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Modelling the environmental fate of the polybrominated diphenyl ethers

机译:模拟多溴联苯醚的环境命运

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摘要

In response to growing alarm over the occurrence of polybrominated diphenyl ethers (PBDEs) in remote regions, this study considers their physical chemistry, environmental partitioning and considerations regarding potential for long-range atmospheric transport (LRAT). Internally consistent physical-chemical property data are presented for five representative congeners (PBDE-15, -28, -47, -99, -153) and used in a multimedia modelling approach. Results of the Level II model indicate that PBDEs will largely partition to organic carbon in soil and sediment and that their persistence will be strongly influenced by degradation rates in these media that are not well known. TaPL3 model estimates of their characteristic travel distance (CTD) suggest limited LRAT potential. The LRAT is also evaluated qualitatively, in terms of surface-air exchange behaviour. PBDEs are shown to be sensitive to seasonally and diurnally fluctuating temperatures. When vegetation is included in the model, 50% of the total mass of PBDE-47 deposited to vegetation returns to the atmosphere, suggesting that it may migrate through a series of deposition/volatilisation hops. Key data that needs to be identified in this evaluation include a better understanding of air-surface exchange, particularly to foliage, and measurements of degradation rates in soil, sediment and vegetation.
机译:为了应对在偏远地区发生的多溴联苯醚(PBDEs)的日益严重的警报,本研究考虑了它们的物理化学,环境划分以及有关远距离大气迁移(LRAT)潜力的考虑。提供了五个代表性同类物(PBDE-15,-28,-47,-99,-153)的内部一致的物理化学性质数据,并用于多媒体建模方法。 II级模型的结果表明,多溴二苯醚会在土壤和沉积物中大量分配给有机碳,并且它们的持久性将受到未知的这些介质中降解速率的强烈影响。 TaPL3模型的特征行进距离(CTD)估计表明有限的LRAT潜力。还根据表面空气交换行为对LRAT进行了定性评估。已证明多溴二苯醚对季节性和昼夜波动的温度敏感。当模型中包括植被时,沉积到植被中的PBDE-47总质量的50%返回大气,这表明它可能会通过一系列沉积/挥发跃变迁移。在此评估中需要确定的关键数据包括对空气表面交换(尤其是对树叶的交换)有更好的了解,以及对土壤,沉积物和植被中降解速率的测量。

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