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纳米磷酸钙作为新型常量营养元素纳米肥料

Nanosized Calcium Phosphates as Novel Macronutrient Nano-Fertilizers.

作者信息

Carmona Francisco J, Guagliardi Antonietta, Masciocchi Norberto

机构信息

Departamento de Química Inorgánica, Universidad de Granada, Av. Fuentenueva S/N, 18071 Granada, Spain.

Institute of Crystallography and To.Sca.Lab., Consiglio Nazionale Delle Ricerche, Via Valleggio 11, 22100 Como, Italy.

出版信息

Nanomaterials (Basel). 2022 Aug 6;12(15):2709. doi: 10.3390/nano12152709.

Abstract

The need for qualitatively and quantitatively enhanced food production, necessary for feeding a progressively increasing World population, requires the adoption of new and sustainable agricultural protocols. Among them, limiting the waste of fertilizers in the environment has become a global target. Nanotechnology can offer the possibility of designing and preparing novel materials alternative to conventional fertilizers, which are more readily absorbed by plant roots and, therefore, enhance nutrient use efficiency. In this context, during the last decade, great attention has been paid to calcium phosphate nanoparticles (CaP), particularly nanocrystalline apatite and amorphous calcium phosphate, as potential macronutrient nano-fertilizers with superior nutrient-use efficiency to their conventional counterparts. Their inherent content in macronutrients, like phosphorus, and gradual solubility in water have been exploited for their use as slow P-nano-fertilizers. Likewise, their large (specific) surfaces, due to their nanometric size, have been functionalized with additional macronutrient-containing species, like urea or nitrate, to generate N-nano-fertilizers with more advantageous nitrogen-releasing profiles. In this regard, several studies report encouraging results on the superior nutrient use efficiency showed by CaP nano-fertilizers in several crops than their conventional counterparts. Based on this, the advances of this topic are reviewed here and critically discussed, with special emphasis on the preparation and characterization approaches employed to synthesize/functionalize the engineered nanoparticles, as well as on their fertilization properties in different crops and in different (soil, foliar, fertigation and hydroponic) conditions. In addition, the remaining challenges in progress toward the real application of CaP as nano-fertilizers, involving several fields (i.e., agronomic or material science sectors), are identified and discussed.

摘要

为了满足日益增长的世界人口的需求,在质量和数量上提高粮食产量,需要采用新的可持续农业方案。其中,限制肥料在环境中的浪费已成为全球目标。纳米技术可以提供设计和制备新型材料的可能性,以替代传统肥料,这些新型材料更容易被植物根系吸收,从而提高养分利用效率。在这种背景下,在过去十年中,磷酸钙纳米颗粒(CaP),特别是纳米晶磷灰石和无定形磷酸钙,作为具有比传统肥料更高养分利用效率的潜在大量营养元素纳米肥料,受到了极大关注。它们所含的大量营养元素(如磷)以及在水中的逐渐溶解性已被用于作为缓释磷纳米肥料。同样,由于其纳米尺寸,它们具有大的(比)表面积,已用额外的含大量营养元素的物质(如尿素或硝酸盐)进行功能化,以产生具有更有利氮释放曲线的氮纳米肥料。在这方面,多项研究报告了令人鼓舞的结果,表明CaP纳米肥料在几种作物中比传统肥料具有更高的养分利用效率。基于此,本文对该主题的进展进行了综述并进行了批判性讨论,特别强调了用于合成/功能化工程纳米颗粒的制备和表征方法,以及它们在不同作物和不同(土壤、叶面、滴灌和水培)条件下的施肥特性。此外,还确定并讨论了在将CaP作为纳米肥料实际应用方面仍面临的挑战,这涉及多个领域(即农艺或材料科学领域)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78aa/9370389/71f5ca4b55d4/nanomaterials-12-02709-g001.jpg

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