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Methane Conversion Routes: Status and Prospects [Kõva köide]

Edited by (Ghent University, Belgium), Edited by (Ghent University, Belgium)
  • Formaat: Hardback, 360 pages, kõrgus x laius x paksus: 234x156x22 mm, kaal: 706 g, No
  • Sari: Green Chemistry Series Volume 76
  • Ilmumisaeg: 29-Sep-2023
  • Kirjastus: Royal Society of Chemistry
  • ISBN-10: 1788014308
  • ISBN-13: 9781788014304
Teised raamatud teemal:
  • Kõva köide
  • Hind: 173,36 €*
  • * hind on lõplik, st. muud allahindlused enam ei rakendu
  • Tavahind: 231,15 €
  • Säästad 25%
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  • Formaat: Hardback, 360 pages, kõrgus x laius x paksus: 234x156x22 mm, kaal: 706 g, No
  • Sari: Green Chemistry Series Volume 76
  • Ilmumisaeg: 29-Sep-2023
  • Kirjastus: Royal Society of Chemistry
  • ISBN-10: 1788014308
  • ISBN-13: 9781788014304
Teised raamatud teemal:
Highlighting recent advances, this book discusses the progress and current state of the art for a wide variety of alternative methane activation and subsequent conversion processes.

Currently the majority of carbon-based feedstocks come from fossil fuels of which there are a finite supply. Methane is an abundantly available carbon-based feedstock, with large amounts now available through fracking and renewable sources available from biogas plants. However, methane is not very chemically reactive. One of the remaining “grand challenges” in chemistry is the development of clean, efficient, affordable processes that allow methane to be converted to other high value molecules.

Highlighting the recent advances in methane activation and direct conversion processes this book discusses the progress and current state of the art for a wide variety of alternative methane activation and subsequent conversion processes, including homogeneous- and heterogeneous catalytic, electrocatalytic and pyrolytic systems. It is a useful resource for anyone working in green chemistry, catalysis and chemical engineering.

Methane Valorization Processes: Challenges and Achievements;Turquois Hydrogen: Methane Pyrolysis as a Low-CO2 Source of H2;Syngas-free Methane-to-Methanol via Catalysis and Oxygen Looping;Conversion of Methane to Acetylene;Homogeneously Catalysed Functionalization of Methane;Methane Pyrolysis for CO2-free Hydrogen Production;Biological Methane Conversion;The Potential of Chemical Looping Solutions for Direct Methane Conversion;Process Intensification Opportunities for Direct Methane Valorisation;Separations in Processes for Methane Conversion;Methane Direct Conversion: An Industrial View;Concepts of Methane Activation