Utilization Of Nanotechnology In The Development Of Organic Fertilizers And Pesticides

Maria Estevez
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Abstract

The development of technology and its utilization cannot be denied that it is closely related to increasing the competitiveness of a country's industry. Increased knowledge and mastery of new technology is needed to win the competition in the era of global trade both by the government and industry. One example of technology that is being discussed hot is nanotechnology. The use of nano technology is well known, including in the fields of health, cosmetics and agriculture. Basically, the principle of nanotechnology discovery is to maximize yield or crop production by minimizing the use of fertilizers, pesticides and other needs by monitoring soil conditions such as roots and applying them directly to the target so that nothing is wasted. For pesticides, if this is applied it will be able to minimize the use of pesticides on plants because only target insects are affected. The use of nano technology in fertilizers will allow the release of nutrients contained in the fertilizer can be controlled. So only nutrients that will actually be absorbed by plants are released, so that there is no loss of nutrients there are undesirable targets such as soil, water and microorganisms. In nano fertilizers, nutrients can be in the form of nanomaterial encapsulation, coating by a thin protective layer or released in the form of an emulsion from nanoparticles.
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纳米技术在有机肥料和农药开发中的应用
不可否认,技术的发展和利用与提高一国工业的竞争力密切相关。在全球贸易时代的竞争中,政府和企业都需要增加知识和掌握新技术。正在热议的一个技术例子是纳米技术。纳米技术的使用是众所周知的,包括在保健、化妆品和农业领域。基本上,纳米技术发现的原则是通过监测土壤条件(如根部)并将它们直接施用到目标上,从而最大限度地减少肥料、杀虫剂和其他需求的使用,从而最大限度地提高产量或作物产量,这样就不会浪费任何东西。就农药而言,如果采用这种方法,将能够最大限度地减少对植物的农药使用,因为只有目标昆虫受到影响。在肥料中使用纳米技术将使肥料中所含养分的释放能够得到控制。因此,只有真正被植物吸收的营养物质才会被释放,这样就不会有营养物质的损失,因为土壤、水和微生物是不受欢迎的目标。在纳米肥料中,营养物质可以以纳米材料封装的形式被一层薄薄的保护层包裹,或者以纳米颗粒的乳液形式释放出来。
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