Human hair-derived nitrogen and sulfur co-doped porous carbon materials for gas adsorption

被引:56
作者
Zhao, Zhi-Qiang [1 ,2 ]
Xiao, Pei-Wen [1 ]
Zhao, Li [1 ]
Liu, Yuwen [2 ]
Han, Bao-Hang [1 ]
机构
[1] Natl Ctr Nanosci & Technol, Beijing 100190, Peoples R China
[2] Yanshan Univ, Coll Environm & Chem Engn, Qinhuangdao 066004, Peoples R China
基金
美国国家科学基金会;
关键词
HIGH-PERFORMANCE SUPERCAPACITORS; HIGH-SURFACE-AREA; ACTIVATED CARBON; HYDROTHERMAL CARBONS; FUNCTIONAL-GROUPS; HYDROGEN-SULFIDE; AMINO-ACIDS; CAPTURE; ADSORBENTS; BIOMASS;
D O I
10.1039/c5ra15690d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Human hair, a biowaste composed of protein, is converted into nitrogen and sulfur co-doped porous carbonaceous materials via a facile degradation and carbonization/activation process. The resulting carbon materials possess a large specific surface area value (2700 m(2) g(-1)) as well as high nitrogen and sulfur content (around 8.0 and 4.0 wt%, respectively). The morphology, composition and porous structure of the obtained materials were thoroughly characterized using scanning and transmission electron microscopy, elemental analysis, nitrogen and carbon dioxide sorption analysis, X-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy, etc. It is confirmed that both the degradation and the carbonization/activation procedures play important roles in the porous structure formation. Furthermore, these materials are proven to exhibit good performances in gas adsorption: carbon dioxide uptake (up to 24.0 wt%, at 273 K and 1.0 bar), methane adsorption (up to 3.04 wt%, at 273 K and 1.0 bar), and hydrogen adsorption (up to 2.03 wt%, at 77 K and 1.0 bar). The high gas adsorption capacities could be attributed to the microporous structure combined with the surface functionalities. In addition, we believe that this synthesis process offers a facile and effective way for transforming protein-containing biowastes into functionalized porous carbonaceous materials.
引用
收藏
页码:73980 / 73988
页数:9
相关论文
共 77 条
[1]   Adsorption/oxidation of hydrogen sulfide on nitrogen-containing activated carbons [J].
Adib, F ;
Bagreev, A ;
Bandosz, TJ .
LANGMUIR, 2000, 16 (04) :1980-1986
[2]   Bituminous coal-based activated carbons modified with nitrogen as adsorbents of hydrogen sulfide [J].
Bagreev, A ;
Menendez, JA ;
Dukhno, I ;
Tarasenko, Y ;
Bandosz, TJ .
CARBON, 2004, 42 (03) :469-476
[3]   Hydrolysis controlled synthesis of amine-functionalized hollow ethane-silica nanospheres as adsorbents for CO2 capture [J].
Bai, Shiyang ;
Liu, Jian ;
Gao, Jinsuo ;
Yang, Qihua ;
Li, Can .
MICROPOROUS AND MESOPOROUS MATERIALS, 2012, 151 :474-480
[4]   High-throughput synthesis of zeolitic imidazolate frameworks and application to CO2 capture [J].
Banerjee, Rahul ;
Phan, Anh ;
Wang, Bo ;
Knobler, Carolyn ;
Furukawa, Hiroyasu ;
O'Keeffe, Michael ;
Yaghi, Omar M. .
SCIENCE, 2008, 319 (5865) :939-943
[5]   Transforming Hair into Heteroatom-Doped Carbon with High Surface Area [J].
Chaudhari, Kiran N. ;
Song, Min Young ;
Yu, Jong-Sung .
SMALL, 2014, 10 (13) :2625-2636
[6]   Microporous Polycarbazole with High Specific Surface Area for Gas Storage and Separation [J].
Chen, Qi ;
Luo, Min ;
Hammershoj, Peter ;
Zhou, Ding ;
Han, Ying ;
Laursen, Bo Wegge ;
Yan, Chao-Guo ;
Han, Bao-Hang .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2012, 134 (14) :6084-6087
[7]   Investigating the role of electrolyte acidity on hydrogen uptake in mesoporous activated carbons [J].
Chun, Sang-Eun ;
Whitacre, J. F. .
JOURNAL OF POWER SOURCES, 2013, 242 :137-140
[8]   Comparison of Trees and Grasses for Rhizoremediation of Petroleum Hydrocarbons [J].
Cook, Rachel L. ;
Hesterberg, Dean .
INTERNATIONAL JOURNAL OF PHYTOREMEDIATION, 2013, 15 (09) :844-860
[9]   An Amine-Functionalized MIL-53 Metal-Organic Framework with Large Separation Power for CO2 and CH4 [J].
Couck, Sarah ;
Denayer, Joeri F. M. ;
Baron, Gino V. ;
Remy, Tom ;
Gascon, Jorge ;
Kapteijn, Freek .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (18) :6326-+
[10]   Graphene oxide-based benzimidazole-crosslinked networks for high-performance supercapacitors [J].
Cui, Yi ;
Cheng, Qian-Yi ;
Wu, Haiping ;
Wei, Zhixiang ;
Han, Bao-Hang .
NANOSCALE, 2013, 5 (18) :8367-8374