1 |
Direct conversion of methane to oxygenates catalyzed by iron(III) chloride in water at near ambient temperature Zhang L, Sun ZX, Lang JY, Hu YH International Journal of Energy Research, 45(2), 2581, 2021 |
2 |
Two-dimensional modeling investigation of the modern methanol plate reactors Eksiri Z, Mozdianfard MR, Mirvakili A, Rahimpour MR Chemical Engineering Research & Design, 162, 212, 2020 |
3 |
The special route toward conversion of methane to methanol on a fluffy metal-free carbon nitride photocatalyst in the presence of H2O2 Shi SL, Sun ZX, Bao CY, Gao TS, Hu YH International Journal of Energy Research, 44(4), 2740, 2020 |
4 |
CO2-utilization in the synthesis of methanol: Potential analysis and exergetic assessment Blumberg T, Morosuk T, Tsatsaronis G Energy, 175, 730, 2019 |
5 |
Exergoenvironmental analysis of methanol production by steam reforming and autothermal reforming of natural gas Blumberg T, Lee YD, Morosuk T, Tsatsaronis G Energy, 181, 1273, 2019 |
6 |
Comparative environmental and economic performance of solar energy integrated methanol production systems in China Chen QQ, Gu Y, Tang ZY, Sun YH Energy Conversion and Management, 187, 63, 2019 |
7 |
Design and energy analyses of alternative methanol production processes driven by hybrid renewable power at the offshore Thebaud platform Crivellari A, Cozzani V, Dincer I Energy Conversion and Management, 187, 148, 2019 |
8 |
Techno-economic assessment of polygeneration based on fluidized bed gasification Heinze C, May J, Peters J, Strohle J, Epple B Fuel, 250, 285, 2019 |
9 |
Methanol synthesis from renewable H-2 and captured CO2 from S-Graz cycle - Energy, exergy, exergoeconomic and exergoenvironmental (4E) analysis Nami H, Ranjbar F, Yari M International Journal of Hydrogen Energy, 44(48), 26128, 2019 |
10 |
The performance evaluation of an industrial membrane reformer with catalyst-deactivation for a domestic methanol production plant Jokar SM, Parvasi P, Basile A International Journal of Hydrogen Energy, 44(47), 25730, 2019 |