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  2. Microbial electrolysis carbon capture - Wikipedia

    en.wikipedia.org/wiki/Microbial_electrolysis...

    The microbial electrolytic process uses wastewater as a source of charged ions and outputs hydrogen gas through the use of the microbial electrolysis cell. [1] The wastewater itself provides electrolytes and is used to dissolve minerals. [1] It is in the wastewater where reactions occur that bind CO 2 molecules to make new substances. [1]

  3. Biological carbon fixation - Wikipedia

    en.wikipedia.org/wiki/Biological_carbon_fixation

    This is known as carbon isotope discrimination and results in carbon-12 to carbon-13 ratios in the plant that are higher than in the free air. Measurement of this isotopic ratio is important in the evaluation of water use efficiency in plants, [31] [32] [33] and also in assessing the possible or likely sources of carbon in global carbon cycle ...

  4. Copiotroph - Wikipedia

    en.wikipedia.org/wiki/Copiotroph

    Copiotrophs tend to have a lower carbon use efficiency than oligotrophs. [10] This is the ratio of carbon used for production of biomass per total carbon consumed by the organism. [ 10 ] Carbon use efficiency can be used to understand organisms lifestyles, whether they primarily create biomass or require carbon for maintenance energy.

  5. Microbial electrolysis cell - Wikipedia

    en.wikipedia.org/wiki/Microbial_electrolysis_cell

    A microbial electrolysis cell. A microbial electrolysis cell (MEC) is a technology related to Microbial fuel cells (MFC). Whilst MFCs produce an electric current from the microbial decomposition of organic compounds, MECs partially reverse the process to generate hydrogen or methane from organic material by applying an electric current. [1]

  6. Microbial metabolism - Wikipedia

    en.wikipedia.org/wiki/Microbial_metabolism

    Microbial metabolism is the means by which a microbe obtains the energy and nutrients (e.g. carbon) it needs to live and reproduce. Microbes use many different types of metabolic strategies and species can often be differentiated from each other based on metabolic characteristics.

  7. Fractionation of carbon isotopes in oxygenic photosynthesis

    en.wikipedia.org/wiki/Fractionation_of_carbon...

    The δ 13 C of C3 plants depends on the relationship between stomatal conductance and photosynthetic rate, which is a good proxy of water use efficiency in the leaf. [19] C3 plants with high water-use efficiency tend to be less fractionated in 13 C (i.e., δ 13 C is relatively less negative) compared to C3 plants with low water-use efficiency. [19]

  8. Productivity (ecology) - Wikipedia

    en.wikipedia.org/wiki/Productivity_(ecology)

    Chemosynthetic Microbial Mat The other process of primary production is lithoautotrophy . Lithoautotrophs use reduced chemical compounds such as hydrogen gas , hydrogen sulfide , methane , or ferrous ion to fix carbon and participate in primary production.

  9. Dissolved organic carbon - Wikipedia

    en.wikipedia.org/wiki/Dissolved_organic_carbon

    Occasionally, high concentrations of organic carbon indicate anthropogenic influences, but most DOC originates naturally. [13] The BDOC fraction consists of organic molecules that heterotrophic bacteria can use as a source of energy and carbon. [14] Some subset of DOC constitutes the precursors of disinfection byproducts for drinking water. [15]