Sustainable nanoporous carbon for CO2, CH4, N2, H2 adsorption and CO2/CH4 and CO2/N2 separation

被引:49
|
作者
Park, Jaewoo [1 ]
Attia, Nour F. [1 ,2 ]
Jung, Minji [1 ]
Lee, Myoung Eun [3 ]
Lee, Kiyoung [4 ]
Chung, Jaewoo [3 ]
Oh, Hyunchul [1 ]
机构
[1] Gyeongnam Natl Univ Sci & Technol GNTECH, Dept Energy Engn, Jinju 52725, South Korea
[2] Natl Inst Stand, Chem Div, Fire Protect Lab, Giza 12211, Egypt
[3] Gyeongnam Natl Univ Sci & Technol GNTECH, Dept Environm Engn, Jinju 52725, South Korea
[4] Kyungpook Natl Univ, Sch Nano & Mat Sci & Engn, 2559 Gyeongsang Daero, Sangju 37224, Gyeongbuk, South Korea
基金
新加坡国家研究基金会;
关键词
Gas adsorption; Nanoporous carbon; Hydrogen storage; Bio-waste; Gas separation; METAL-ORGANIC FRAMEWORKS; HYDROGEN ADSORPTION; MICROPOROUS CARBONS; DIOXIDE ADSORPTION; STORAGE; NITROGEN; CAPTURE; SULFUR; WASTE; NANOPARTICLES;
D O I
10.1016/j.energy.2018.06.010
中图分类号
O414.1 [热力学];
学科分类号
摘要
The huge production of waste agricultural and biomass products has a negative impact on the environment, thus necessitating economic and environmental recycling of abundant bio-waste materials to useful materials. To recycle and convert bio-waste materials, a sustainable nanoporous carbon from bio-waste (peanut shell, gingko, and metasequoia leaves) is facilely synthesized via one-step carbonization. Carbonized samples contain a small quantity of metal and non-metal residues (including sulfur and phosphorus), resulting in naturally doped porous carbon. The porosity, morphology, and composition of the nanoporous carbons were investigated and compared with those of commercially available activated carbon. Pure component adsorption isotherms of CO2, CH4, and N-2 were also measured at 40 degrees C up to 1 bar for all samples. These data were used to estimate the separation selectivity for CO2/CH4 and CO2/N-2 1:1 binary mixtures and pressures according to the ideal adsorbed solution theory (IAST) model. Carbonized gingko leaf had the lowest SSA and pore volume but the highest S and P contents, with the highest average selectivity of 506 and 54 for CO2/N-2 and CO2/CH4, respectively. This implies that the composition of the prepared carbon materials plays a significant role in their CO2 adsorption and separation ability, rather than their textural properties. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:9 / 16
页数:8
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