화학공학소재연구정보센터
검색결과 : 30건
No. Article
1 High-temperature CO2 adsorption over Li4SiO4 sorbents derived from different lithium sources
Fang Y, Zou RJ, Chen XX
Canadian Journal of Chemical Engineering, 98(7), 1495, 2020
2 CO2 capture by Li4SiO4 sorbents and their applications: Current developments and new trends
Hu YC, Liu WQ, Yang YD, Qu MY, Li HL
Chemical Engineering Journal, 359, 604, 2019
3 Synthesis of hierarchical Li4SiO4 nanoparticles/flakers composite from vermiculite/MCM-41 hybrid with improved CO2 capture performance under different CO2 concentrations
Zhang Y, Gao YS, Yu F, Wang Q
Chemical Engineering Journal, 371, 424, 2019
4 Novel low cost Li4SiO4-based sorbent with naturally occurring wollastonite as Si-source for cyclic CO2 capture
Yang YD, Liu WQ, Hu YC, Sun J, Tong XL, Li QW, Zhou ZJ
Chemical Engineering Journal, 374, 328, 2019
5 Porous extruded-spheronized Li4SiO4 pellets for cyclic CO2 capture
Hu YC, Qu MY, Li HL, Yang YD, Yang JP, Qu WQ, Liu WQ
Fuel, 236, 1043, 2019
6 Regenerable sodium-based lithium silicate sorbents with a new mechanism for CO2 capture at high temperature
Kwon YM, Lee SC, Chae HJ, Cho MS, Park YK, Seo HM, Kim JC
Renewable Energy, 144, 180, 2019
7 Effect of a Li2SiO3 phase in lithium silicate-based sorbents for CO2 capture at high temperatures
Kwon YM, Chae HJ, Cho MS, Park YK, Seo HM, Lee SC, Kim JC
Separation and Purification Technology, 214, 104, 2019
8 Novel regenerable solid sorbents based on lithium orthosilicate for carbon dioxide capture at high temperatures
Lee SC, Kim MJ, Kwon YM, Chae HJ, Cho MS, Park YK, Seo HM, Kim JC
Separation and Purification Technology, 214, 120, 2019
9 Scalable synthesis of the lithium silicate-based high-temperature CO2 sorbent from inexpensive raw material vermiculite
Zhang Y, Yu F, Louis B, Wang Q
Chemical Engineering Journal, 349, 562, 2018
10 One-step synthesis of porous Li4SiO4-based adsorbent pellets via graphite moulding method for cyclic CO2 capture
Yang YD, Liu WQ, Hu YC, Sun J, Tong XL, Chen QJ, Li QW
Chemical Engineering Journal, 353, 92, 2018