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有机污染物和重金属复合污染对电子废物污染土壤中生物多样性和土壤多功能性的影响。

Effects of combined pollution of organic pollutants and heavy metals on biodiversity and soil multifunctionality in e-waste contaminated soil.

机构信息

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China; University of the Chinese Academy of Sciences, Beijing 100049, China.

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China.

出版信息

J Hazard Mater. 2022 Oct 15;440:129727. doi: 10.1016/j.jhazmat.2022.129727. Epub 2022 Aug 6.

Abstract

Electronic waste (e-waste) is increasing globally, but the impact of this source of combined pollution on soil biodiversity and multiple soil functions (i.e., ecosystem multifunctionality) remains unclear. Here, we evaluated the effects of combined pollution on the biodiversity and soil multifunctionality using samples collected from upland and paddy soils chronically contaminated with e-waste. Overall biodiversity, as well as the relative abundance and biodiversity of key ecological clusters, as combined pollution concentrations increased in upland soil, while the opposite was true in paddy soil. Soil multifunctionality followed the same trend. Organic pollutants had significant negative effects on soil multifunctionality and were the main influencing factors in upland soil. Heavy metals had significant positive effects on soil multifunctionality in paddy soil. Moreover, driving soil multifunctionality was overall biodiversity in upland soil but key biodiversity in paddy soil. Importantly, a strong positive association between key organism biodiversity and soil multifunctionality was found in soil with low contamination. However, the relationship between key organism biodiversity and soil multifunctionality weakened or disappeared in highly contaminated soil, whereas overall biodiversity was significantly and positively correlated with multifunctionality. Our results emphasized that severe e-waste contamination would reduce soil biodiversity and soil multifunctionality and warrants high attention.

摘要

电子垃圾(e-waste)在全球范围内不断增加,但这种复合污染源对土壤生物多样性和多种土壤功能(即生态系统多功能性)的影响尚不清楚。在这里,我们使用受电子垃圾长期污染的旱地和水田土壤样本评估了复合污染对生物多样性和土壤多功能性的影响。随着旱地土壤中复合污染浓度的增加,整体生物多样性以及关键生态类群的相对丰度和生物多样性增加,而水田土壤则相反。土壤多功能性也呈现出相同的趋势。有机污染物对土壤多功能性有显著的负面影响,是旱地土壤的主要影响因素。重金属对水田土壤的多功能性有显著的积极影响。此外,旱地土壤中土壤多功能性的总体生物多样性,而水田土壤中则是关键生物多样性。重要的是,在低污染土壤中发现了关键生物多样性与土壤多功能性之间的强烈正相关关系。然而,在高度污染的土壤中,关键生物多样性与土壤多功能性之间的关系减弱或消失,而总体生物多样性与多功能性呈显著正相关。我们的研究结果强调,严重的电子垃圾污染会降低土壤生物多样性和土壤多功能性,值得高度关注。

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