Department of Civil Engineering, Indian Institute of Technology Delhi, New Delhi, 110016, India.
Department of Civil Engineering, Indian Institute of Technology Delhi, New Delhi, 110016, India.
Chemosphere. 2021 Oct;281:130940. doi: 10.1016/j.chemosphere.2021.130940. Epub 2021 May 21.
Copper-based nanoparticles (Cu-based NPs) have been gaining wide attention in agricultural applications due to their diverse characteristics and multipurpose properties. This includes their use in agrochemicals for efficient delivery and controlled release of pesticides and fertilizers. However, their excessive usage over a long duration of time could pose potential risks to the soil system. Further, they are known for their well-established anti-microbial effects which could be detrimental to soil health, particularly to the activities of soil microbes, which play a significant role in the functioning of terrestrial and agroecosystems. Thus, there is a great need to clearly understand these uniquely nanospecific properties of Cu-based NPs along with mode-of-action, effect on soil processes, soil organisms, and plants. This paper examines the current literature on Cu-based NPs to provide a systematic understanding of their potential impacts on the soil-plant environment. It explores their rising application and usage in agriculture along with their possible interaction with various soil components and the potential factors influencing it. It further investigates their uptake, translocation, and distribution in plants in various exposure media. It summarises that the dissolution, biotransformation, and bioavailability of Cu-based NPs in the soil are governed by several factors, like soil type, soil pH, and organic matter content. Further, environmental factors, time duration, and presence of other pollutants could also influence their biotransformation and soil toxicity. Finally, this review seeks to provide future perspectives that need attention for investigation purposes.
铜基纳米粒子(Cu-based NPs)因其多样的特性和多功能性质,在农业应用中受到广泛关注。这包括将其用于农用化学品,以实现农药和肥料的高效传递和控制释放。然而,长时间过度使用可能会对土壤系统造成潜在风险。此外,它们具有良好的抗菌作用,这可能对土壤健康有害,特别是对土壤微生物的活动有害,土壤微生物在陆地和农业生态系统的功能中起着重要作用。因此,非常有必要清楚地了解 Cu 基 NPs 的这些独特的纳米特异性特性及其作用模式、对土壤过程、土壤生物和植物的影响。本文通过检查 Cu 基 NPs 的现有文献,为其对土壤-植物环境的潜在影响提供了系统的理解。它探讨了它们在农业中的日益应用和使用,以及它们与各种土壤成分的可能相互作用和潜在影响因素。它进一步研究了它们在各种暴露介质中的植物吸收、转运和分布。综上所述,Cu 基 NPs 在土壤中的溶解、生物转化和生物可利用性受多种因素的影响,如土壤类型、土壤 pH 值和有机质含量。此外,环境因素、时间和其他污染物的存在也可能影响它们的生物转化和土壤毒性。最后,本综述旨在为未来的研究提供需要关注的未来展望。