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The reason why calcium zinc phosphate liquid fertilizer can achieve stable compatibility of calcium in liquid systems is that it uses phosphate ions (H ₂ PO ∝⁻) instead of traditional phosphate ions (PO ₄³ ⁻) as the phosphorus source, and regulates the solution environment through special processes to avoid the formation of insoluble precipitates by the combination of calcium ions (Ca ² ⁺) and phosphorus elements.
The key role and mechanism of calcium compatibility in liquids:
Avoiding precipitation reactions and achieving stable coexistence
In traditional water-soluble fertilizers, when calcium fertilizers (such as calcium nitrate) are mixed with phosphate containing fertilizers (such as potassium dihydrogen phosphate), it is easy to generate calcium phosphate precipitation, which can cause blockage of drip irrigation systems and nutrient failure. The calcium zinc phosphate liquid fertilizer uses+3 valent phosphorous acid, which is not easily precipitated with calcium ions within a suitable pH range, allowing phosphorus, calcium, and zinc to coexist stably in clear solution for a long time.
Improve the freedom of mixing and reduce the frequency of fertilization
Due to its good compatibility, this fertilizer can be mixed with most trace element fertilizers, fungicides, insecticides, etc., especially suitable for synergistic application with high potassium water-soluble fertilizers, alginates, etc., achieving "one spray, multiple effects" and significantly improving field operation efficiency.
Enhance the mobility and absorption efficiency of calcium
Calcium has poor mobility in plants and is prone to the phenomenon of "calcium deficiency in new leaves". The calcium in the calcium zinc phosphate liquid fertilizer exists in a more easily absorbable form. Combined with the strong permeability of hypophosphite, it can promote the transport of calcium in the phloem, improve the ability of young tissues (such as new leaves and fruits) to obtain calcium, and effectively prevent problems such as navel rot and fruit cracking.
Collaborative disease prevention, strengthening cellular structure
Calcium is an important component of the cell wall and can enhance its strength; Phosphorous acid can induce systemic resistance. The synergistic effect of the two not only enhances crop resistance to fungal diseases such as downy mildew and blight, but also improves fruit hardness and storage and transportation resistance.
Release fertilizer mixing flocculation and improve overall utilization rate
This product has the characteristic of "resolving antagonistic effects", which can prevent flocculation or precipitation caused by ion reactions when compounding other fertilizers, protect nutrient effectiveness, and is particularly suitable for precision fertilization systems such as drip irrigation and sprinkler irrigation.
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