Collaborative Research: Surface Properties and Transport of Micro- and Nanoplastics in Unsaturated Soil
Collaborative Research: Surface Properties and Transport of Micro- and Nanoplastics in Unsaturated Soil
批准号:
2152514
负责人:
Markus Flury
金额:
$32.65万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-08-15 至 2025-07-31
中文摘要
陆地生态系统的塑料污染是对土壤健康的新威胁。虽然人们对海洋生态系统中的塑料污染了解很多,但对陆地系统中微型和纳米塑料的命运和运输知之甚少。微塑料和纳米塑料可能滞留在土壤中,从而对土壤生物产生负面影响,或者它们可能通过土壤移动,可能污染地下水和饮用水资源。该项目旨在描述微塑料和纳米塑料在陆地系统中的命运,以便评估微塑料和纳米塑料造成的环境危害。随着时间的推移,土壤中的塑料颗粒将被跟踪,以确定它们的化学性质是否发生变化以及它们如何移动。四种常用的塑料将被使用:聚乙烯,聚丙烯,聚苯乙烯和一种典型的可生物降解塑料。塑料将通过暴露于紫外线和降雨而受到环境风化。然后将彻底表征微米和纳米塑料的尺寸,形状,表面和胶体特性。预计风化的微米和纳米级塑料颗粒形成“生态冠”,即,一种被细胞外物质、土壤有机物和粘土矿物覆盖的物质,它使颗粒在土壤中更亲水和移动的。将表征塑料的表面和胶体性质。此外,还将对塑料在土壤和地下水中的运输进行量化,以确定微塑料和纳米塑料是否被土壤或含水层所阻挡。该项目的具体目标是(1)了解风化过程中次生微米和纳米塑料的产生,(2)确定风化对微米和纳米塑料表面和胶体性质的作用,以及(3)确定微米和纳米塑料在不饱和多孔介质和土壤中运输的基本机制。该项目将提供有关饱和和不饱和流动条件下微塑料和纳米塑料流动性的机械信息。该项目还将为决策者提供关于可生物降解塑料在陆地环境中降解的宝贵信息。生物降解塑料是传统塑料的一种有前途的替代品,特别是对于一次性应用。该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Plastic pollution of terrestrial ecosystems is an emerging threat to soil health. While there is much known about plastics pollution in marine ecosystems, little is known about fate and transport of micro- and nanoplastics in terrestrial systems. Micro- and nanoplastics may be held up in soil, thereby negatively impacting soil organisms, or they may move through soil, potentially contaminating groundwater and drinking water resources. This project aims to characterize the fate of micro- and nanoplastics in terrestrial systems, so that the environmental hazards posed by micro- and nanoplastics can be assessed. Plastic particles in soil will be tracked over time to determine whether their chemical properties change and how they move.Four commonly used plastics will be used: polyethylene, polypropylene, polystyrene, and a typical biodegradable plastic. The plastics will be subjected to environmental weathering by exposing them to UV and rainfall. Micro- and nanoplastics will then be thoroughly characterized for size, shape, and surface and colloidal properties. It is expected that the weathered micro- and nanoscale plastics particles form an "eco-corona", i.e., a covering with extracellular substances, soil organic matter, and clay minerals, which makes the particles more hydrophilic and mobile in soils. Surface and colloidal properties of the plastics will be characterized. Further, transport of the plastics in soils and groundwater will be quantified to determine whether micro- and nanoplastics are held up in soils or aquifers. The specific objectives of this project are to (1) understand the creation of secondary micro- and nanoplastics during weathering, (2) determine the role of weathering on the surface and colloidal properties of micro- and nanoplastics, and (3) identify the fundamental mechanisms involved in transport of micro- and nanoplastics in unsaturated porous media and soils. The project will provide mechanistic information on mobility of micro- and nanoplastics under saturated and unsaturated flow conditions. The project will also provide valuable information for policy makers on the degradation of biodegradable plastics in terrestrial environments. Biodegradable plastics are a promising alternative to conventional plastics, particularly for single-use applications. The results will help inform legislation on the use of biodegradable plastics.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(4)
专著(0)
科研奖励(0)
会议论文
Biodegradable plastics as alternatives for polyethylene mulch films
可生物降解塑料作为聚乙烯地膜的替代品
DOI:
--
发表时间:
2024
期刊:
Advances in agronomy
影响因子:
--
作者:
[Yingxue Yu, Margarita Velandia, Douglas G. Hayes, Lisa W. DeVetter, Carol A. Miles, Markus Flury]
通讯作者:
Markus Flury
国内基金
海外基金
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