农业
环境科学
生态系统
作物
生态系统服务
土壤水分
生化工程
农业工程
可持续农业
纳米颗粒
人类健康
功能(生物学)
生态系统健康
生态学
作物保护
营养物
农林复合经营
农作物产量
环境资源管理
环境保护
生态工程
作物产量
生物技术
精准农业
植物生长
农业生产力
自然资源经济学
农学
作者
Shiyan Qiao,Xinyuan Bu,Yaoyu Zhou,Yuan Yang,Xiao Yang,Jian Yang
标识
DOI:10.1021/acs.jafc.5c12322
摘要
Nanotechnology is now widely recognized as an important field driving progress in science and engineering and has supported advances in many application areas. As nanoparticles are increasingly applied in agricultural systems, their behavior in soils and their effects on soil organisms and crops are still not fully clarified. This review examines the occurrence and function of nanoparticles in agricultural soils, with attention to ecosystem processes and crop performance. The environmental behavior of nanoparticles is discussed in terms of their mobility, transformation processes, and interactions with soil components. The review also summarizes commonly used mechanistic models and machine learning approaches that are applied to predict the ecological fate of nanoparticles and related environmental risks. In addition, the effects of nanoparticle exposure on major ecosystem components are analyzed, including changes in soil fertility, plant stress responses, and crop productivity, with detailed consideration of growth traits, nutrient uptake patterns, and physiological responses. Key knowledge gaps related to the application of nanoparticles in agriculture are identified, and current research needs associated with environmental safety and agronomic performance are described.
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