Federal University of São Carlos, Department of Chemistry, Washington Luiz Road km 235, Zip Code: 13565-905 São Carlos, SP, Brazil.
Embrapa Instrumentation, 1452, XV de Novembro Street, CP: 741, Zip Code: 13560-970 São Carlos, SP, Brazil.
Sci Rep. 2017 Apr 13;7:46032. doi: 10.1038/srep46032.
Developing efficient crop fertilization practices has become more and more important due to the ever-increasing global demand for food production. One approach to improving the efficiency of phosphate and urea fertilization is to improve their interaction through nanocomposites that are able to control the release of urea and P in the soil. Nanocomposites were produced from urea (Ur) or extruded thermoplastic starch/urea (TPSUr) blends as a matrix in which hydroxyapatite particles (Hap) were dispersed at ratios 50% and 20% Hap. Release tests and two incubation experiments were conducted in order to evaluate the role played by nanocomposites in controlling the availability of nitrogen and phosphate in the soil. Tests revealed an interaction between the fertilizer components and the morphological changes in the nanocomposites. TPSUr nanocomposites provided a controlled release of urea and increased the release of phosphorus from Hap in citric acid solution. The TPSUr nanocomposites also had lower NH volatilization compared to a control. The interaction resulting from dispersion of Hap within a urea matrix reduced the phosphorus adsorption and provided higher sustained P availability after 4 weeks of incubation in the soil.
由于全球对粮食生产的需求不断增加,开发高效的作物施肥方法变得越来越重要。提高磷和尿素施肥效率的一种方法是通过纳米复合材料来改善它们的相互作用,纳米复合材料能够控制尿素和 P 在土壤中的释放。纳米复合材料由尿素(Ur)或挤出热塑性淀粉/尿素(TPSUr)混合物作为基质制成,其中羟基磷灰石颗粒(Hap)以 50%和 20% Hap 的比例分散。进行了释放试验和两个培养实验,以评估纳米复合材料在控制土壤中氮和磷有效性方面的作用。测试结果表明,肥料成分之间存在相互作用,纳米复合材料的形态发生了变化。TPSUr 纳米复合材料提供了尿素的控制释放,并增加了柠檬酸溶液中 Hap 中磷的释放。与对照相比,TPSUr 纳米复合材料的 NH 挥发也较低。Hap 在尿素基质中的分散产生的相互作用减少了磷的吸附,并在土壤中培养 4 周后提供了更高的持续 P 有效性。