Novel effective stress-resistance amino acid water soluble fertilizer
A technology for water-soluble fertilizers and amino acids, applied in fertilizer forms, fertilizer mixtures, fertilization devices, etc., can solve the problems of pollution, unsuitable crops for long growth periods, increase costs, etc. Effect
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Embodiment 1
[0011] The new high-efficiency stress-resistant amino acid water-soluble fertilizer of this embodiment is composed of a water-soluble fertilizer granular inner core and a slow-release layer wrapped outside the water-soluble fertilizer inner core; the water-soluble fertilizer granular inner core is a compound amino acid chelate The compound amino acid chelated trace element is amino acid chelated calcium. The ratio of the thickness of the slow-release layer to the diameter of the granular inner core is 1: (10-20), and the thickness of the slow-release layer is 20-30 microns.
Embodiment 2
[0013] The new high-efficiency stress-resistant amino acid water-soluble fertilizer of this embodiment is composed of a water-soluble fertilizer granular inner core and a slow-release layer wrapped outside the water-soluble fertilizer inner core; the water-soluble fertilizer granular inner core is a compound amino acid chelate The compound amino acid chelated trace elements are amino acid chelated ferrous, amino acid chelated zinc and amino acid chelated calcium. The ratio of the thickness of the slow-release layer to the diameter of the granular inner core is 1: (10-20), and the thickness of the slow-release layer is 20-30 microns.
Embodiment 3
[0015] The new high-efficiency stress-resistant amino acid water-soluble fertilizer of this embodiment is composed of a water-soluble fertilizer granular inner core and a slow-release layer wrapped outside the water-soluble fertilizer inner core; the water-soluble fertilizer granular inner core is a compound amino acid chelate The compound amino acid chelated trace element is selected from amino acid chelated manganese, amino acid chelated copper and amino acid chelated cobalt. The ratio of the thickness of the slow-release layer to the diameter of the granular inner core is 1: (10-20), and the thickness of the slow-release layer is 20-30 microns.
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