Fabrication of coconut shell-derived porous carbons for CO2 adsorption application

被引:0
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作者
Jiali Bai
Jiamei Huang
Qiyun Yu
Muslum Demir
Eda Akgul
Bilge Nazli Altay
Xin Hu
Linlin Wang
机构
[1] Zhejiang Normal University,Key Laboratory of the Ministry of Education for Advanced Catalysis Materials
[2] Osmaniye Korkut Ata University,Department of Chemical Engineering
[3] Rochester Institute of Technology,College of Engineering Technology, Print and Graphic Media Science
[4] Marmara University,Institute of Pure and Applied Sciences
[5] Zhejiang Normal University,Key Laboratory of Urban Rail Transit Intelligent Operation and Maintenance Technology and Equipment of Zhejiang Province, College of Engineering
关键词
porous carbons; OO; ddsorption; KOH activation; single step reaction; biomass;
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中图分类号
学科分类号
摘要
Biomass-derived porous carbons have been considered as the most potential candidate for effective CO2 adsorbent thanks to being widely-available precursor and having highly porous structure and stable chemical/physical features. However, the biomass-derived porous carbons still suffer from the poor optimization process in terms of the synthesis conditions. Herein, we have successfully fabricated coconut shell-derived porous carbon by a simple one-step synthesis process. The as-prepared carbon exhibits advanced textual activity together with well-designed micropore morphology and possesses oxygen-containing functional groups (reached 18.81 wt %) within the carbon matrix. Depending on the different activating temperatures (from 700 to 800 °C) and KOH/biomass mass ratios (from 0.3 to 1), the 750 °C and 0.5 mass ratio were found to be enabling the highest CO2 capture performance. The optimal adsorbent was achieved a high CO2 uptake capacity of 5.92 and 4.15 mmol·g−1 at 0 and 25 °C (1 bar), respectively. More importantly, as-prepared carbon adsorbent exhibited moderate isosteric heat of adsorption and high CO2/N2 selectivity. The results were revealed not only the textural feature but also the surface functional groups critically determine the CO2 capture performance, indicating coconut shell-derived porous carbon has a considerable potential as a solid-state adsorbent for the CO2 capture.
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页码:1122 / 1130
页数:8
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