화학공학소재연구정보센터
검색결과 : 23건
No. Article
1 Synthetic CaO-based sorbent for high-temperature CO2 capture in sorption-enhanced hydrogen production
Pecharaumporn P, Wongsakulphasatch S, Glinrun T, Maneedaeng A, Hassan Z, Assabumrungrat S
International Journal of Hydrogen Energy, 44(37), 20663, 2019
2 Surfactant assisted CaO-based sorbent synthesis and their application to high-temperature CO2 capture
Jamrunroj P, Wongsakulphasatch S, Maneedaeng A, Cheng CK, Assabumrungrat S
Powder Technology, 344, 208, 2019
3 Recycling waste-derived marble powder for CO2 capture
Nawar A, Ghaedi H, Ali M, Zhao M, Iqbal N, Khan R
Process Safety and Environmental Protection, 132, 214, 2019
4 From waste to high value utilization of spent bleaching clay in synthesizing I high-performance calcium-based sorbent for CO2 capture
Su CL, Duan LB, Donat F, Anthony EJ
Applied Energy, 210, 117, 2018
5 A critical assessment of the testing conditions of CaO-based CO2 sorbents
Donat F, Muller CR
Chemical Engineering Journal, 336, 544, 2018
6 Na2CO3-doped CaO-based high-temperature CO2 sorbent and its sorption kinetics
Lee CH, Choi SW, Yoon HJ, Kwon HJ, Lee HC, Jeon SG, Lee KB
Chemical Engineering Journal, 352, 103, 2018
7 Hydrogen production by sorption-enhanced chemical looping steam reforming of ethanol in an alternating fixed-bed reactor: Sorbent to catalyst ratio dependencies
Dou BL, Zhang H, Cui GM, Wang ZL, Jiang B, Wang KQ, Chen HS, Xu YJ
Energy Conversion and Management, 155, 243, 2018
8 Catalytic and sorbent materials based on mayenite for sorption enhanced steam methane reforming with different packed-bed configurations
Di Giuliano A, Giancaterino F, Gallucci K, Foscolo PU, Courson C
International Journal of Hydrogen Energy, 43(46), 21279, 2018
9 Sorption enhanced steam methane reforming on catalyst-sorbent bifunctional particles: A CFD fluidized bed reactor model
Di Carlo A, Aloisi I, Jand N, Stendardo S, Foscolo PU
Chemical Engineering Science, 173, 428, 2017
10 Modification of CaO-based sorbents prepared from calcium acetate for CO2 capture at high temperature
Liu XT, Shi JF, He L, Ma XX, Xu SS
Chinese Journal of Chemical Engineering, 25(5), 572, 2017