Agricultural soils and microplastics: Are biosolids the problem?

IF 2.1 Q3 SOIL SCIENCE
F. Radford, A. Horton, M. Hudson, Peter Shaw, I. Williams
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引用次数: 3

Abstract

Biosolids are the solid by-product of the wastewater treatment system. They are regularly applied to agricultural land in the UK to fertilize and increase crop yields, but they have been shown to contain high concentrations of microplastics. Here we sampled a selection of agricultural soils in the Southeast of England which had received or never received biosolid treatment. Sites were sampled on two occasions in the summer and winter. Microplastic (MP) numbers were high in both the biosolid treated fields (874 MP/kg) and the untreated fields (664 MP/kg) and a wide variety of polymers were found across sites. However, there was a lack of significant difference between treated and untreated soils. This suggests the influence of other microplastic sources e.g. agricultural plastic and general littering, and external conditions e.g. farm management and rainfall. Microplastic concentrations were higher in the summer suggesting that erosion, runoff, and wind transport may be removing microplastics from these systems. The dynamic nature of the agricultural soils may result in them becoming a vector for microplastics into the wider environment. The high variability in results seen here highlights the complexity of microplastic concentrations in heterogeneous agricultural soils. This study suggests that biosolids, whilst are likely a contributor, are not the sole source of microplastics in agricultural soils. Further research is required to determine source and sink dynamics in these systems. Understanding the sources of microplastic contamination in soils is imperative for future mitigation strategies to be effective.
农业土壤和微塑料:问题是生物固体吗?
生物固体是废水处理系统的固体副产品。在英国,它们经常被用于农田施肥和提高作物产量,但已被证明含有高浓度的微塑料。在这里,我们对英格兰东南部经过或从未经过生物固体处理的农业土壤进行了采样。在夏季和冬季对现场进行了两次采样。在生物固体处理过的田地(874MP/kg)和未处理过的田里(664MP/kg),微塑料(MP)数量都很高,并且在各个位点发现了各种各样的聚合物。然而,经处理和未经处理的土壤之间缺乏显著差异。这表明了其他微塑料来源的影响,如农业塑料和一般垃圾,以及外部条件,如农场管理和降雨。夏季的微塑料浓度更高,这表明侵蚀、径流和风力输送可能会将微塑料从这些系统中清除。农业土壤的动态性质可能导致它们成为微塑料进入更广泛环境的载体。这里看到的结果的高度可变性突出了异质农业土壤中微塑料浓度的复杂性。这项研究表明,生物固体虽然可能是一个贡献者,但并不是农业土壤中微塑料的唯一来源。需要进一步的研究来确定这些系统中的源和汇动力学。了解土壤中微塑料污染的来源对于未来有效的缓解策略至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.90
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