康斯峡湾淡水来源和颗粒物排放追踪:水同位素方法的启示

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-11-04 DOI:10.3389/fmars.2024.1426793
Ling Fang, Eun Jin Yang, Junho Yoo, Minkyoung Kim
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引用次数: 0

摘要

北极峡湾本身就容易受到全球变暖的影响,特别是因为冰川融化导致大量淡水流入。本研究收集了康斯峡湾的降水、河水、地表冰和海水样本,以确定淡水的主要来源。双水同位素(δ18O 和 δD)结果和温度-盐度剖面显示,峡湾水的淡水含量在 0% 到 7% 之间。此外,双水同位素分析还确定了表层水和深层水的不同淡水来源。浊度剖面图证实了与地表径流和冰川下泄有关的颗粒物排放量的变化。我们的研究强调了水同位素分析在阐明峡湾系统内水文过程方面的敏感性,并证明了其在调查融水对北极生物过程的影响方面的潜力。
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Tracing freshwater sources and particle discharge in Kongsfjorden: insights from a water isotope approach
Arctic fjords are inherently vulnerable to global warming, particularly because of the substantial freshwater influx resulting from the melting of glaciers. In this study, precipitation, river water, surface ice, and seawater samples from Kongsfjorden were collected to identify the main sources of freshwater. The dual water isotope (δ18O and δD) results and temperature–salinity profiles revealed that between 0% and 7% freshwater contributed to the fjord’s water. Furthermore, different freshwater sources for surface and deep water were identified by the dual water isotope analysis. Turbidity profiles confirmed the alter in particle discharge associated with surface runoff and subglacial discharge. Our study highlighted the sensitivity of water isotope analysis in elucidating the hydrological processes within the fjord system and demonstrated its potential for investigating the impact of meltwater on biological processes in the Arctic.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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