纳米技术在农药和农业领域的作用和效果

Anita Tanwar, Sushil
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引用次数: 4

摘要

纳米技术被应用于各种应用科学领域,如化学家、物理学家、生物学家、医生和工程师。纳米技术被暂时定义为在100纳米或更小的尺度上运行的材料、系统和过程。在农业部门,纳米技术的研究和开发很可能促进和构建转基因作物、动物生产投入、化学农药和精准农业技术的下一个发展阶段。农药被大规模使用,大多数农药具有抗生物降解性,即使是微量的农药也被发现具有致癌性。传统的除害方法由于其固有的时间消耗或昂贵的缺点。纳米颗粒减轻了这两个缺点,因此,它们可以有效地用于农药的矿化。确定浓度的纳米颗粒可成功地用于控制各种植物病害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role and effects of nanotechnology used in pesticides and agriculture field
Nanotechnology is used in various fields of applied sciences such as chemists, physicists, biologists, medical doctors and engineers. Nanotechnology has been provisionally defined as relating to materials, systems and processes which operate at a scale of 100 nm or less. In the agricultural sector, nanotech research and development is likely to facilitate and frame the next stage of development of genetically modified crops, animal production inputs, chemical pesticides and precision farming techniques. Pesticides are used on large scale and most of the pesticides are resistant to biodegradation and are found to be carcinogenic in nature even at trace levels. Conventional methods of pesticide removal are disadvantageous due to their inherent time consumption or expensiveness. Nanoparticles alleviate both of these drawbacks and hence, they can be effectively utilized for the mineralization of pesticides. Nanoparticles of defined concentrations could be successfully used for the control of various plant dis...
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