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  2. Hoagland solution - Wikipedia

    en.wikipedia.org/wiki/Hoagland_solution

    The artificial solution described by Dennis Hoagland in 1933, [1] known as Hoagland solution (0), has been modified several times, mainly to add ferric chelates to keep iron effectively in solution, [6] and to optimize the composition and concentration of other trace elements, some of which are not generally credited with a function in plant nutrition. [7]

  3. Ferrichrome - Wikipedia

    en.wikipedia.org/wiki/Ferrichrome

    The reduction strategy helps in making the iron more aqueous soluble, and allows the iron to become more bioavailable in order for uptake to occur. This is because the Fe 2+ product is not able to mineralize like the Fe 3+, as it does not bind significantly to the chelate ligand that is designed to bind Fe 3+.

  4. Siderophore - Wikipedia

    en.wikipedia.org/wiki/Siderophore

    Virtually all this iron is in the iron(III) state and complexed to organic ligands. [38] These low levels of iron limit the primary production of phytoplankton and have led to the Iron Hypothesis [39] where it was proposed that an influx of iron would promote phytoplankton growth and thereby reduce atmospheric CO 2. This hypothesis has been ...

  5. Use These Grass Fertilizers to Grow a Healthy and Luscious Lawn

    www.aol.com/lifestyle/best-grass-fertilizers...

    The Andersons PGF Complete Lawn Fertilizer 16-4-8. According to the manufacturer, a year of researching and testing lent itself to this fertilizer which combines other top products plus all the ...

  6. Ferric EDTA - Wikipedia

    en.wikipedia.org/wiki/Ferric_edta

    Iron and ligand are absorbed separately by the plant roots whereby the highly stable ferric chelate is first reduced to the less stable ferrous chelate. [6] In horticulture, iron chelate is often referred to as 'sequestered iron' and is used as a plant tonic, often mixed with other nutrients and plant foods (e.g. seaweed).

  7. Iron fertilization - Wikipedia

    en.wikipedia.org/wiki/Iron_fertilization

    Ocean iron fertilization is an example of a geoengineering technique that involves intentional introduction of iron-rich deposits into oceans, and is aimed to enhance biological productivity of organisms in ocean waters in order to increase carbon dioxide (CO 2) uptake from the atmosphere, possibly resulting in mitigating its global warming effects.

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