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首页> 外文期刊>Annals of the New York Academy of Sciences >Fate Of Polybrominated Diphenyl Ethers during Wastewater Treatment/polishing and Sludge Stabilization/disposal
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Fate Of Polybrominated Diphenyl Ethers during Wastewater Treatment/polishing and Sludge Stabilization/disposal

机译:废水处理/抛光和污泥稳定/处置过程中多溴二苯醚的去向

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摘要

Large quantities of polybrominated diphenyl ethers (PBDEs) have been used as flame retardants in clothing and plastic products since the 1970s. A small fraction of the PBDEs in manufactured products subsequently enters municipal wastewater. Nevertheless, the resistance of these compounds to chemical and biochemical transformations provides opportunities for accumulation in sediments that are in contact with wastewater effluent and agricultural soils that are amended with biosolids derived from wastewater treatment. Balances developed for PBDE congeners indicate that conventional waste-water treatment processes and soil infiltration of treated wastewater in recharge operations do not discriminate significantly among the major congeners in commercially available PBDE products. Accumulation of PBDEs at near part-per-million levels was measured in the surface sediments at the Sweetwater Recharge Facility in Tucson, Arizona, during 10-15 years of operation. Half-lives for loss of major PBDE congeners from sediments were decades or longer. Local agricultural soils amended with biosolids over a 20-year period showed similar accumulation of PBDEs. The widespread use of PBDEs in commercial products, compound persistence, and toxicity indicate that additional effort is warranted to better understand fate-determining processes for PBDEs in the environment.
机译:自1970年代以来,大量的多溴二苯醚(PBDEs)被用作服装和塑料产品的阻燃剂。制成品中的一小部分多溴二苯醚随后进入城市废水。然而,这些化合物对化学和生物化学转化的抗性提供了在与废水流出物接触的沉积物中积累的机会,以及由废水处理产生的生物固体修正的农业土壤中积累的机会。为多溴二苯醚同源物建立的平衡表明,在市售多溴二苯醚产品的主要同源物中,传统的废水处理工艺和补给作业中处理过的废水的土壤渗透没有明显区别。在运行10-15年的过程中,在亚利桑那州图森的Sweetwater Recharge Facility的表层沉积物中测量了近百万分之一的PBDEs积累。沉积物中主要多溴二苯醚同系物损失的半衰期为数十年或更长时间。在20年的时间里,用生物固体改良的当地农业土壤显示出多溴二苯醚的积累量相似。多溴二苯醚在商业产品中的广泛使用,化合物的持久性和毒性表明,需要付出更多的努力才能更好地了解环境中多溴二苯醚的决定命运的过程。

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