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Test chamber investigation of the volatilization from source materials of brominated flame retardants and their subsequent deposition to indoor dust

机译:测试室调查溴化阻燃剂的原料挥发及其随后沉积到室内粉尘中的情况

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摘要

Numerous studies have reported elevated concentrations of brominated flame retardants (BFRs) in dust from indoor micro-environments. Limited information is available, however, on the pathways via which BFRs in source materials transfer to indoor dust. The most likely hypothesized pathways are (a) volatilization from the source with subsequent partitioning to dust, (b) abrasion of the treated product, transferring microscopic fibers or particles to the dust (c) direct uptake to dust via contact between source and dust. This study reports the development and application of an in-house test chamber for investigating BFR volatilization from source materials and subsequent partitioning to dust. The performance of the chamber was evaluated against that of a commercially available chamber, and inherent issues with such chambers were investigated, such as loss due to sorption of BFRs to chamber surfaces (so-called sink effects). The partitioning of polybrominated diphenyl ethers to dust, post-volatilization from an artificial source was demonstrated, while analysis in the test chamber of a fabric curtain treated with the hexabromocyclododecane formulation, resulted in dust concentrations exceeding substantially those detected in the dust pre-experiment. These results provide the first experimental evidence of BFR volatilization followed by deposition to dust.
机译:大量研究报告称,室内微环境尘埃中溴化阻燃剂(BFR)的浓度升高。但是,关于原料中BFR转移到室内粉尘的途径的信息有限。最可能的假设途径是(a)从源中挥发出来,然后分配到粉尘上;(b)磨损处理过的产品,将微观纤维或颗粒转移到粉尘上(c)通过源和粉尘之间的接触直接吸收到粉尘上。这项研究报告了一个内部测试室的开发和应用,该室用于研究BFR从源材料中挥发出来并随后分配到粉尘中。相对于市售腔室的性能评估了腔室的性能,并且研究了这种腔室的固有问题,例如由于BFR吸附到腔室表面而引起的损耗(所谓的沉陷效应)。证明了多溴联苯醚在人为挥发后在灰尘中的分配,同时在用六溴环十二烷制剂处理过的织物帘的测试室中进行分析,结果表明灰尘浓度大大超过了在灰尘试验前检测到的浓度。这些结果提供了BFR挥发然后沉积到粉尘的第一个实验证据。

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