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Investigating the Effects of Environmental Solutes on the Reaction Environment in Ice and at Ice Surfaces.

机译:研究环境溶质对冰和冰表面反应环境的影响。

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摘要

The reaction environments present in water, ice, and at ice surfaces are physically distinct from one another and studies have shown that photolytic reactions can take place at different rates in the different media. Kinetics of reactions in frozen media are measured in snow and ice prepared from deionized water. This reduces experimental artifacts, but is not relevant to snow in the environment, which contains solutes. We have monitored the effect of nonchromophoric (will not absorb sunlight) organic matter on the photolytic fate of the polycyclic aromatic hydrocarbons (PAHs) phenanthrene, pyrene, and anthracene in ice and at ice surfaces. Nonchromophoric organic matter reduced photolysis rates to below our detection limit in bulk ice, and reduced rates at ice surfaces to a lesser extent due to the PAHs partially partitioning to the organics present.;In addition, we have monitored the effect of chromophoric (will absorb sunlight) dissolved organic matter (cDOM) on the fate of anthracene in water, ice, and ice surfaces. cDOM reduced rates in all three media. Suppression in liquid water was due to physical interactions between anthracene and the cDOM, rather than to competitive photon absorbance. More suppression was observed in ice cubes and ice granules than in liquid water due to a freeze concentrating effect.;Sodium Chloride (NaCl) is another ubiquitous environmental solute that can influence reaction kinetics in water, ice, and at ice surfaces. Using Raman microscopy, we have mapped the surface of ice of frozen NaCl solutions at 0.02M and 0.6M, as well as the surface of frozen samples of Sargasso Sea Water. At temperatures above and below the eutectic temperature (-21.1°C). Above the eutectic, regions of ice and liquid water were observed in all samples. Liquid regions generally took the form of channels. Channel widths and fractional liquid surface coverage increased with NaCl concentration and temperature. Volume maps of the three samples at temperatures above the eutectic point, showed that liquid channels were distributed throughout the ice sample. Liquid fractions were similar at ice surfaces and in the bulk at depths of at least 80 microm.
机译:在水,冰和冰表面存在的反应环境在物理上是彼此不同的,研究表明,光解反应可以在不同的介质中以不同的速率发生。在由去离子水制备的雪和冰中,测量冷冻介质中的反应动力学。这样可以减少实验伪影,但与包含溶质的环境中的雪无关。我们已经监测了非发色(不吸收阳光)有机物对冰和冰表面多环芳烃(PAHs)菲,pyr和蒽的光解命运的影响。非生色有机物将散装冰中的光解速率降低至低于我们的检测极限,并且由于PAHs部分分配给存在的有机物而使冰面速率降低程度较小;此外,我们还监测了生色性(将吸收阳光)在水,冰和冰表面的蒽中溶解有机物(cDOM)。 cDOM降低了所有三种媒体的费率。液态水的抑制是由于蒽与cDOM之间的物理相互作用,而不是竞争性的光子吸收。由于冻结浓缩作用,在冰块和冰粒中比在液态水中观察到更多的抑制作用。氯化钠(NaCl)是另一种普遍存在的环境溶质,可影响水,冰和冰表面的反应动力学。使用拉曼显微镜,我们绘制了0.02M和0.6M的冷冻NaCl溶液的冰的表面以及Sargasso海水的冷冻样品的表面。在高于和低于共晶温度(-21.1°C)的温度下。在共晶上方,在所有样品中均观察到冰和液态水区域。液体区域通常采取通道的形式。通道宽度和部分液体表面覆盖率随NaCl浓度和温度的增加而增加。三个样品在高于共晶点的温度下的体积图表明,液体通道分布在整个冰样品中。在冰表面以及在至少80微米深度处的大部分中,液体部分相似。

著录项

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Atmospheric chemistry.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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