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J Agric Food Chem ; 66(19): 4787-4799, 2018 May 16.
Article in English | MEDLINE | ID: mdl-29677445

ABSTRACT

This study describes the efficiency of a new coating material for preparing granulated potassium-fertilizers with a potassium release to the soil solution sensitive to rainfall intensity. The composite is prepared by reaction of an alkyd-resin with cement in the absence of water. The complementary use of diverse analytical techniques showed that the presence of the cement fraction induced alkyd resin reticulation and gradual cement-resin hardening. Scanning electron microscopy revealed the formation of micro and nanopores within cement-clusters, whose water permeability is affected by the resin reticulation and amphiphilic character. Potassium release was evaluated in water, soil-columns, and in soil-plant trials in pots and open-field. Agronomic results were consistent with potassium release rates obtained in water solution and soil columns. The composite-coated potassium fertilizer was more efficient than the noncoated one in providing plant available potassium, with this effect being dependent on water presence in soil.


Subject(s)
Crops, Agricultural/growth & development , Drug Compounding/methods , Fertilizers/analysis , Potassium/chemistry , Crops, Agricultural/drug effects , Kinetics , Potassium/pharmacology , Soil/chemistry , Water/analysis
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