CO2 absorption by lithium silicate at room temperature

被引:114
|
作者
Essaki, K
Nakagawa, K
Kato, M
Uemoto, H
机构
[1] Toshiba Co Ltd, Environm Technol Lab, Ctr Corp Res & Dev, Kawasaki, Kanagawa 2128582, Japan
[2] Toshiba Ceram Co Ltd, Ctr Res & Dev, Kanagawa 2578566, Japan
关键词
lithium silicate; CO2; absorption; room temperature; humidity; water content;
D O I
10.1252/jcej.37.772
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Lithium silicate has been studied mainly as a CO2 absorbent at high temperatures of around 773 K. It has recently been observed that lithium silicate also absorbs atmospheric CO2 at room temperature. In this study, lithium silicate absorbent was packed in an absorption column and the effectiveness of this column was confirmed. Based on this result, the effectiveness of lithium silicate in absorbing atmospheric CO2 at room temperature was evaluated. It was found that humidity promoted absorption. This mechanism was examined and ascribed to the relationship between the water content in lithium silicate and CO2 absorption. In addition, the effectiveness of lithium silicate absorbent was compared with that of a commercially available absorbent (soda lime) under conditions of controlled humidity, and the superiority of lithium silicate was confirmed.
引用
收藏
页码:772 / 777
页数:6
相关论文
共 50 条
  • [21] Absorption measurements for highly sensitive diode laser of CO2 near 1.3μm at room temperature
    Shao, J
    Zhang, WJ
    Gao, XM
    Ning, LX
    Yuan, YQ
    CHINESE PHYSICS, 2005, 14 (03): : 482 - 486
  • [22] Highly sensitive diode laser absorption measurements of CO2 near 1.57 μm at room temperature
    Shao, J
    Gao, XM
    Zhang, WJ
    Yuan, YQ
    Ning, LX
    Yang, Y
    Pei, SX
    Huang, W
    OPTICA APPLICATA, 2005, 35 (01) : 49 - 57
  • [23] The factors that affect the absorption of CO2 on the Lithium zirconate materials
    Wang, Yinjie
    Liu, Jiping
    Kan, Meixiu
    Lu, Xiaobing
    MATERIALS AND COMPUTATIONAL MECHANICS, PTS 1-3, 2012, 117-119 : 769 - 772
  • [24] CO2 capture system using lithium silicate for distributed power supply
    Mizunuma, Mamoru
    Tsuda, Masayuki
    Maruo, YasukoY.
    Nakagaki, Takao
    GHGT-11, 2013, 37 : 1194 - 1201
  • [25] Hot CO2 Recovery Using Lithium Silicate Suspended in Molten Salt
    Ozaki, Yuta
    Kanai, Yugo
    Terasaka, Koichi
    Kobayashi, Daisuke
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2010, 43 (07) : 546 - 552
  • [26] Synthesis of a polyacrylamide hydrogel using CO2 at room temperature
    Ferrag, Celia
    Abdinejad, Maryam
    Kerman, Kagan
    CANADIAN JOURNAL OF CHEMISTRY, 2020, 98 (02) : 66 - 73
  • [27] Electrochemical CO2 reduction at room temperature: Status and perspectives
    Senocrate, Alessandro
    Battaglia, Corsin
    JOURNAL OF ENERGY STORAGE, 2021, 36
  • [28] Room temperature conversion of CO2 to methanol with nickel catalysis
    Lu, Zhiyao
    Williams, Travis
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 253
  • [29] Lithium silicate nanosheets with excellent capture capacity and kinetics with unprecedented stability for high-temperature CO2 capture
    Belgamwar, Rajesh
    Maity, Ayan
    Das, Tisita
    Chakraborty, Sudip
    Vinod, Chathakudath P.
    Polshettiwar, Vivek
    CHEMICAL SCIENCE, 2021, 12 (13) : 4825 - 4835
  • [30] Germanium-incorporated lithium silicate composites as highly efficient low-temperature sorbents for CO2 capture
    Subha, P. V.
    Nair, Balagopal N.
    Visakh, V.
    Sreerenjini, C. R.
    Mohamed, A. Peer
    Warrier, K. G. K.
    Yamaguchi, T.
    Hareesh, U. S.
    JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (17) : 7913 - 7921