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首页> 外文期刊>Polymer Degradation and Stability >Impact of brominated flame retardants on the thermal degradation of high-impact polystyrene
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Impact of brominated flame retardants on the thermal degradation of high-impact polystyrene

机译:溴化阻燃剂对高抗冲聚苯乙烯热降解的影响

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摘要

The degradation of flame retarded high impact polystyrene (HIPS) was examined by thermogravimetry coupled with mass spectroscopy (TG-MS) and compared with that of polystyrene (PS). While the fate of the flame retardant draws a lot of attention, its impact on polymer degradation has been the focus of very little investigation. Temperature change was shown not to affect the product distribution of the thermal induced PS degradation. However, the presence of a brominated flame retardant resulted in changes in the HIPS degradation mechanism, with a larger variation of by-products formed and changes in the product distribution over the investigated temperature range. The early release of a large quantity of bromine radicals from the flame retardant caused the polymer backbone to break at various points (radical induced degradation). While the thermal degradation of PS was inhibited by the recombination of macro radicals (the cage-effect), the recombination of macro radicals induced by bromine radicals was prevented by the fast diffusion of HBr. Pure PS produced mainly styrene by the depolymerisation of the polymer chain after the formation of macro radicals and some oligomers from backbiting/P-scission. Flame retarded HIPS produced various oligomers, many of which were not produced from pure PS. It is assumed that after backbiting, the tertiary radical was terminated by recombination with other radicals, and dimers and trimers were formed from styrene during secondary reactions. One important source of hydrogen for this process was the formation of aromatic compounds, which kept the residual char small.
机译:通过热重分析结合质谱法(TG-MS)来检查阻燃高抗冲聚苯乙烯(HIPS)的降解情况,并与聚苯乙烯(PS)进行比较。尽管阻燃剂的命运备受关注,但其对聚合物降解的影响一直是很少研究的重点。显示温度变化不会影响热诱导PS降解的产物分布。但是,溴化阻燃剂的存在导致HIPS降解机理发生变化,在所研究的温度范围内,形成的副产物变化较大,产物分布也发生变化。阻燃剂中大量溴自由基的早期释放导致聚合物主链在各个点断裂(自由基引起的降解)。虽然PS的热降解受到大自由基的重组(笼型效应)的抑制,但HBr的快速扩散阻止了溴自由基诱导的大自由基的重组。纯PS主要是在形成大分子自由基和一些低聚物后(通过咬合/对位断裂)形成的聚合物链解聚而主要生产苯乙烯。阻燃HIPS可以生产各种低聚物,其中许多不是由纯PS生产的。假定在咬合后,叔自由基通过与其他自由基的重组而终止,并且在二次反应期间由苯乙烯形成了二聚体和三聚体。该过程中氢气的一个重要来源是形成芳香族化合物,从而使残留的焦炭含量保持很小。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2013年第1期|306-315|共10页
  • 作者单位

    Graduate School of Environmental Studies, Tohoku University, Aramaki Aza Aoba 6-6-07, Aoba-ku Sendai 980-8579, Japan;

    Graduate School of Environmental Studies, Tohoku University, Aramaki Aza Aoba 6-6-07, Aoba-ku Sendai 980-8579, Japan;

    Graduate School of Environmental Studies, Tohoku University, Aramaki Aza Aoba 6-6-07, Aoba-ku Sendai 980-8579, Japan;

    Graduate School of Environmental Studies, Tohoku University, Aramaki Aza Aoba 6-6-07, Aoba-ku Sendai 980-8579, Japan;

    Bio-Fuels Division (BFD), CSIR - Indian Institute of Petroleum (IIP), Dehradun 248005, India;

    Graduate School of Environmental Studies, Tohoku University, Aramaki Aza Aoba 6-6-07, Aoba-ku Sendai 980-8579, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    thermal degradation; radical induced degradation; cage-effect; macro radicals;

    机译:热降解;自由基引起的降解;笼效应宏观自由基;

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