Preparation of an Activated Carbon Composite with High Thermal Conductivity Based on Emulsified Asphalt and Carbon Nanotubes and its Adsorption Performance for n‐Hexane

Author:

Fu Lipei123,Zhang Houye1,Si Wenzhe2,Zhu Jiahui1,Huang Weiqiu1,Shao Minglu1,Liao Kaili1ORCID,Xu Peng3,Li Bing24,Zuo Jiang1

Affiliation:

1. School of Petroleum and Natural Gas Engineering School of Energy Changzhou University Changzhou 213164 China

2. National Engineering Research Center for Synergetic Control of Air Pollutants and Greenhouse Gases School of Environment Tsinghua University Beijing 100084 China

3. Jiangsu NanFang Precision Co., Ltd Changzhou 213164 China

4. Jiangsu Zhongchuang Qingyuan Technology Co., Ltd Yancheng 224000 China

Abstract

AbstractActivated carbon, as the main adsorption material for treating VOCs, has been widely used. To solve the problem of safety hazards in activated carbon adsorption process due to the large amount of heat released, highly thermally conductive composite activated carbon (A‐AC/CNTs) was prepared using asphalt and highly thermally conductive carbon nanotubes (CNTs) for thermal conductivity improvement. Uniform dispersion and firm loading of CNTs in the carbon production material were achieved by dispersing carbon nanotubes (CNTs) in the asphalt‐in‐water emulsion. Experimental results showed that the specific surface area of A‐AC/CNTs reached a maximum when the loading of CNTs was 0.5 wt %. Meanwhile, the thermal conductivity increased by 1.5 times compared with the original activated carbon. The adsorption capacity of n‐hexane reached the maximum of 2868 mmol ⋅ g−1, and the adsorption capacity increased by 21.41 %. It also maintained good regeneration performance after dynamic adsorption experiments.

Funder

China Postdoctoral Science Foundation

Natural Science Foundation of Jiangsu Province

Publisher

Wiley

Subject

General Chemistry

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