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电子废物拆解工人有机磷酸酯职业暴露:风险评估与影响因素筛选。

Occupational exposure to organophosphate esters in e-waste dismantling workers: Risk assessment and influencing factors screening.

机构信息

College of Environmental Science and Engineering, Dalian Maritime University, Dalian, China; Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin, China; State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, China.

Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin, China.

出版信息

Ecotoxicol Environ Saf. 2022 Jul 15;240:113707. doi: 10.1016/j.ecoenv.2022.113707. Epub 2022 May 30.

Abstract

Organophosphate esters (OPEs) are increasingly added in electronic products as alternative flame retardants, which may result in high occupational exposure of electronic waste recycling employees. This study investigated occupational exposure to OPEs in an e-waste recycling site in northern China, with intent to explore the impacts of occupational exposure and dismantling manipulation mode. Human urine samples from three sites with different distances from the core dismantling area, including employees from family workshops and plants with centralized management and residents from nearby areas, were collected and analyzed for OPEs' metabolites (mOPEs). The urinary ∑mOPEs' median concentrations (0.910 ng/mL) of all employees were significantly higher than those of residents in Ziya Town (0.526 ng/mL) and Jinghai downtown (0.600 ng/mL), suggesting the risk of occupational OPEs' exposure associated with e-waste dismantling. However, the spatial variation was insignificant for residents with different distances from the e-waste recycling site. Besides, OPEs' exposure levels were significantly affected by manipulation modes and the urinary ∑mOPEs' median concentrations in the employees of family workshops (1.05 ng/mL) were significantly higher than those in plants with centralized management (0.667 ng/mL). The result suggests that mechanical dismantling and active ventilating measures can reduce the OPEs' occupational exposure risk. Moreover, ∑mOPEs were higher in volunteers with age above 50 years old and in the underweight subgroup. Finally, different categories of mOPEs in human urine showed associations with corresponding OPEs in dust samples in the same area.

摘要

有机磷酸酯 (OPEs) 作为替代阻燃剂,越来越多地被添加到电子产品中,这可能导致电子废物回收员工的职业暴露水平升高。本研究调查了中国北方一个电子废物回收现场的 OPE 职业暴露情况,旨在探讨职业暴露和拆解操作模式的影响。从距离核心拆解区域不同距离的三个地点采集了人体尿液样本,包括来自家庭作坊的员工、有集中管理的工厂员工和附近地区的居民,并对 OPE 代谢物 (mOPEs) 进行了分析。所有员工的尿液中∑mOPEs 的中位数浓度 (0.910ng/mL) 明显高于子洲镇 (0.526ng/mL) 和静海市中心 (0.600ng/mL) 居民的浓度,这表明与电子废物拆解相关的职业 OPEs 暴露风险。然而,对于距离电子废物回收地点不同距离的居民,空间变化并不明显。此外,OPEs 的暴露水平受到操作模式的显著影响,家庭作坊员工的尿液中∑mOPEs 的中位数浓度 (1.05ng/mL) 明显高于有集中管理的工厂员工 (0.667ng/mL)。这表明机械拆解和主动通风措施可以降低 OPEs 的职业暴露风险。此外,年龄在 50 岁以上和体重不足亚组的志愿者尿液中∑mOPEs 水平更高。最后,同一地区灰尘样本中相应 OPEs 与人体尿液中不同类别的 mOPEs 存在关联。

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