화학공학소재연구정보센터
검색결과 : 76건
No. Article
1 Theoretical evaluation of various configurations of silica membrane reactor in methanol steam reforming using CFD method
Ghasemzadeh K, Harasi NJ, Iulianelli A, Basile A
International Journal of Hydrogen Energy, 45(12), 7354, 2020
2 Gliding arc plasma reforming of toluene for onboard hydrogen production
Wang BW, Liu SZ, Peng YP, Wang CY
International Journal of Hydrogen Energy, 45(11), 6138, 2020
3 A review on glycerol reforming processes over Ni-based catalyst for hydrogen and syngas productions
Roslan NA, Abidin SZ, Ideris A, Vo DVN
International Journal of Hydrogen Energy, 45(36), 18466, 2020
4 Investigating the correlation between deactivation and the carbon deposited on the surface of Ni/Al2O3 and Ni/La2O3-Al2O3 catalysts during the biogas reforming reaction
Charisiou ND, Tzounis L, Sebastian V, Hinder SJ, Baker MA, Polychronopoulou K, Goula MA
Applied Surface Science, 474, 42, 2019
5 Insight into the mechanism of ethanol steam reforming on TM/Mo6S8 clusters catalysts: A theoretical investigation
Hao ZJ, Guo L, Han Y
International Journal of Hydrogen Energy, 44(43), 23947, 2019
6 Evaluation of dry reforming reaction catalysts via computational screening
Praserthdam S, Balbuena PB
Catalysis Today, 312, 23, 2018
7 Comparative evaluation of autothermal reforming of biogas into synthesis gas over bimetallic Ni-Re/Al2O3 catalyst in fixed-bed and coated-wall microreactors: A computational study
Bawornruttanaboonya K, Devahastin S, Mujumdar AS, Laosiripojana N
International Journal of Hydrogen Energy, 43(29), 13237, 2018
8 Three-dimensional modeling of pressure effect on operating characteristics and performance of solid oxide fuel cell
Wang Y, Zhan RB, Qin YZ, Zhang GB, Du Q, Jiao K
International Journal of Hydrogen Energy, 43(43), 20059, 2018
9 Methane dry reforming reaction on Ru(001) surfaces
Egawa C
Journal of Catalysis, 358, 35, 2018
10 Efficient methane reforming at proper reaction environment for the highly active and stable fibrous perovskite catalyst
Jeon Y, Kim H, Lee C, Lee S, Song S, Shul YG
Fuel, 207, 493, 2017