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The evaluation of stack metal emissions from hazardous waste incinerators: assessing human exposure through noninhalation pathways.

机译:危险废物焚烧炉中金属烟囱排放的评估:通过非吸入途径评估人体暴露。

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摘要

Potential public health effects associated with exposure to metal emissions from hazardous waste incinerators through noninhalation pathways were evaluated. Instead of relying on modeling the movement of toxicants through various environmental media, an approach based on estimating changes from baseline levels of exposure was employed. Changes in soil and water As, Cd, Hg, Pb, Cr, and Be concentrations that result from incinerator emissions were first determined. Estimates of changes in human exposure due to direct contact with shallow soil or the ingestion of surface water were then ascertained. Projected changes in dietary intakes of metals due to incinerator emissions were estimated based on changes from baseline dietary intakes that are monitored in U.S. Food and Drug Administration total diet studies. Changes from baseline intake were deemed to be proportional to the projected changes in soil or surface water metal concentrations. Human exposure to metals emitted from nine hazardous waste incinerators were then evaluated. Metal emissions from certain facilities resulted in tangible human exposure through noninhalation pathways. However, the analysis indicated that the deposition of metals from ambient air would result in substantially greater human exposure through noninhalation pathways than the emissions from most of the facilities.
机译:评估了与通过非吸入途径暴露于危险废物焚化炉的金属排放物相关的潜在公共健康影响。不再依赖于模拟有毒物质在各种环境介质中的运动,而是采用了一种基于估计基线暴露水平变化的方法。首先确定了焚烧炉排放物引起的土壤和水中As,Cd,Hg,Pb,Cr和Be浓度的变化。然后确定由于与浅层土壤直接接触或摄入地表水而引起的人体暴露变化的估计。根据焚化炉排放物引起的金属饮食摄入量的预计变化,是根据美国食品药品管理局总饮食研究中监测的基线饮食摄入量的变化估算的。基线摄入量的变化被认为与土壤或地表水金属浓度的预计变化成比例。然后评估了人体暴露于九个危险废物焚化炉排放的金属的情况。某些设施的金属排放物通过非吸入途径导致人类实际接触。但是,分析表明,与大多数设施的排放相比,环境空气中金属的沉积将导致人体通过非吸入途径的暴露大大增加。

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