Suppr超能文献

聚合型溴化阻燃剂:它们是环境中新兴溴化芳香化合物的一个相关来源吗?

Polymeric brominated flame retardants: are they a relevant source of emerging brominated aromatic compounds in the environment?

作者信息

Gouteux Bruno, Alaee Mehran, Mabury Scott A, Pacepavicius Grazina, Muir Derek C G

机构信息

Aquatic Ecosystem Protection Research Division, Environment Canada, Burlington, ON, Canada.

出版信息

Environ Sci Technol. 2008 Dec 15;42(24):9039-44. doi: 10.1021/es8022336.

Abstract

A purge and trap method was used to study the release of brominated organic compounds from polymeric brominated flame retardants (BFRs), a relatively unknown class of flame retardant materials. Among the volatile brominated organics released, pentabromotoluene (PBTo), pentabromoethylbenzene (PBEB), and hexabromobenzene (HBB) were of particular interest because of their high potential to persist in the environment The impact of a thermal stress on the release of these compounds was assessed by applying different constant temperatures for one hour to a polymeric BFR sample. Release rates ranged between 22 +/- 2.1 ng g(-1) h(-1) for PBEB to 2480 +/- 500 ng g(-1) h(-1) for PBTo at room temperature. These rates of release reached 65 +/- 11 ng g(-1) h(-1) for PBEB and 42400 +/- 4700 ng g(-1) h(-1) for PBTo at 100 degrees C. This suggests that the compounding of thermoplastic polyesters done at high temperatures, up to 290 degrees C, could lead to the release of significant amounts of volatile brominated compounds in the environment when crude polymeric BFRs are used as flame retardants. To assess if this unsuspected source of volatile brominated compounds to the environment was relevant to support air concentrations in the Great Lakes area, air samples collected at Egbert (ON, Canada) were analyzed and PBTo, PBEB, and HBB were detected at low levels in some air samples (<0.01 to 0.09 pg/m3). As a second step, a Level III fugacity model was run using release rates of PBTo, PBEB, and HBB determined in this study. Results of the model indicated that prevailing PBEB and HBB air concentrations were not supported by their release from polymeric BFRs but by the use of these compounds as additive BFRs. However, these model predictions suffered from a lack of information on the actual use of polymeric BFRs. Hence, further work is needed to assess the release of potentially persistent brominated aromatic compounds from polymeric BFRs.

摘要

采用吹扫捕集法研究了聚合型溴化阻燃剂(BFRs)中溴化有机化合物的释放情况,聚合型溴化阻燃剂是一类相对鲜为人知的阻燃材料。在释放出的挥发性溴化有机物中,五溴甲苯(PBTo)、五溴乙苯(PBEB)和六溴苯(HBB)因其在环境中具有较高的持久性而备受关注。通过对聚合型BFR样品施加不同的恒定温度1小时,评估了热应力对这些化合物释放的影响。在室温下,释放速率范围为PBEB的22±2.1 ng g⁻¹ h⁻¹至PBTo的2480±500 ng g⁻¹ h⁻¹。在100℃时,这些释放速率分别达到PBEB的65±11 ng g⁻¹ h⁻¹和PBTo的42400±4700 ng g⁻¹ h⁻¹。这表明,当使用粗聚合型BFRs作为阻燃剂时,在高达290℃的高温下进行热塑性聚酯的复合可能会导致大量挥发性溴化化合物释放到环境中。为了评估这种挥发性溴化化合物对环境的意外来源是否与支持五大湖地区的空气浓度相关,对在加拿大安大略省埃格伯特采集的空气样本进行了分析,在一些空气样本中检测到了低水平的PBTo、PBEB和HBB(<0.01至0.09 pg/m³)。第二步,使用本研究中确定的PBTo、PBEB和HBB的释放速率运行三级逸度模型。模型结果表明,PBEB和HBB在空气中的普遍浓度并非由其从聚合型BFRs中的释放所支持,而是由这些化合物作为添加型BFRs的使用所支持。然而,这些模型预测缺乏关于聚合型BFRs实际使用情况的信息。因此,需要进一步开展工作来评估聚合型BFRs中潜在持久性溴化芳香化合物的释放情况。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验