Ecological and human health risk assessment of heavy metals based on their source apportionment in cropland soils around an e-waste dismantling site, Southeast China

An accurate understanding of soil heavy metal (HM) pollution characteristics and source apportionment, and a recognition of the major factors influencing ecological and human health risks (HHRs) are essential for soil HM pollution control and remediation. In this study, 212 surface soils (0–20 cm) a...

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Veröffentlicht in:Ecotoxicology and environmental safety 2022-09, Vol.242, p.113929-113929, Article 113929
Hauptverfasser: Liang, Qiang, Tian, Kang, Li, Ling, He, Yue, Zhao, Tiantian, Liu, Benle, Wu, Qiumei, Huang, Biao, Zhao, Ling, Teng, Ying
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Sprache:eng
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Zusammenfassung:An accurate understanding of soil heavy metal (HM) pollution characteristics and source apportionment, and a recognition of the major factors influencing ecological and human health risks (HHRs) are essential for soil HM pollution control and remediation. In this study, 212 surface soils (0–20 cm) and 15 profile soils (0–100 cm) were collected from cropland soils around an e-waste dismantling site in Taizhou city, Zhejiang Province, China. Spatial analysis was used to evaluate the pollution characteristics of HMs (Cd, Cu, Pb, Zn, Cr and Ni). Principal component analysis (PCA) and positive matrix factorization (PMF) were also conducted to quantify their source contributions. A modified source-oriented HHR assessment integrated source-oriented ecological risk and source-oriented HHR assessment was developed to describe the major factors that influenced HHR. Results showed that 94.81 %, 88.21 %, 36.79 % and 47.17 % of Cd, Cu, Pb and Zn, respectively, in surface soils exceeded their screening values in the soil environmental quality standard for agricultural soils (GB 15618–2018). Spatial analysis indicated that high values of Cd, Cu, Pb and Zn were distributed near the e-waste dismantling site. The results of PCA and PMF showed that the primary sources of HMs in the study area are e-waste dismantling activities, natural sources and atmospheric deposition, which contribute 27 %, 46 % and 27 % of HM pollutants, respectively. The results of source-oriented ecological risk and HHR assessment indicated that e-waste dismantling activities and natural sources were primary sources for ecological risk and HHR. However, source-oriented HHR assessment may underestimate the contribution of e-waste dismantling activities by ignoring HM pollution levels. The modified source-oriented HHR assessment highlights that e-waste dismantling activities were major factor that affect noncarcinogenic risk. This study could provide important data support for subsequent environmental remediation of soil HM pollution in cropland soils around e-waste dismantling sites. •Cd was the major pollutant of the cropland soils around e-waste dismantling site.•E-waste dismantling activities and atmospheric deposition contributed to HMs over 50 %.•A modified source-oriented HHR assessment was improved integrating HM pollution levels.•Concentration-oriented HHR assessment could overestimate the contribution of natural sources.•E-waste dismantling activities were the major factor influencing noncarcin
ISSN:0147-6513
1090-2414
DOI:10.1016/j.ecoenv.2022.113929