首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Different photolysis kinetics at the surface of frozen freshwater vs. frozen salt solutions
【24h】

Different photolysis kinetics at the surface of frozen freshwater vs. frozen salt solutions

机译:冷冻淡水表面的不同光解动力学与冷冻盐溶液

获取原文
           

摘要

Reactions at air-ice interfaces can proceed at very different rates than those in aqueous solution, due to the unique disordered region at the ice surface known as the quasi-liquid layer (QLL) . The physical and chemical nature of the surfacial region of ice is greatly affected by solutes such as sodium halide salts. In this work, we studied the effects of sodium chloride and sodium bromide on the photolysis kinetics of harmine, an aromatic organic compound, in aqueous solution and at the surface of frozen salt solutions above the eutectic temperature. In common with other aromatic organic compounds we have studied, harmine photolysis is much faster on ice surfaces than in aqueous solution, but the presence of NaCl or NaBr – which does not affect photolysis kinetics in solution – reduces the photolysis rate on ice. The rate decreases monotonically with increasing salt concentration; at the concentrations found in seawater, harmine photolysis at the surface of frozen salt solutions proceeds at the same rate as in aqueous solution. These results suggest that the brine excluded to the surfaces of frozen salt solutions is a true aqueous solution, and so it may be possible to use aqueous-phase kinetics to predict photolysis rates at sea ice surfaces. This is in marked contrast to the result at the surface of frozen freshwater samples, where reaction kinetics are often not well-described by aqueous-phase processes.
机译:由于称为准液体层(QLL)的冰表面上的独特无序区域,在空气冰界面处的反应可以以比水溶液的唯一无序区域的速率非常不同。冰的表面积的物理和化学性质受卤化钠盐等溶质的大大影响。在这项工作中,我们研究了氯化钠和溴化钠对大鼠芳香族有机化合物,水溶液中的光解动力学的影响和在共晶温度的冷冻盐溶液的表面上。与我们所研究的其他芳香族有机化合物共同,在冰表面上比在水溶液中更快,但是NaCl或NaBr的存在 - 这不会影响溶液中的光解动力学 - 降低冰上的光解率。随着盐浓度的增加,速率单调减少;在海水中发现的浓度下,冷冻盐溶液表面的大鼠光解以与水溶液相同的速率进行。这些结果表明,除了冷冻盐溶液表面之外的盐水是真正的水溶液,因此可以使用水相动力学来预测海冰表面的光解率。这与冷冻淡水样品表面的结果标记对比,其中反应动力学通常不能通过水相方法进行很好地描述。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号