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Foliar Application of Humic-Stabilized Nanoferrihydrite Resulted in an Increase in the Content of Iron in Wheat Leaves

机译:植物稳定的纳米铁矿石的叶面施用导致小麦叶中铁含量增加

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摘要

The objective of this study was to synthesize iron (hydr)oxide nanoparticles (IONPs) stabilized by humic substances, and to estimate the feasibility of their use for foliar application on iron deficient plants. The IONPs were synthesized by rapid hydrolysis of iron(III) nitrate in a solution of potassium humate. The iron speciation and nanoparticle morphologies were characterized using X-ray diffraction, transmission electron microscopy, and Mössbauer spectroscopy. The obtained sample of IONPs was applied at concentrations of 1- and 10-mM Fe, and 0.2% urea was used as an adjuvant. Wheat plants (Triticum aestivum L. cv. L15) were used for the iron uptake test. For both of the concentrations tested, spraying the nanoparticles resulted in a 70–75% higher iron content in wheat leaves compared to ferric ammonium salt of ethylenediaminetetraacetic acid (Fe-EDTA). The synergistic effect of humic substances acting as a surfactant seemed to promote an increase in the iron uptake of the ferrihydrite nanoparticles compared to the aqueous Fe-EDTA solution used in this study. We concluded that humic-stabilized IONPs are much better suited to foliar application as compared to soil amendment when applied as a source of iron for plants. This is because humic substances act as a capping agent for nanoparticles and the surfactants enhance iron penetration into the leaf.
机译:本研究的目的是合成通过腐殖质稳定的铁(氢)氧化物纳米颗粒(IONP),并估计其用于铁缺乏植物的叶面应用的可行性。通过在腐蚀溶液中快速水解铁(III)硝酸盐来合成IONP。使用X射线衍射,透射电子显微镜和Mössbauer光谱表征铁形态和纳米颗粒形态。将得到的IONP样品以1-和10ml FE的浓度施用,并使用0.2%尿素作为佐剂。小麦植物(Triticum aestivum L.CV.115)用于铁吸收试验。对于两种测试的浓度,与乙二胺四乙酸(Fe-EDTA)的铁铵盐相比,喷雾纳米颗粒在小麦叶中产生70-75%的铁含量。与本研究中使用的含水Fe-EDTA溶液相比,腐殖质作为表面活性剂作用作为表面活性剂的腐殖质的协同效应似乎促进了Ferrihydrite纳米粒子的铸铁。我们得出结论,与植物铁源施用时,腐败稳定的INP更适合于叶面申请。这是因为蜂窝物质充当纳米颗粒的封端剂,并且表面活性剂增强了叶片的铁渗透。

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