冰与融水间同位素分馏的熔融实验研究

Q4 Engineering
Jeonghoon Lee, J. Ham, S. Hur
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引用次数: 1

摘要

冰和融水的同位素组成在基于冰芯的古气候研究和高山水文地质水资源研究中起着至关重要的作用。由于最近的气候变化,从冰到液态水的变化得到了更多的关注,因此需要更好地了解水的稳定同位素组成的变化。在这项工作中,设计并实施了一个融化实验,以研究冰的同位素组成如何随热源(如太阳辐射)的时间变化。我们进行了22小时的融化实验。258分钟后放电率达到最大值,由于固定热源,放电率逐渐下降。融水的同位素组成呈线性或二次多项式增长。氧和氢的线性关系斜率为6.8,小于全球大气水线的斜率(8),高于理论值(6.3)。当δ d或δ 18o增大时,氘过剩量减小,反之亦然,因为冰液交换关系的斜率小于8。这些发现和融化实验装置将对温带和极地地区稳定同位素和融化过程的研究作出有益的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study on Isotopic Fractionation between Ice and Meltwater by a Melting Experiment
Isotopic compositions of ice and meltwater play a very crucial role in paleoclimate studies based on ice cores and water resources research conducted in alpine hydrogeology. Better understanding of variations in the stable isotopic compositions of water is required since changes from ice to liquid water are gaining more attention due to recent climate change. In this work, a melting experiment was designed and conducted to investigate how the isotopic compositions of ice vary with time by heat sources, such as solar radiation. We conducted the melting experiment for 22 hours. The discharge rate rose to a maximum value after 258 minutes and gradually declined because we fixed the heat source. The isotopic compositions of meltwater increased linearly or to a second degree polynomial. The linear relationship between oxygen and hydrogen has a slope of 6.8, which is less than that of the Global Meteoric Water Line (8) and higher than a theoretical value (6.3). The deuterium excess decreased when δD or δ 18 O increases or vise versa since the slope of the relationship for ice-liquid exchange is less than 8. These findings and the apparatus of the melting experiments will make a helpful contribution to the studies of stable isotopes and the melting process in temperate and polar regions.
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来源期刊
Ocean and Polar Research
Ocean and Polar Research Engineering-Ocean Engineering
CiteScore
0.80
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0.00%
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