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  2. Methanation - Wikipedia

    en.wikipedia.org/wiki/Methanation

    Methanation is an important step in the creation of synthetic or substitute natural gas (SNG). [7] Coal or wood undergo gasification which creates a producer gas that must undergo methanation in order to produce a usable gas that just needs to undergo a final purification step.

  3. Methanol reformer - Wikipedia

    en.wikipedia.org/wiki/Methanol_reformer

    A mixture of water and methanol with a molar concentration ratio (water:methanol) of 1.0 - 1.5 is pressurized to approximately 20 bar, vaporized and heated to a temperature of 250 - 360 °C. The hydrogen that is created is separated through the use of Pressure swing adsorption or a hydrogen-permeable membrane made of polymer or a palladium alloy.

  4. Carbon dioxide reforming - Wikipedia

    en.wikipedia.org/wiki/Carbon_dioxide_reforming

    As a result, this water can lead to unwanted back-reaction to CO 2 via the water-gas shift reaction. To prevent CO 2 from being formed, and consequently losses in CO yield, CO 2 can be adsorbed onto calcium oxide. Consequently, the process forms only CO and H 2 O, increasing the utilization efficiency of the feedstocks. This process is better ...

  5. Catalytic cycle - Wikipedia

    en.wikipedia.org/wiki/Catalytic_cycle

    In such loops, the initial step entails binding of one or more reactants by the catalyst, and the final step is the release of the product and regeneration of the catalyst. Articles on the Monsanto process, the Wacker process, and the Heck reaction show catalytic cycles. Catalytic cycle for conversion of A and B into C

  6. Steam reforming - Wikipedia

    en.wikipedia.org/wiki/Steam_reforming

    Autothermal reforming (ATR) uses oxygen and carbon dioxide or steam in a reaction with methane to form syngas. The reaction takes place in a single chamber where the methane is partially oxidized. The reaction is exothermic. When the ATR uses carbon dioxide, the H 2:CO ratio produced is 1:1; when the ATR uses steam, the H 2:CO ratio produced is ...

  7. Methanogenesis - Wikipedia

    en.wikipedia.org/wiki/Methanogenesis

    Fermentation only allows the breakdown of larger organic compounds, and produces small organic compounds. Methanogenesis effectively removes the semi-final products of decay: hydrogen, small organics, and carbon dioxide. Without methanogenesis, a great deal of carbon (in the form of fermentation products) would accumulate in anaerobic environments.

  8. Sabatier reaction - Wikipedia

    en.wikipedia.org/wiki/Sabatier_reaction

    Paul Sabatier (1854-1941) winner of the Nobel Prize in Chemistry in 1912 and discoverer of the reaction in 1897. The Sabatier reaction or Sabatier process produces methane and water from a reaction of hydrogen with carbon dioxide at elevated temperatures (optimally 300–400 °C) and pressures (perhaps 3 MPa [1]) in the presence of a nickel catalyst.

  9. Methanol fuel - Wikipedia

    en.wikipedia.org/wiki/Methanol_fuel

    After removing hydrogen sulfide and carbon dioxide , which form as side products during the gasification step, methanol can be made using conventional methods. [15] This route can offer renewable methanol production from biomass at efficiencies up to 75%. [17] Production methods using carbon dioxide as a feedstock have also been proposed.