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  2. Thermochemical cycle - Wikipedia

    en.wikipedia.org/wiki/Thermochemical_cycle

    The reduction occurs when CeO 2, or ceria, is exposed to a inert atmosphere at around 1500 °C to 1600 °C, [15] and hydrogen release occurs at 800 °C during hydrolysis when it is subjected to an atmosphere containing water vapor. One advantage of ceria over iron oxide lies in its higher melting point, which allows it to sustain higher ...

  3. Methanogenesis - Wikipedia

    en.wikipedia.org/wiki/Methanogenesis

    During advanced stages of organic decay, all electron acceptors become depleted except carbon dioxide. Carbon dioxide is a product of most catabolic processes, so it is not depleted like other potential electron acceptors. Only methanogenesis and fermentation can occur in the absence of electron acceptors other than carbon.

  4. Methanation - Wikipedia

    en.wikipedia.org/wiki/Methanation

    Methanation reaction over different carried metal catalysts including Ni, [4] Ru [5] and Rh [6] has been widely investigated for the production of CH 4 from syngas and other power to gas initiatives. [3] Nickel is the most widely used catalyst due to its high selectivity and low cost. [1]

  5. Methanol - Wikipedia

    en.wikipedia.org/wiki/Methanol

    Methanol is highly flammable. Its vapours are slightly heavier than air and can travel to a distant ignition source and ignite. Methanol fires should be extinguished with dry chemical, carbon dioxide, water spray or alcohol-resistant foam. [12] Methanol flames are invisible in daylight.

  6. Gas to liquids - Wikipedia

    en.wikipedia.org/wiki/Gas_to_liquids

    Methanol is made from methane (natural gas) in a series of three reactions: Steam reforming CH 4 + H 2 O → CO + 3 H 2 Δ r H = +206 kJ mol −1 Water shift reaction CO + H 2 O → CO 2 + H 2 Δ r H = -41 kJ mol −1 Synthesis 2 H 2 + CO → CH 3 OH Δ r H = -92 kJ mol −1. The methanol thus formed may be converted to gasoline by the Mobil ...

  7. 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.

  8. Marine biogeochemical cycles - Wikipedia

    en.wikipedia.org/wiki/Marine_biogeochemical_cycles

    The Oceanic carbon cycle is a central process to the global carbon cycle and contains both inorganic carbon (carbon not associated with a living thing, such as carbon dioxide) and organic carbon (carbon that is, or has been, incorporated into a living thing). Part of the marine carbon cycle transforms carbon between non-living and living matter.

  9. Biodiesel production - Wikipedia

    en.wikipedia.org/wiki/Biodiesel_production

    In the supercritical state, the oil and methanol are in a single phase, and reaction occurs spontaneously and rapidly. [8] The process can tolerate water in the feedstock, free fatty acids are converted to methyl esters instead of soap, so a wide variety of feedstocks can be used. Also the catalyst removal step is eliminated. [9]