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#primaryproductivity — Public Fediverse posts

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  1. Interesting new work showing plankton being the primary producers of organic matter in the marine realm throughout the Phanerozoic.

    Link: researchsquare.com/article/rs-

    #Plankton #CarbonCycle #PrimaryProductivity #Ocean

  2. Interesting new work showing plankton being the primary producers of organic matter in the marine realm throughout the Phanerozoic.

    Link: researchsquare.com/article/rs-

    #Plankton #CarbonCycle #PrimaryProductivity #Ocean

  3. Interesting new work showing plankton being the primary producers of organic matter in the marine realm throughout the Phanerozoic.

    Link: researchsquare.com/article/rs-

    #Plankton #CarbonCycle #PrimaryProductivity #Ocean

  4. Interesting new work showing plankton being the primary producers of organic matter in the marine realm throughout the Phanerozoic.

    Link: researchsquare.com/article/rs-

    #Plankton #CarbonCycle #PrimaryProductivity #Ocean

  5. Interesting new work showing plankton being the primary producers of organic matter in the marine realm throughout the Phanerozoic.

    Link: researchsquare.com/article/rs-

    #Plankton #CarbonCycle #PrimaryProductivity #Ocean

  6. Loss of Arctic sea ice, and greater sunlight penetration and temperature in shallow water, results in more degradation of settling organic matter, converting nitrate to gaseous forms that are volatilized. This nitrate loss leads to nitrogen limitation for phytoplankton, changing the plankton community and potentially affecting the entire food chain.

    Summary: eurekalert.org/news-releases/1

    Original paper: nature.com/articles/s43247-026

    #Science #Ecology #ClimateChange #PrimaryProductivity

  7. Loss of Arctic sea ice, and greater sunlight penetration and temperature in shallow water, results in more degradation of settling organic matter, converting nitrate to gaseous forms that are volatilized. This nitrate loss leads to nitrogen limitation for phytoplankton, changing the plankton community and potentially affecting the entire food chain.

    Summary: eurekalert.org/news-releases/1

    Original paper: nature.com/articles/s43247-026

    #Science #Ecology #ClimateChange #PrimaryProductivity

  8. Loss of Arctic sea ice, and greater sunlight penetration and temperature in shallow water, results in more degradation of settling organic matter, converting nitrate to gaseous forms that are volatilized. This nitrate loss leads to nitrogen limitation for phytoplankton, changing the plankton community and potentially affecting the entire food chain.

    Summary: eurekalert.org/news-releases/1

    Original paper: nature.com/articles/s43247-026

    #Science #Ecology #ClimateChange #PrimaryProductivity

  9. Loss of Arctic sea ice, and greater sunlight penetration and temperature in shallow water, results in more degradation of settling organic matter, converting nitrate to gaseous forms that are volatilized. This nitrate loss leads to nitrogen limitation for phytoplankton, changing the plankton community and potentially affecting the entire food chain.

    Summary: eurekalert.org/news-releases/1

    Original paper: nature.com/articles/s43247-026

    #Science #Ecology #ClimateChange #PrimaryProductivity

  10. Loss of Arctic sea ice, and greater sunlight penetration and temperature in shallow water, results in more degradation of settling organic matter, converting nitrate to gaseous forms that are volatilized. This nitrate loss leads to nitrogen limitation for phytoplankton, changing the plankton community and potentially affecting the entire food chain.

    Summary: eurekalert.org/news-releases/1

    Original paper: nature.com/articles/s43247-026

    #Science #Ecology #ClimateChange #PrimaryProductivity