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首页> 外文期刊>The Science of the Total Environment >Chronic exposure to heavy metals from informal e-waste recycling plants and children's attention, executive function and academic performance
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Chronic exposure to heavy metals from informal e-waste recycling plants and children's attention, executive function and academic performance

机译:非正式电子废物回收工厂长期暴露于重金属中,以及儿童的注意力,执行功能和学习成绩

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摘要

E-waste contains valuable metals that require appropriate waste management plans. However, rudimentary e-waste processing methods are a source of heavy metals environmental pollution. This study has characterised concentrations of heavy metals in soil (n = 10), water (n= 10) and hair (n = 44) of children in areas surrounding Jakarta (Indonesia), where e-waste is being or has been conducted in the past, and in a reference unexposed site. Chronic exposure to Mn, Pb, Hg, As and Cd and its associations with attention and executive function, characterised with the Trail Making Test (TMT), along with academic performance scores was conducted using multivariate regression analysis. Models were adjusted for age, gender, parental education, environmental tobacco smoke and residential traffic. Lead (3653 ± 3355 mg/kg), cadmium (3.4 ± 0.9 mg/kg) and mercury (15.2 ± 28.5 mg/kg) concentrations from soil and manganese concentrations in water (1.43 ± 0.64 mg/L) in the exposed sites were higher than current regulations. Heavy metal concentrations in hair of children living near e-waste facilities was higher than for children living in non-exposed areas (Pb: 0.155 ± 0.187 vs 0.0729 ± 0.08 mg/g; Mn: 0.130 ± 0.212 vs 0.018 ± 0.045 mg/g; Hg: 0.008 ± 0.0042 vs 0.002 ± 0.0011 mg/g) suggesting chronic exposure to heavy metals. Manganese exposure was associated with worse cognitive performance in the domains of attention (TMT-A score: 66 s. 95% CI 0.09,132), executive function (TMT-B score: 105 s, 95% CI 11.5,198) and social sciences (-29%, 95% CI -54, -4.7) (per unit of Mn in hair mg/g). These results suggest that informal e-waste activities contribute to local heavy metal soil contamination, and could be an important source of metal exposure to children living in the vicinity of these facilities with putative impacts on their cognitive performance. E-waste management regulation and remediation programmes should be implemented to reduce environmental pollution and associated health effects.
机译:电子废物包含需要适当废物管理计划的贵重金属。但是,基本的电子废物处理方法是重金属环境污染的来源。这项研究的特征是在雅加达(印度尼西亚)正在或已经进行电子垃圾处理的地区,儿童的土壤(n = 10),水(n = 10)和头发(n = 44)中的重金属浓度。过去,并在未公开的参考网站中。使用多变量回归分析进行了长期暴露于Mn,Pb,Hg,As和Cd及其与注意力和执行功能的关系,其特征为追踪制造测验(TMT)以及学业成绩。对年龄,性别,父母教育,环境烟草烟雾和住宅交通进行了模型调整。暴露地点的土壤和水中锰含量(1.43±0.64 mg / L)的铅(3653±3355 mg / kg),镉(3.4±0.9 mg / kg)和汞(15.2±28.5 mg / kg)的浓度为高于当前法规。居住在电子废物处理设施附近的儿童头发中的重金属浓度高于未暴露区域的儿童(Pb:0.155±0.187 vs 0.0729±0.08 mg / g; Mn:0.130±0.212 vs 0.018±0.045 mg / g ; Hg:0.008±0.0042 vs 0.002±0.0011 mg / g),表明长期暴露于重金属。锰暴露与注意力领域(TMT-A评分:66 s。95%CI 0.09,132),执行功能(TMT-B评分:105 s,95%CI 11.5,198)和社交领域的认知表现较差有关。科学(-29%,95%CI -54,-4.7)(每单位头发中的锰mg / g)。这些结果表明,非正式的电子废物活动会造成当地重金属土壤污染,并且可能是生活在这些设施附近的儿童接触金属的重要来源,对他们的认知能力可能产生影响。应执行电子废物管理法规和补救计划,以减少环境污染和相关的健康影响。

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