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工程纳米粒子作为肥料提高农业产量的潜力。

Potentials of engineered nanoparticles as fertilizers for increasing agronomic productions.

机构信息

Carbon Management & Sequestration Center, School of Environment & Natural Resources, the Ohio State University, 210 Kottman Hall, 2021 Coffey Road, Columbus, OH, USA 43210.

Carbon Management & Sequestration Center, School of Environment & Natural Resources, the Ohio State University, 210 Kottman Hall, 2021 Coffey Road, Columbus, OH, USA 43210.

出版信息

Sci Total Environ. 2015 May 1;514:131-9. doi: 10.1016/j.scitotenv.2015.01.104. Epub 2015 Feb 5.

Abstract

Development and application of new types of fertilizers using innovative nanotechnology are one of the potentially effective options of significantly enhancing the global agricultural productions needed to meet the future demands of the growing population. Indeed, the review of available literature indicates that some engineered nanomaterials can enhance plant-growth in certain concentration ranges and could be used as nanofertilizers in agriculture to increase agronomic yields of crops and/or minimize environmental pollution. This article summarizes this type of nanomaterials under four categories: macronutrient nanofertilizers, micronutrient nanofertilizers, nutrient-loaded nanofertilizers, and plant-growth-enhancing nanomaterials. Each category is discussed respectively with reference to nanomaterials' chemical composition, particle size, concentrations applied, benefited plant species, plant incubation methods, and plant-growth enhancement aspects and the rates. The importance, research directions, and research requirements of each nanofertilizer category for achieving sustainable agriculture are also specifically examined. Finally, this review suggests that development of N and P macronutrient nanofertilizers is a high research and development priority both for food production and environmental protection.

摘要

利用创新纳米技术开发和应用新型肥料是显著提高全球农业产量的潜在有效选择之一,以满足未来不断增长的人口需求。事实上,对现有文献的综述表明,一些工程纳米材料可以在某些浓度范围内促进植物生长,并且可以作为农业用纳米肥料,提高作物的农业产量和/或最大限度地减少环境污染。本文将这类纳米材料归纳为四大类:大量元素纳米肥料、微量元素纳米肥料、负载养分的纳米肥料和促进植物生长的纳米材料。分别参照纳米材料的化学组成、粒径、应用浓度、受益植物种类、植物培养方法以及促进植物生长的方面和速率,对每一类进行了讨论。还特别研究了每类纳米肥料对实现可持续农业的重要性、研究方向和研究需求。最后,本综述认为,开发 N 和 P 大量元素纳米肥料对于粮食生产和环境保护都是高度优先的研发重点。

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