화학공학소재연구정보센터
검색결과 : 33건
No. Article
1 Performance and operating limits of a sorbent-catalyst system for sorption-enhanced reforming (SER) in a fluidized bed reactor
Martinez I, Grasa G, Meyer J, Di Felice L, Kazi S, Sanz C, Maury D, Voisin C
Chemical Engineering Science, 205, 94, 2019
2 Thermodynamic analysis of the novel chemical looping process for two-grade hydrogen production with CO2 capture
Saithong N, Authayanun S, Patcharavorachot Y, Arpornwichanop A
Energy Conversion and Management, 180, 325, 2019
3 Prediction of sorption-enhanced reforming process on hydrotalcite sorbent in a fluidized bed reactor
Wang S, Xu SD, Liu SY, Hu B
Energy Conversion and Management, 180, 924, 2019
4 Combined sorbent and catalyst material for sorption enhanced reforming of methane under cyclic regeneration in presence of H2O and CO2
Di Felice L, Kazi SS, Sorby MH, Martinez I, Grasa G, Maury D, Meyer J
Fuel Processing Technology, 183, 35, 2019
5 Hydrogen and methane mixture from biomass gasification coupled with catalytic tar reforming, methanation and adsorption enhanced reforming
Zhang JJ, Wang M, Xu SP, Feng YC
Fuel Processing Technology, 192, 147, 2019
6 The coupling performance during reactive sorption enhanced reforming (ReSER) process: Simulation and experimental studies
Ping HL, Wu SF
International Journal of Hydrogen Energy, 44(49), 26943, 2019
7 Complete Ca/Cu cycle for H-2 production via CH4 sorption enhanced reforming in a Lab-Scale fixed bed reactor
Diez-Martin L, Lopez JM, Fernandez JR, Martinez I, Grasa G, Murillo R
Chemical Engineering Journal, 350, 1010, 2018
8 The impact of bed material cycle rate on in-situ CO2 removal for sorption enhanced reforming of different fuel types
Fuchs J, Schmid JC, Benedikt F, Muller S, Hofbauer H, Stocker H, Kieberger N, Burgler T
Energy, 162, 35, 2018
9 Techno-economic analysis of the Ca-Cu process integrated in hydrogen plants with CO2 capture
Riva L, Martinez I, Martini M, Gallucci F, Annaland MV, Romano MC
International Journal of Hydrogen Energy, 43(33), 15720, 2018
10 Increasing the carbon capture efficiency of the Ca/Cu looping process for power production with advanced process schemes
Martini M, Martinez I, Romano MC, Chiesa P, Gallucci F, Annaland MV
Chemical Engineering Journal, 328, 304, 2017