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Applications of Nanotechnology in Plant Growth and Crop Protection: A Review

机译:纳米技术在植物生长和作物保护中的应用

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摘要

In the era of climate change, global agricultural systems are facing numerous, unprecedented challenges. In order to achieve food security, advanced nano-engineering is a handy tool for boosting crop production and assuring sustainability. Nanotechnology helps to improve agricultural production by increasing the efficiency of inputs and minimizing relevant losses. Nanomaterials offer a wider specific surface area to fertilizers and pesticides. In addition, nanomaterials as unique carriers of agrochemicals facilitate the site-targeted controlled delivery of nutrients with increased crop protection. Due to their direct and intended applications in the precise management and control of inputs (fertilizers, pesticides, herbicides), nanotools, such as nanobiosensors, support the development of high-tech agricultural farms. The integration of biology and nanotechnology into nonosensors has greatly increased their potential to sense and identify the environmental conditions or impairments. In this review, we summarize recent attempts at innovative uses of nanotechnologies in agriculture that may help to meet the rising demand for food and environmental sustainability.
机译:在气候变化时代,全球农业系统面临众多前所未有的挑战。为了实现粮食安全,先进的纳米工程技术是提高作物产量和确保可持续性的便捷工具。纳米技术通过提高投入效率并最大程度减少相关损失,有助于改善农业生产。纳米材料为肥料和杀虫剂提供了更大的比表面积。此外,作为农用化学品独特载体的纳米材料可促进对作物的定点控制营养输送,并增强作物保护能力。由于它们在投入物(肥料,农药,除草剂)的精确管理和控制中的直接和预期应用,纳米工具(例如纳米生物传感器)支持高科技农业农场的发展。将生物学和纳米技术集成到非传感器中,极大地提高了它们检测和识别环境条件或损害的潜力。在这篇综述中,我们总结了最近在农业中纳米技术创新应用的尝试,这些尝试可能有助于满足对食品和环境可持续性不断增长的需求。

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