, the desorption amount of adsorbed benzene molecules mainly relied on the pore structures of BACAs having pore sizes in the 3.95 ~ 4.60 nm range.CONCLUSIONThe pore structures of BACAs distributed in different pore size ranges have various effects on the phenyl VOCs adsorption capacity. Benzene adsorption on the BACAs was mainly affected by the microporous structures. The pore structure with larger pore size was more favorable for the desorption of the adsorbed toluene and xylene molecules compared to the adsorbed benzene molecules. Benzene, toluene and xylene had low residual rates in the studied activated carbon adsorbents attesting to their superior regenerative properties. This work could provide an important reference for the design, preparation, and selection of activated carbon adsorbents for the adsorption capacity of benzene, toluene and xylene. © 2024 Society of Chemical Industry (SCI).

Publisher

Wiley

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