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Scientific reports. 2024 Nov 16;14(1):28328. doi: 10.1038/s41598-024-80124-8 Q13.82024

Response of soil biochemical properties and ecosystem function to microplastics pollution

微塑料污染对土壤生化性质和生态系统功能的影响响应分析 翻译改进

Yanan Cheng  1, Fei Wang  2, Wenwen Huang  2, Yongzhuo Liu  2

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作者单位

  • 1 School of Resources and Environment, Henan Institute of Science and Technology, 90 Eastern Hualan Avenue, Xinxiang, 453003, China. yncheng@hist.edu.cn.
  • 2 School of Resources and Environment, Henan Institute of Science and Technology, 90 Eastern Hualan Avenue, Xinxiang, 453003, China.
  • DOI: 10.1038/s41598-024-80124-8 PMID: 39550512

    摘要 中英对照阅读

    Microplastics (MPs)-induced changes in soil nutrient cycling and microbial activity may pose a potential risk to soil ecosystem. Although some studies have explored these topics, there is still a large space for exploration and a relative lack of research on the mechanism by which soil health and its functions are affected by these changes. Thus, this study investigated the effects of polyethylene (PE) MPs with two particle sizes (13 μm and 130 μm) at five concentrations (0%, 1%, 3%, 6% and 10%, w/w) on soil biochemical properties and ecosystem function. The findings revealed that the exposure to 13 μm MPs significantly reduced soil respiration (Res) rate, β-glucosidase (Glu) and catalase (CAT) activity, which accompanied with enhanced urease activity and decreased soil pH, available phosphorus (AP), dissolved reactive phosphorus (DRP), dissolved organic carbon (DOC) and available potassium (AK) content in most cases. However, 130 μm MPs exerted negligible influence on the DOC and DRP content, Glu and CAT activity. High concentrations of 130 μm MPs significantly reduced soil pH, total dissolved nitrogen (TDN), AP and AK content, but significantly increased soil Res rate. Overall, soil ecosystem function was significantly reduced by the addition of MPs. The Res rate, soil AP and DRP content and Glu activity were the most important predictors of soil ecosystem function. We found that the risk posed by MPs to soil ecosystem function was dose-dependent and size-dependent. These findings underscore that MPs can alter soil functions related to soil nutrient cycling and provide further insights into MPs behavior in agroecosystems.

    Keywords: Microplastics; Polyethylene; Soil biochemical properties; Soil ecosystem function.

    Keywords:soil biochemical properties; ecosystem function; microplastics pollution

    微塑料(MPs)引起的土壤养分循环和微生物活性的变化可能对土壤生态系统构成潜在风险。尽管已有部分研究探索了这些领域,但仍有许多未被充分探讨的空间,并且关于这些变化如何影响土壤健康及其功能的机制研究相对较少。因此,本研究调查了聚乙烯(PE)微塑料在两种粒径(13 μm 和 130 μm)下以五种浓度(0%,1%,3%,6%和10%,质量分数)对土壤生化特性和生态系统功能的影响。研究发现,暴露于13μm的MPs显著降低了土壤呼吸速率、β-葡萄糖苷酶(Glu)和过氧化氢酶(CAT)活性,并且伴随着脲酶活性增强以及土壤pH值、有效磷(AP)、溶解性反应磷(DRP)、溶解有机碳(DOC)和有效钾(AK)含量的降低。然而,130μm的MPs对DOC和DRP含量、Glu和CAT活性影响较小。高浓度的130μm MPs显著降低了土壤pH值、总溶解氮(TDN)、AP和AK含量,但显著增加了土壤呼吸速率。总体而言,添加微塑料后,土壤生态系统功能显著降低。土壤呼吸速率、土壤有效磷和DRP含量以及Glu活性是预测土壤生态系统功能的最重要指标。我们发现MPs对土壤生态系统功能的风险与其剂量和粒径有关。这些研究结果强调了MPs可以改变与土壤养分循环相关的土壤功能,并为了解农业生态系统的微塑料行为提供了进一步见解。

    关键词: 微塑料;聚乙烯;土壤生化特性;土壤生态系统功能。

    关键词:土壤生物化学性质; 生态系统功能; 微塑料污染

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    期刊名:Scientific reports

    缩写:SCI REP-UK

    ISSN:2045-2322

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    IF/分区:3.8/Q1

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