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Freeze-lnduced Formation of Bromine/Chlorine Interhalogen Species from Aqueous Halide Ion Solutions

机译:冻结诱导卤化物离子溶液中溴/氯间卤物种的形成

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摘要

Both gaseous bromine and bromine chloride have been monitored in polar environments and implicated in the destruction of tropospheric ozone. The formation mechanisms operating for these halogen compounds have been suggested previously. However, few laboratory studies have been performed using environmentally relevant concentrations of bromide and chloride ions in polar ice mimics. In aqueous solutions held at room temperature, previous studies have shown that the major product is the Cl_2Br~- trihalide ion when solutions of bromate, hydrochloric acid, and bromide ions are left to equilibrate. In contrast, the results of the cryochemical experiments presented here suggest that the dibromochloride ion (BrBrCl~-) is the major product when solutions of bromate, sulfuric acid, bromide, and chloride ions are frozen. Such a species would preferentially release bromine to the gas phase. Hence, similar halide starting materials form structurally different trihalide ions when frozen, which are capable of releasing differing active halogens, BrCl and Br_2, to the gas-phase. This is a potentially important finding because Br_2 is photolyzed more readily and to longer wavelengths than BrCl and therefore the efficiency in forming products that can lead to ozone destruction in the atmosphere would be increased. Evidence is provided for the mechanism to occur by means of both the freeze-concentration effect and the incorporation of ions into the growing ice phase.
机译:气态溴和氯化溴均已在极性环境中进行监测,并涉及对流层臭氧的破坏。先前已经提出了用于这些卤素化合物的形成机理。但是,极少有实验室研究使用极性冰模拟物中与环境有关的溴离子和氯离子浓度进行的。在室温下的水溶液中,先前的研究表明,当使溴酸盐,盐酸和溴化物离子的溶液保持平衡时,主要产物是Cl_2Br_-三卤化物离子。相反,此处介绍的冷冻化学实验结果表明,当溴酸盐,硫酸,溴化物和氯离子的溶液被冷冻时,二溴氯化物离子(BrBrCl〜-)是主要产物。这样的物质将优先向气相释放溴。因此,相似的卤化物原料在冷冻时形成结构上不同的三卤化物离子,其能够将不同的活性卤素BrCl和Br_2释放到气相中。这是一个潜在的重要发现,因为与BrCl相比,Br_2更容易被光解,波长更长,因此形成可导致大气中臭氧破坏的产品的效率将会提高。通过冻结浓缩作用和将离子掺入到生长的冰相中,为该机理的发生提供了证据。

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  • 来源
    《Environmental Science & Technology》 |2012年第19期|p.10589-10596|共8页
  • 作者单位

    Department of Chemistry, University College Cork, Cork, Ireland;

    Department of Chemistry, University College Cork, Cork, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 14:02:55

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