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叶面肥料配方中的矿物质颗粒可提高叶面吸收速率。

Mineral Particles in Foliar Fertilizer Formulations Can Improve the Rate of Foliar Uptake.

作者信息

Pimentel Carlos, Pina Carlos M, Müller Nora, Lara Luis Adrián, Melo Rodriguez Gabriela, Orlando Fabrizio, Schoelkopf Joachim, Fernández Victoria

机构信息

Université Grenoble Alpes, Université Savoie Mont Blanc, CNRS, IRD, Université Gustave Eiffel, ISTerre, 38000 Grenoble, France.

Departamento de Mineralogía y Petrología, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid, 28040 Madrid, Spain.

出版信息

Plants (Basel). 2023 Dec 25;13(1):71. doi: 10.3390/plants13010071.

Abstract

The application of foliar sprays of suspensions of relatively insoluble essential element salts is gradually becoming common, chiefly with the introduction of nano-technology approaches in agriculture. However, there is controversy about the effectiveness of such sparingly soluble nutrient sources as foliar fertilizers. In this work, we focussed on analysing the effect of adding Ca-carbonate (calcite, CaCO) micro- and nano-particles as model sparingly soluble mineral compounds to foliar fertilizer formulations in terms of increasing the rate of foliar absorption. For these purposes, we carried out short-term foliar application experiments by treating leaves of species with variable surface features and wettability rates. The leaf absorption efficacy of foliar formulations containing a surfactant and model soluble nutrient sources, namely Ca-chloride (CaCl), magnesium sulphate (MgSO), potassium nitrate (KNO), or zinc sulphate (ZnSO), was evaluated alone or after addition of calcite particles. In general, the combination of the Ca-carbonate particles with an essential element salt had a synergistic effect and improved the absorption of Ca and the nutrient element provided. In light of the positive effects of using calcite particles as foliar formulation adjuvants, dolomite nano- and micro-particles were also tested as foliar formulation additives, and the results were also positive in terms of increasing foliar uptake. The observed nutrient element foliar absorption efficacy can be partially explained by geochemical modelling, which enabled us to predict how these formulations will perform at least in chemical terms. Our results show the major potential of adding mineral particles as foliar formulation additives, but the associated mechanisms of action and possible additional benefits to plants should be characterised in future investigations.

摘要

相对难溶的必需元素盐悬浮液的叶面喷施应用正逐渐变得普遍,这主要是随着农业中纳米技术方法的引入。然而,对于诸如叶面肥料这类难溶性营养源的有效性存在争议。在这项工作中,我们专注于分析添加碳酸钙(方解石,CaCO₃)微米和纳米颗粒作为典型难溶矿物化合物到叶面肥料配方中对提高叶面吸收率的影响。为此,我们通过处理具有不同表面特征和润湿性的植物叶片进行了短期叶面喷施实验。评估了含有表面活性剂和典型可溶性营养源(即氯化钙(CaCl₂)、硫酸镁(MgSO₄)、硝酸钾(KNO₃)或硫酸锌(ZnSO₄))的叶面配方单独使用时以及添加方解石颗粒后的叶片吸收效果。一般来说,碳酸钙颗粒与必需元素盐的组合具有协同效应,并提高了钙和所提供营养元素的吸收。鉴于使用方解石颗粒作为叶面配方助剂的积极效果,还测试了白云石纳米和微米颗粒作为叶面配方添加剂,在增加叶面吸收方面结果也是积极的。观察到的营养元素叶面吸收效果可以通过地球化学建模部分解释,这使我们能够预测这些配方至少在化学方面的表现。我们的结果显示了添加矿物颗粒作为叶面配方添加剂的巨大潜力,但相关的作用机制以及对植物可能的额外益处应在未来的研究中加以表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43d2/10780703/76ca06571713/plants-13-00071-g001.jpg

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