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废弃电子垃圾回收场地土壤中的有机磷酸酯阻燃剂与塑料:塑料碎片带来的重大生态风险

Organophosphate flame retardants and plastics in soil from an abandoned e-waste recycling site: significant ecological risks derived from plastic debris.

作者信息

Lu Ruifeng, Zhang Ying, Guo Kaiying, He Zhaowei, Yu Wanmei, Cao Xingpei, Zheng Xiaobo, Mai Bixian

机构信息

State Key Laboratory of Organic Geochemistry and Guangdong Key Laboratory of Environmental Protection and Resources Utilization, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China.

University of the Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Environ Sci Pollut Res Int. 2023 Apr;30(20):58933-58943. doi: 10.1007/s11356-023-26625-x. Epub 2023 Mar 31.

Abstract

The distribution of 9 organophosphate flame retardants (OPFRs) was determined in plastic debris and soil samples separated from twenty soil samples collected from an abandoned e-waste recycling area. Tris-(chloroisopropyl) phosphate (TCPP) and triphenyl phosphate (TPhP) were the main chemicals, with median concentrations of 124-1930 ng/g and 143-1170 ng/g in soil, and 712-803 ng/g and 600-953 ng/g in plastics, respectively. Plastics contributed less than 10% of the total OPFR mass in bulk soil samples. No apparent OPFR distribution trend was observed in different sizes of plastics and soil. The ecological risks of plastics and OPFRs were estimated by the species sensitivity distributions (SSDs) method, which resulted in lower predicted no-effect concentrations (PNECs) of TPhP and decabromodiphenyl ether 209 (BDE 209) than the standard values derived from limited toxicity tests. In addition, the PNEC of polyethene (PE) was lower than the plastic concentration in the soil of a previous study. TPhP and BDE 209 had high ecological risks with risk quotients (RQs) > 0.1, and RQ of TPhP was among the highest values in literature.

摘要

在从一个废弃电子垃圾回收区域采集的20个土壤样本中分离出的塑料碎片和土壤样本中,测定了9种有机磷酸酯阻燃剂(OPFRs)的分布情况。磷酸三(氯异丙基)酯(TCPP)和磷酸三苯酯(TPhP)是主要化学物质,在土壤中的中位浓度分别为124 - 1930纳克/克和143 - 1170纳克/克,在塑料中的中位浓度分别为712 - 803纳克/克和600 - 953纳克/克。在整体土壤样本中,塑料中OPFR的总质量占比不到10%。在不同尺寸的塑料和土壤中,未观察到明显的OPFR分布趋势。通过物种敏感度分布(SSD)方法评估了塑料和OPFR的生态风险,结果表明,TPhP和十溴二苯醚209(BDE 209)的预测无效应浓度(PNECs)低于有限毒性试验得出的标准值。此外,聚乙烯(PE)的PNEC低于先前研究中土壤中的塑料浓度。TPhP和BDE 209具有较高的生态风险,风险商(RQs)> 0.1,且TPhP的RQ是文献中最高的值之一。

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