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Showing results 1 to 10 of 875 (Search time: 0.0 seconds).

Continuous Synthesis of Methanol from Methane and Steam over Copper-Mordenite
  • Jeong, Yu Ri;
  • Jung, Hyeonjung;
  • Kang, Jongkyu;
  • Han, Jeong Woo;
  • Park, Eun Duck
  • 2021-02-05
  • ACS Catalysis, Vol.11, pp.1065-1070
  • American Chemical Society
Continuous methanol synthesis directly from methane and steam over Cu(II)-exchanged mordenite
  • 2018-11-01
  • Korean Journal of Chemical Engineering, Vol.35, pp.2145-2149
  • Springer New York LLC
Modeling of a methanol synthesis process to utilize CO2 in the exhaust gas from an engine plant
  • 2022-08-01
  • Korean Journal of Chemical Engineering, Vol.39, pp.1989-1998
  • Springer
Multi-objective optimization of a methanol synthesis process: CO2 emission vs. economics
  • 2022-07-01
  • Korean Journal of Chemical Engineering, Vol.39, pp.1709-1716
  • Springer
CFD modeling of a compact reactor for methanol synthesis: Maximizing productivity with increased thermal controllability
  • 2019-12-01
  • International Journal of Heat and Mass Transfer, Vol.145
  • Elsevier Ltd
Carbon negative methanol production for CO2 utilization: Process design and 4E analysis
  • Tang, Zongyue;
  • Zhang, Leiyu;
  • Wang, Lei;
  • Gao, Ruxing;
  • Jun, Ki Won;
  • Kim, Seok Ki;
  • Zhang, Chundong;
  • Yang, Yingju;
  • Wan, Hui;
  • Guan, Guofeng
  • 2024-12-30
  • Energy, Vol.313
  • Elsevier Ltd
Kinetic modeling for direct synthesis of dimethyl ether from syngas over a hybrid Cu/ZnO/Al2O3/ferrierite catalyst
  • Park, Jongmin;
  • Woo, Yesol;
  • Jung, Hyun Seung;
  • Yang, Haelin;
  • Lee, Won Bo;
  • Bae, Jong Wook;
  • Park, Myung June
  • 2022-04-01
  • Catalysis Today, Vol.388-389, pp.323-328
  • Elsevier B.V.
Direct utilization of CO2 via methanol synthesis for natural gas fields with high CO2 concentration
  • 2021-12-01
  • Journal of Natural Gas Science and Engineering, Vol.96
  • Elsevier B.V.
Maximum production of methanol in a pilot-scale process
  • 2018-02-01
  • Korean Journal of Chemical Engineering, Vol.35, pp.355-363
  • Springer New York LLC
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