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冻结海冰和氯化钠盐水中的折射率测量

Refractive-index measurements in freezing sea-ice and sodium chloride brines.

作者信息

Maykut G A, Light B

出版信息

Appl Opt. 1995 Feb 20;34(6):950-61. doi: 10.1364/AO.34.000950.

Abstract

Sea ice contains numerous pockets of brine and precipitated salts whose size and number distributions change dramatically with temperature. Theoretical treatment of scattering produced by these inclusions requires information on refractive-index differences among the brine, salts, and surrounding ice. Lacking specific data on refractive-index variations in the brine, we carried out laboratory measurements in freezing-equilibrium solutions between -2 and -32 °C. Index values at 589 nm increased from 1.341 to 1.397 over this temperature range, corresponding to salinities of 35 and 240 parts per thousand (ppt). Spectral data were also taken at 50-nm intervals between 400 and 700 nm in nonequilibrium solutions with salinities ranging up to 300 ppt. Spectral gradients increased slightly with salinity but showed no measurable dependence on temperature between +12 and -16 °C. The Lorentz-Lorenz equation, combined with data on density, molar refractivities, and brine composition, yielded temperature-dependent index predictions in excellent agreement with the experimental data. Similar index and density measurements in freezing sodium chloride brines yielded values nearly identical to those in the sea-ice brines. The absence of mirabilite crystals in sodium chloride ice, however, will cause it to have higher transmissivity and lower reflectivity than sea ice above -22 °C.

摘要

海冰包含大量盐水囊和沉淀盐,其大小和数量分布会随温度发生显著变化。对这些内含物产生的散射进行理论处理需要有关盐水、盐和周围冰之间折射率差异的信息。由于缺乏关于盐水中折射率变化的具体数据,我们在-2至-32°C的冷冻平衡溶液中进行了实验室测量。在此温度范围内,589nm处的折射率值从1.341增加到1.397,对应于千分之35和240的盐度(ppt)。在盐度高达300ppt的非平衡溶液中,还在400至700nm之间以50nm的间隔采集了光谱数据。光谱梯度随盐度略有增加,但在+12至-16°C之间未显示出对温度的可测量依赖性。洛伦兹-洛伦茨方程与密度、摩尔折射率和盐水成分数据相结合,得出的温度相关折射率预测与实验数据高度吻合。在冷冻氯化钠盐水中进行的类似折射率和密度测量得出的值与海冰盐水中的值几乎相同。然而,氯化钠冰中没有芒硝晶体,这将使其在-22°C以上具有比海冰更高的透射率和更低的反射率。

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