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铜基纳米材料:可持续农业的机遇。

Copper-based nanomaterials: Opportunities for sustainable agriculture.

机构信息

State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, School of Resource and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, China.

Shanghai Agricultural Technology Extension and Service Center, Shanghai 201103, China.

出版信息

Sci Total Environ. 2024 May 20;926:171948. doi: 10.1016/j.scitotenv.2024.171948. Epub 2024 Mar 26.

Abstract

The exponential growth of the global population has resulted in a significant surge in the demand for food worldwide. Additionally, the impact of climate change has exacerbated crop losses caused by pests and pathogens. The transportation and utilization of traditional agrochemicals in the soil are highly inefficient, resulting in significant environmental losses and causing severe pollution of both the soil and aquatic ecosystems. Nanotechnology is an emerging field with significant potential for market applications. Among metal-based nanomaterials, copper-based nanomaterials have demonstrated remarkable potential in agriculture, which are anticipated to offer a promising alternative approach for enhancing crop yields and managing diseases, among other benefits. This review firstly performed co-occurrence and clustering analyses of previous studies on copper-based nanomaterials used in agriculture. Then a comprehensive review of the applications of copper-based nanomaterials in agricultural production was summarized. These applications primarily involved in nano-fertilizers, nano-regulators, nano-stimulants, and nano-pesticides for enhancing crop yields, improving crop resistance, promoting crop seed germination, and controlling crop diseases. Besides, the paper concluded the potential impact of copper-based nanomaterials on the soil micro-environment, including soil physicochemical properties, enzyme activities, and microbial communities. Additionally, the potential mechanisms were proposed underlying the interactions between copper-based nanomaterials, pathogenic microorganisms, and crops. Furthermore, the review summarized the factors affecting the application of copper-based nanomaterials, and highlighted the advantages and limitations of employing copper-based nanomaterials in agriculture. Finally, insights into the future research directions of nano-agriculture were put forward. The purpose of this review is to encourage more researches and applications of copper-based nanomaterials in agriculture, offering a novel and sustainable strategy for agricultural development.

摘要

全球人口的指数级增长导致了全球范围内对粮食的需求大幅增加。此外,气候变化的影响加剧了病虫害对作物的损失。传统农用化学品在土壤中的运输和利用效率非常低,导致了巨大的环境损失,对土壤和水生生态系统造成了严重的污染。纳米技术是一个具有巨大市场应用潜力的新兴领域。在金属基纳米材料中,铜基纳米材料在农业中表现出了显著的潜力,有望为提高作物产量和防治病虫害等提供一种有前景的替代方法。本综述首先对农业中使用的铜基纳米材料的先前研究进行了共现和聚类分析。然后对铜基纳米材料在农业生产中的应用进行了全面综述。这些应用主要涉及纳米肥料、纳米调节剂、纳米刺激素和纳米农药,以提高作物产量、增强作物抗性、促进作物种子发芽和控制作物病害。此外,本文还总结了铜基纳米材料对土壤微环境的潜在影响,包括土壤物理化学性质、酶活性和微生物群落。此外,还提出了铜基纳米材料与致病微生物和作物相互作用的潜在机制。进一步,综述总结了影响铜基纳米材料应用的因素,并强调了在农业中使用铜基纳米材料的优势和局限性。最后,对纳米农业的未来研究方向提出了见解。本综述的目的是鼓励更多关于铜基纳米材料在农业中的研究和应用,为农业发展提供一种新颖的可持续策略。

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