农业
粮食安全
弹性(材料科学)
全球人口
环境科学
可持续农业
作物产量
纳米技术
产量(工程)
持续性
人口
自然资源经济学
业务
生物技术
材料科学
农学
生物
生态学
环境卫生
经济
医学
冶金
复合材料
作者
Jie Wang,Honghong Wu,Yichao Wang,Wuwei Ye,Xiangpei Kong,Zujun Yin
摘要
ABSTRACT By 2050, the global population is projected to reach 9 billion, underscoring the imperative for innovative solutions to increase grain yield and enhance food security. Nanotechnology has emerged as a powerful tool, providing unique solutions to this challenge. Nanoparticles (NPs) can improve plant growth and nutrition under normal conditions through their high surface‐to‐volume ratio and unique physical and chemical properties. Moreover, they can be used to monitor crop health status and augment plant resilience against abiotic stresses (such as salinity, drought, heavy metals, and extreme temperatures) that endanger global agriculture. Application of NPs can enhance stress tolerance mechanisms in plants, minimizing potential yield losses and underscoring the potential of NPs to raise crop yield and quality. This review highlights the need for a comprehensive exploration of the environmental implications and safety of nanomaterials and provides valuable guidelines for researchers, policymakers, and agricultural practitioners. With thoughtful stewardship, nanotechnology holds immense promise in shaping environmentally sustainable agriculture amid escalating environmental challenges.
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