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Fate analysis of polybrominated diphenyl ethers in anaerobic digester sludge.

机译:厌氧消化池污泥中多溴联苯醚的去向分析。

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摘要

Polybrominated diphenyl ethers (PBDEs) are widely used flame retardants primarily used in the electronics, plastics and textiles industries. Upon use in the so-called "technosphere", many PBDEs eventually pass through wastewater treatment plants (WWTPs), one of the primary interfaces between the technosphere and the aquatic environment. Although several studies have established the majority of influent PBDEs end up in the biosolids fraction, knowledge of the fate of PBDEs in specific treatment stages (particularly those involved in biosolids stabilization) is still lacking. Given that arguments in favor of continued BDE-209 use hinge on its non-toxicity, it is imperative that we understand whether BDE-209 can be debrominated to more toxic and bioavailable congers in WWTPs. Our focus is on the reductive debromination potential of PBDEs in sludge from the Calumet Water Reclamation Plant (CWRP) treating both industrial and domestic waste from Chicago; and Woodridge-Greene Valley waste treatment facility (WGV) treating primarily domestic waste from Dupage County, Illinois.;A method was developed to extract, cleanup and quantify 43 BDE congeners ranging from di- to deca-BDEs. The field phase of this research was comprised of detailed analysis of PBDEs and relevant biosolids parameters throughout the sludge treatment train of both plants. Results indicate that BDE-209 and other BDE congeners are significantly transformed in the thermophilic digester of the WGV, but not in the standard rate digester at CWRP.;Laboratory studies included determination of the potential and rate of reductive debromination in controlled studies using a variety of inhibitors and biostimulation agents with potential "haloprimers" to confirm the WGV results. These laboratory data were used to suggest possible pathway and kinetic rates of reductive debromination in the digester and at other stages in sludge processing. Based upon our results, it has been confirmed that BDE-209 is reductively debrominated to lower brominated congeners under thermophilic digestion. These results suggest the possibility of increased BDE bioavailability, and even toxicity given the known characteristics of the lesser brominated BDE congeners. Finally, debromination kinetic data generated from this study allows predictions to be made of BDE dynamics in various digester formulations using a pseudo-first order kinetic regime.
机译:多溴二苯醚(PBDEs)是广泛使用的阻燃剂,主要用于电子,塑料和纺织工业。一旦在所谓的“技术圈”中使用,许多多溴二苯醚最终会通过废水处理厂(WWTP),废水处理厂是技术圈与水生环境之间的主要接口之一。尽管已有几项研究确定了大多数流入的多溴二苯醚最终都存在于生物固体成分中,但仍缺乏对特定处理阶段(尤其是那些涉及生物固体稳定的处理)中多溴二苯醚命运的了解。鉴于支持继续使用BDE-209的论点取决于其无毒,因此我们必须了解BDE-209是否可以在污水处理厂中脱溴成更具毒性和可生物利用的凝结剂。我们的重点是处理来自芝加哥的卡卢梅特水回收厂(CWRP)的污泥中多溴二苯醚的还原脱溴潜力;伍德利奇-格林河谷废物处理设施(WGV)主要处理来自伊利诺伊州杜佩奇县的生活垃圾。开发了一种方法来提取,净化和量化从二溴到十溴二苯醚的43种BDE同系物。这项研究的田间阶段包括对两种植物的污泥处理过程中多溴二苯醚和相关生物固体参数的详细分析。结果表明BDE-209和其他BDE同系物在WGV的嗜热消化池中发生了显着转化,但在CWRP的标准速率消化池中未发生显着变化。;实验室研究包括在对照研究中使用多种方法确定还原脱溴的潜力和速率抑制剂和生物刺激剂与潜在的“ haloprimers”,以确认WGV结果。这些实验室数据被用来建议在消化池和污泥处理其他阶段还原脱溴的可能途径和动力学速率。根据我们的结果,已经证实在高温消化下,BDE-209被还原脱溴为较低溴化的同类物。这些结果表明,鉴于溴化程度较低的BDE同系物的已知特征,BDE的生物利用度可能会增加,甚至毒性也可能增加。最后,从这项研究中获得的脱溴动力学数据允许使用拟一级动力学方案对各种蒸煮器配方中的BDE动力学进行预测。

著录项

  • 作者

    Jayaraj, Jayashree.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Engineering Civil.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遥感技术;
  • 关键词

  • 入库时间 2022-08-17 11:38:19

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