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Source and health risk apportionment for PM2.5 collected in Sha-Lu area, Taiwan

机译:台湾沙卢地区收集PM2.5的来源和健康风险分配

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Many investigations have found that the effects of chemical composition of PM2.5 plays an important role on human health. This study develops an air pollution source reduction strategy that apportions health risk among different emission sources by combining the receptor model and human health risk assessment technique. The goal is to identify emission source of PM2.5 that have the greatest impact on human health. We establish a PM2.5 sampling station in Sha-Lu, Taiwan. Five PM2.5 pollution sources were identified in this study. They are steel industry, residual oil combustion, road dust and traffic, coal-fired power plant, and glass production industry. The results of health risk assessment indicated that the metal contributes the most cancer risk is arsenic, followed by hexavalent chromium. The emissions of these two metals are closely related to coal-fired power plant. We suggested that the power plants should use coal with a low As and Cr content of coal in order to reduce the health risk associated with exposure to PM2.5. The limitation of this study is that only a small fraction of compounds was measured in the samples. However, this study demonstrates that an analysis of the degree to which emission sources contribute to health risks is a useful technique. Most importantly, it provides valuable information for making environmental management decision.
机译:许多调查发现,PM2.5的化学成分的影响对人类健康起着重要作用。本研究通过结合受体模型和人体健康风险评估技术,开发了一种空气污染源减少策略,这些污染源减少策略分配不同排放来源之间的健康风险。目标是识别PM2.5的排放来源,对人类健康产生最大的影响。我们在台湾沙鲁建立了PM2.5采样站。本研究确定了五个PM2.5污染来源。它们是钢铁工业,剩余油燃烧,道路粉尘和交通,燃煤发电厂和玻璃生产行业。健康风险评估结果表明,金属有助于最多的癌症风险是砷,其次是六价铬。这两种金属的排放与燃煤发电厂密切相关。我们建议发电厂应使用煤的煤,以降低与暴露于PM2.5相关的健康风险。本研究的局限性是在样品中仅测量一小部分化合物。然而,本研究表明,分析排放来源对健康风险有助于风险的程度是一种有用的技术。最重要的是,它提供了制定环境管理决策的宝贵信息。

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