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Relevance of BFRs and thermal conditions on the formation pathways of brominated and brominated-chlorinated dibenzodioxins and dibenzofurans

机译:BFR和热条件与溴化和溴化氯化二苯并二恶英和二苯并呋喃的形成途径的相关性

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The widespread use of brominated flame-retarded products in the last two decades has resulted in an increasing presence of bromine in thermal processes such as waste combustion and accidental fires. Brominated and brominated-chlorinated dibenzodioxins and dibenzofurans (PBDDs/PBDFs, PXDDs/PXDFs) are micropollutants of concern arising from such processes. The present review aims to evaluate the relevance of these compound classes in actual thermal processes. Four categories of thermal processes are discussed in this respect according to their potential for PBDD/PBDF and PXDD/PXDF generation: thermal stress, pyrolysis/gasification, insufficient combustion conditions and controlled combustion conditions. Under thermal stress situations, as they may occur in production or recycling processes, PBDDs/ PBDFs precursors like polybrominated diphenylethers (PBDE) can have a relevant potential for PBDD/PBDF formation via a simple elimination. Under insufficient combustion conditions as they are present in, e.g. accidental fires and uncontrolled burning as well as gasification/pyrolysis processes, considerable amounts of PBDDs/PBDFs can be formed from BFRs, preferably via the precursor pathway. In contrast, under controlled combustion conditions, BFRs and PBDDs/PBDFs can be destroyed with high efficiency. The relevance of de novo synthesis of PXDDs/PXDFs is discussed for this condition. Providing a basis for the understanding of PXDD/PXDF formation in actual thermal processes, the present paper also summarises the formation pathways of brominated and brominated-chlorinated PXDDs/PXDFs from brominated flame retardants (BFRs) investigated during laboratory thermolysis experiments. Relevant mechanistic steps for PBDD/PBDF formation from brominated precursors are discussed including elimination reactions, condensation steps and debromination/hydrogenation reactions. In addition, chlorination/bromination and halogen exchange reactions are briefly discussed with respect for their relevance on the final distribution of PBDDs/PBDFs, mixed chlorinated PXDDs/PXDFs and PCDDs/PCDFs resulting from thermal processes.
机译:在过去的二十年中,溴化阻燃产品的广泛使用导致溴在诸如废物燃烧和意外火灾之类的热过程中的存在增加。溴化和溴代氯化的二苯并二恶英和二苯并呋喃(PBDDs / PBDFs,PXDDs / PXDFs)是此类过程中引起关注的微污染物。本综述旨在评估这些化合物类别在实际热过程中的相关性。在这方面,根据其产生PBDD / PBDF和PXDD / PXDF的潜力,讨论了四类热过程:热应力,热解/气化,燃烧条件不足和受控燃烧条件。在热应力情况下,由于它们可能在生产或回收过程中发生,因此PBDDs / PBDFs前体(如多溴二苯醚(PBDE))可以通过简单消除而具有形成PBDD / PBDF的潜力。在不充分的燃烧条件下,例如在意外的火灾和不受控制的燃烧以及气化/热解过程,可通过BFR(优选通过前体途径)形成大量PBDD / PBDF。相反,在受控燃烧条件下,BFR和PBDD / PBDF可以被高效地破坏。针对这种情况,讨论了从头合成PXDD / PXDF的相关性。为理解实际热过程中的PXDD / PXDF形成提供了基础,本文还总结了在实验室热解实验中研究的由溴化阻燃剂(BFR)形成的溴化和溴化氯化PXDDs / PXDFs的形成途径。讨论了由溴化前体形成PBDD / PBDF的相关机理步骤,包括消除反应,缩合步骤和脱溴/氢化反应。此外,简要讨论了氯化/溴化和卤素交换反应与热过程产生的PBDDs / PBDFs,混合氯化PXDDs / PXDFs和PCDDs / PCDFs最终分布的相关性。

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