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河流沉积物中的 PCDD/Fs 和 PBDD/Fs,该河流流经中国典型的电子废物回收区——贵屿镇。

PCDD/Fs and PBDD/Fs in sediments from the river encompassing Guiyu, a typical e-waste recycling zone of China.

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 Chinese Academy of Sciences, Beijing 100049, China.

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; School of Environment, South China Normal University, Guangzhou 510006, China.

出版信息

Ecotoxicol Environ Saf. 2022 Aug;241:113730. doi: 10.1016/j.ecoenv.2022.113730. Epub 2022 Jun 10.

Abstract

Severe pollution of polychlorinated dibenzo-p-dioxins/furans (PCDD/Fs) and their brominated analogues (PBDD/Fs) was frequently reported for the waters located near unregulated e-waste recycling areas. However, the migrations of these high-level dioxins via waterways and their potential threats to the lower reaches were seldom investigated. In this study, we analyzed PCDD/Fs and PBDD/Fs in 27 surficial sediments collected from the Lian River encompassing the Guiyu, China e-waste recycling zone, and investigated their distributions, sources, migration behaviors and risks. Both PCDD/Fs and PBDD/Fs in these sediments exhibited a spatial trend of Guiyu > Guiyu downriver > Guiyu upriver, illustrating that the Guiyu e-waste recycling activities were the uppermost dioxin contributors in this watershed. Sediments from different Guiyu villages demonstrated big gaps in PCDD/F concentrations and congener compositions, and the reason was attributed to the diverse e-waste recycling activities practiced in these villages. Sediments near the e-waste open-burning areas demonstrated extremely high PCDD/F concentrations and unique PCDD/F profiles featured by low-chlorinated PCDFs (tetra- to hexa-), which is quite different from the OCDD-dominant PCDD/F profile found in most of the Lian River sediments. The geographical distributions of PCDD/F concentrations and profiles illustrate that the substantial amount of PCDD/Fs in Guiyu sediments were mainly retained in local and vicinal water bodies. The principal component analysis (PCA) results further confirm that the high-level PCDD/Fs in Guiyu sediments exhibited quite limited translocations downstream and therefore exerted little influences on the lower reaches. Pentachlorophenol use in history, ceramic industry and vehicle exhaust were diagnosed as the major PCDD/F sources for most sediments of the Lian River. Total toxicity equivalent quantities (TEQs) of 70% of the Lian River sediments surpassed the high-risk limit specified for mammalian life by the U.S.EPA (25 pg TEQ g), and most of these sediments were from Guiyu and its near downstream, which merit continuous attention and necessary remediation measures.

摘要

多氯二苯并对二恶英/呋喃(PCDD/Fs)和其溴代类似物(PBDD/Fs)在未经监管的电子废物回收区附近的水域中经常被报道存在严重污染。然而,这些高浓度二恶英通过水道的迁移及其对下游地区的潜在威胁很少被调查。在这项研究中,我们分析了来自中国贵屿电子废物回收区附近的练江的 27 个表层沉积物中的 PCDD/Fs 和 PBDD/Fs,并调查了它们的分布、来源、迁移行为和风险。这些沉积物中的 PCDD/Fs 和 PBDD/Fs 均表现出桂屿>桂屿下游>桂屿上游的空间趋势,表明桂屿电子废物回收活动是该流域内最重要的二恶英排放源。来自不同桂屿村庄的沉积物在 PCDD/F 浓度和同系物组成方面存在很大差异,原因在于这些村庄开展的不同电子废物回收活动。靠近电子废物露天焚烧区的沉积物表现出极高的 PCDD/F 浓度和独特的 PCDD/F 分布特征,其特点是低氯代 PCDFs(四氯至六氯),这与练江大部分沉积物中以 OCDD 为主的 PCDD/F 分布特征明显不同。PCDD/F 浓度和分布的地理分布表明,桂屿沉积物中大量的 PCDD/Fs 主要保留在当地和邻近的水体中。主成分分析(PCA)结果进一步证实,桂屿沉积物中高水平的 PCDD/Fs 向下游的迁移非常有限,因此对下游地区的影响很小。历史上五氯苯酚的使用、陶瓷工业和汽车尾气被诊断为练江大部分沉积物中 PCDD/Fs 的主要来源。练江 70%的沉积物的总毒性当量(TEQs)超过了美国环保署(USEPA)规定的哺乳动物生命高风险限值(25 pg TEQ g),其中大部分沉积物来自桂屿及其下游地区,需要持续关注并采取必要的修复措施。

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