Formation, behavior, properties and impact of micro- and nanoplastics on agricultural soil ecosystems (A Review)

IF 4.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES NanoImpact Pub Date : 2023-07-01 DOI:10.1016/j.impact.2023.100474
Anton F. Astner , Alexis B. Gillmore , Yingxue Yu , Markus Flury , Jennifer M. DeBruyn , Sean M. Schaeffer , Douglas G. Hayes
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Abstract

Micro and nanoplastics (MPs and NPs, respectively) in agricultural soil ecosystems represent a pervasive global environmental concern, posing risks to soil biota, hence soil health and food security. This review provides a comprehensive and current summary of the literature on sources and properties of MNPs in agricultural ecosystems, methodology for the isolation and characterization of MNPs recovered from soil, MNP surrogate materials that mimic the size and properties of soil-borne MNPs, and transport of MNPs through the soil matrix. Furthermore, this review elucidates the impacts and risks of agricultural MNPs on crops and soil microorganisms and fauna. A significant source of MPs in soil is plasticulture, involving the use of mulch films and other plastic-based implements to provide several agronomic benefits for specialty crop production, while other sources of MPs include irrigation water and fertilizer. Long-term studies are needed to address current knowledge gaps of formation, soil surface and subsurface transport, and environmental impacts of MNPs, including for MNPs derived from biodegradable mulch films, which, although ultimately undergoing complete mineralization, will reside in soil for several months. Because of the complexity and variability of agricultural soil ecosystems and the difficulty in recovering MNPs from soil, a deeper understanding is needed for the fundamental relationships between MPs, NPs, soil biota and microbiota, including ecotoxicological effects of MNPs on earthworms, soil-dwelling invertebrates, and beneficial soil microorganisms, and soil geochemical attributes. In addition, the geometry, size distribution, fundamental and chemical properties, and concentration of MNPs contained in soils are required to develop surrogate MNP reference materials that can be used across laboratories for conducting fundamental laboratory studies.

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微塑料和纳米塑料的形成、行为、特性及其对农业土壤生态系统的影响(综述)
农业土壤生态系统中的微塑料和纳米塑料(分别为MP和NP)是全球普遍关注的环境问题,对土壤生物群构成风险,从而对土壤健康和粮食安全构成风险。这篇综述对农业生态系统中MNP的来源和特性、从土壤中回收的MNP的分离和表征方法、模拟土传MNP大小和特性的MNP替代材料以及MNP通过土壤基质的运输等方面的文献进行了全面和最新的综述。此外,本综述阐明了农业MNP对作物、土壤微生物和动物群的影响和风险。土壤中MPs的一个重要来源是塑料栽培,包括使用地膜和其他塑料工具为特种作物生产提供多种农艺效益,而MP的其他来源包括灌溉水和肥料。需要进行长期研究,以解决目前在MNP的形成、土壤表面和地下运输以及环境影响方面的知识空白,包括来自可生物降解地膜的MNP,尽管最终会完全矿化,但会在土壤中停留数月。由于农业土壤生态系统的复杂性和可变性,以及从土壤中回收MNPs的困难,需要更深入地了解MP、NP、土壤生物群和微生物群之间的基本关系,包括MNPs对蚯蚓、土壤无脊椎动物和有益土壤微生物的生态毒理学影响,以及土壤地球化学属性。此外,土壤中所含MNP的几何形状、尺寸分布、基本和化学性质以及浓度都是开发替代MNP参考材料所必需的,这些参考材料可在实验室间用于进行基础实验室研究。
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来源期刊
NanoImpact
NanoImpact Social Sciences-Safety Research
CiteScore
11.00
自引率
6.10%
发文量
69
审稿时长
23 days
期刊介绍: NanoImpact is a multidisciplinary journal that focuses on nanosafety research and areas related to the impacts of manufactured nanomaterials on human and environmental systems and the behavior of nanomaterials in these systems.
期刊最新文献
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