MgO promoted by Fe2O3 and nitrate molten salt for fast and enhanced CO2 capture: Experimental and DFT investigation

被引:14
作者
Gong, Fengchun [1 ]
Huang, Zhen [1 ]
Wei, Xiaolan [2 ]
Liu, Shule [1 ]
Lu, Jianfeng [1 ]
Ding, Jing [1 ]
Wang, Weilong [1 ]
机构
[1] Sun Yat Sen Univ, Sch Mat Sci & Engn, Guangzhou 510006, Peoples R China
[2] South China Univ Technol, Sch Chem & Chem Engn, Guangzhou 510641, Peoples R China
基金
中国国家自然科学基金;
关键词
Carbon neutrality; CO2; capture; MgO; Rapid kinetics; Adsorpti on mechanism; DFT calculations; CARBON-DIOXIDE CAPTURE; ALKALI; ADSORPTION; DESORPTION; SORBENTS; PERFORMANCE; ADSORBENTS; ABSORPTION; MECHANISMS; REDUCTION;
D O I
10.1016/j.seppur.2022.122766
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Rapid and strong CO2 capture is critical in CO2 capture and utilization (CCU) techniques to mitigate global warming. Alkali molten salt (AMS) promoted-MgO sorbents with high capacity attracted attention, but their applications suffer from various limitations of low adsorption kinetics and poor stability. Here, AMS-promoted MgO sorbents corporation with Fe2O3 (Mg100-xFex-AMS(10)) were fabricated via modified methanol evaporation-induced surface precipitation for use in rapid and stable CO2 capture. Based on characterization of the sorbents, Mg98Fe2-AMS(10) showed a loose flake structure, with a large surface area and numerous exposed active sites. Therefore, Mg98Fe2-AMS(10) exhibited a strong CO2 capacity (14.86 mmolCO(2)/gsorbent at 300 degrees C) and good cyclic durability. Three kinetic models were explored, and the Avrami model provided a good prediction of the CO2 adsorption behavior, with Mg98Fe2-AMS10 exhibiting rapid adsorption kinetics. The adsorption mechanism was investigated using density functional theory (DFT) calculations. The charge transfer and bonding strengths of the surface O atoms on MgO increased, and these atoms preferentially bonded with activated CO2 (CO2 center dot-) under Fe catalysis. This study may provide insights into enhancing the CO2 capture and kinetics of MgO via combination with 3d transition metals.
引用
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页数:12
相关论文
共 59 条
[1]   Fabrication of Strong Solid Base FeO-MgO for Warm CO2 Capture [J].
Chen, Jie Ling ;
Dong, Xin Yu Ming ;
Shi, Chun Ling ;
Li, Shuo Hao ;
Wang, Ying ;
Zhu, Jian Hua .
CLEAN-SOIL AIR WATER, 2019, 47 (08)
[2]   NO reduction by CO over copper catalyst supported on mixed CeO2 and Fe2O3: Catalyst design and activity test [J].
Cheng, Xingxing ;
Zhang, Xingyu ;
Su, Dexin ;
Wang, Zhiqiang ;
Chang, Jingcai ;
Ma, Chunyuan .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 239 :485-501
[3]   Lewis Acido-Basic Interactions between CO2 and MgO Surface: DFT and DRIFT Approaches [J].
Cornu, Damien ;
Guesmi, Hazar ;
Krafft, Jean-Marc ;
Lauron-Pernot, Helene .
JOURNAL OF PHYSICAL CHEMISTRY C, 2012, 116 (11) :6645-6654
[4]   CO2 Uptake and Cyclic Stability of MgO-Based CO2 Sorbents Promoted with Alkali Metal Nitrates and Their Eutectic Mixtures [J].
Dal Pozzo, Alessandro ;
Armutlulu, Andac ;
Rekhtina, Margarita ;
Abdala, Paula M. ;
Mueller, Christoph R. .
ACS APPLIED ENERGY MATERIALS, 2019, 2 (02) :1295-1307
[5]   Enhanced CO2 adsorption of MgO with alkali metal nitrates and carbonates [J].
Ding, Jing ;
Yu, Chao ;
Lu, Jianfeng ;
Wei, Xiaolan ;
Wang, Weilong ;
Pan, Gechuanqi .
APPLIED ENERGY, 2020, 263 (263)
[6]   ab initio Thermodynamic Study of the CO2 Capture Properties of M2CO3 (M = Na, K)- and CaCO3-Promoted MgO Sorbents Towards Forming Double Salts [J].
Duan, Yuhua ;
Zhang, Keling ;
Li, Xiaohong S. ;
King, David L. ;
Li, Bingyun ;
Zhao, Lifeng ;
Xiao, Yunhan .
AEROSOL AND AIR QUALITY RESEARCH, 2014, 14 (02) :470-479
[7]   Unravelling the Mechanism of Intermediate-Temperature CO2 Interaction with Molten-NaNO3-Salt-Promoted MgO [J].
Gao, Wanlin ;
Xiao, Jiewen ;
Wang, Qiang ;
Li, Shiyan ;
Vasiliades, Michalis A. ;
Huang, Liang ;
Gao, Yanshan ;
Jiang, Qian ;
Niu, Yiming ;
Zhang, Bingsen ;
Liu, Yuefeng ;
He, Hong ;
Efstathiou, Angelos M. .
ADVANCED MATERIALS, 2022, 34 (04)
[8]   Molten Salt-Promoted MgO Adsorbents for CO2 Capture: Transient Kinetic Studies [J].
Gao, Wanlin ;
Vasiliades, Michalis A. ;
Damaskinos, Constantinos M. ;
Zhao, Meng ;
Fan, Wenqi ;
Wang, Qiang ;
Reina, Tomas Ramirez ;
Efstathiou, Angelos M. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2021, 55 (08) :4513-4521
[9]   Industrial carbon dioxide capture and utilization: state of the art and future challenges [J].
Gao, Wanlin ;
Liang, Shuyu ;
Wang, Rujie ;
Jiang, Qian ;
Zhang, Yu ;
Zheng, Qianwen ;
Xie, Bingqiao ;
Toe, Cui Ying ;
Zhu, Xuancan ;
Wang, Junya ;
Huang, Liang ;
Gao, Yanshan ;
Wang, Zheng ;
Jo, Changbum ;
Wang, Qiang ;
Wang, Lidong ;
Liu, Yuefeng ;
Louis, Benoit ;
Scott, Jason ;
Roger, Anne-Cecile ;
Amal, Rose ;
Heh, Hong ;
Park, Sang-Eon .
CHEMICAL SOCIETY REVIEWS, 2020, 49 (23) :8584-8686
[10]   Molten salts-modified MgO-based adsorbents for intermediate-temperature CO2 capture: A review [J].
Gao, Wanlin ;
Zhou, Tuantuan ;
Gao, Yanshan ;
Louis, Benoit ;
O'Hare, Dermot ;
Wang, Qiang .
JOURNAL OF ENERGY CHEMISTRY, 2017, 26 (05) :830-838