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The Emissions Fractions Approach to Assessing the Long-Range Transport Potential of Organic Chemicals

机译:评估有机化学品远距离迁移潜力的排放分数方法

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The assessment of long-range transport potential(LRTP) is enshrined in several frameworks for chemical regulation such as the Stockholm Convention.Screening for LRTP is commonly done with the OECD Pov and LRTP Screening Tool employing two metrics,characteristic travel distance(CTD) and transfer efficiency(TE).Here we introduce a set of three alternative metrics and implement them in the Tool's model.Each metric is expressed as a fraction of the emissions in a source region.The three metrics quantify the extent to which the chemical(i) reaches a remote region(dispersion,φ1),(ii) is transferred to surface media in the remote region(transfer,φ2),and(iii) accumulates in these surface media(accumulation,φ3).In contrast to CTD and TE,the emissions fractions metrics can integrate transport via water and air,enabling comprehensive LRTP assessment.Furthermore,since there is a coherent relationship between the three metrics,the new approach provides quantitative mechanistic insight into different phenomena determining LRTP.Finally,the accumulation metric,φ3,allows assessment of LRTP in the context of the Stockholm Convention,where the ability of a chemical to elicit adverse effects in surface media is decisive.We conclude that the emission fractions approach has the potential to reduce the risk of false positives/negatives in LRTP assessments.
机译:LRTP的评估被纳入了《斯德哥尔摩公约》等多个化学品监管框架中,LRTP的筛选通常使用OECD Pov和LRTP筛选工具进行,该工具采用两个指标,即特征移动距离(CTD)和传输效率(TE)。在这里,我们介绍了一组三个替代指标,并在工具的模型中实现它们。每个指标都表示为源区排放量的一小部分。这三个指标量化了化学品(i)到达远端区域(分散,φ1),(ii)转移到远端区域的表面介质(转移,φ2)和(iii)在这些表面介质中积累的程度(积累,φ3)。与CTD和TE相比,排放分数指标可以整合水运和空运,从而实现全面的LRTP评估。此外,由于这三个指标之间存在连贯的关系,新方法为决定LRTP的不同现象提供了定量的机理见解。最后,累积度量φ3允许在《斯德哥尔摩公约》的背景下评估LRTP,其中化学品在地表介质中引起不利影响的能力是决定性的。我们得出的结论是,排放分数方法有可能降低LRTP评估中假阳性/假阴性的风险。

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