金钟湾海岸(乔治王岛,南极海域)四个退缩冰川前田的水化学特征:金属和类金属的不同来源

IF 3.7 2区 农林科学 Q2 ENVIRONMENTAL SCIENCES
Joanna Potapowicz, Krystyna Kozioł, Joanna Plenzler, Robert Józef Bialik, Justyna Dudek, Marcin Frankowski, Anetta Zioła‐Frankowska, Sara Lehmann‐Konera, Żaneta Polkowska
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引用次数: 0

摘要

本研究考察了地质、海洋和人为来源对南极乔治国王岛四个冰川(生态、斯芬克斯、塔和风)前区的金属和类金属浓度的影响。在水文季节(2021年12月至2022年2月的南部夏季)的开始和结束时采集水样,而在季节开始时从剩余的积雪中采集雪样。研究区位于主要由玄武岩和安山岩组成的Llano Point和Zamek组之下,由于冰川退缩放大了活跃的风化过程,显示出铁、铝和镁等元素的重要地质贡献。该研究强调了气象条件变化引起的温度和降水增加如何加速沉积物侵蚀和风化,从冰川和融雪中调动金属和类金属。所收集样品中显著的Cr、V和Ba浓度与当地的地质基质一致。统计分析(Kruskal-Wallis方差分析)确定了冰川前田之间Mo和Ba水平的显著差异,这与地质影响是一致的,因为这些元素在当地玄武岩和安山岩基岩中以不同的浓度出现。还观察到季节变化,特别是Mg和K离子,表明融水动力学影响整个季节的元素动员。此外,塔冰川的向东暴露解释了Zn和Cd浓度较高,表明大气沉积是一个促成因素。这项研究强调了地质、气候和大气过程之间复杂的相互作用,说明了地质源和冰冻圈退化如何影响南极冰川前田的化学景观。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrochemical Characteristics of Four Retreating Glacier Forefields Off the Coast of Admiralty Bay (King George Island, Maritime Antarctic): Diverse Sources of Metals and Metalloids
This study examines the impact of geological, marine and anthropogenic sources on metal and metalloid concentrations in the forefields of four glaciers (Ecology, Sphinx, Tower and Windy) on King George Island, Antarctic. Water samples were collected at the beginning and end of the hydrological season (austral summer, December 2021 to February 2022), while snow samples were taken from the remaining snow cover at the start of the season. The study area, underlain by the Llano Point and Zamek formations—comprised mainly of basalt and andesite—reveals significant geological contributions of elements such as Fe, Al and Mg due to active weathering processes amplified by glacial retreat. The research highlights how meteorological condition change‐induced temperature and precipitation increases accelerate sediment erosion and weathering, mobilising metals and metalloids from glaciers and snowmelt. Significant concentrations of Cr, V and Ba in collected samples align with the local geological substratum. Statistical analyses (Kruskal–Wallis ANOVA) identified notable differences in Mo and Ba levels between glacier forefields, consistent with geological influences, as these elements occur in varying concentrations within the local basaltic and andesitic bedrock. Seasonal variations were also observed, particularly for Mg and K ions, indicating that meltwater dynamics influence element mobilisation throughout the season. Furthermore, Tower Glacier's eastward exposure explains the higher concentrations of Zn and Cd, suggesting atmospheric deposition as a contributing factor. This study underscores the complex interactions between geological, climatic and atmospheric processes, illustrating how geogenic sources and cryosphere degradation influence the chemical landscape of Antarctic glacier forefields.
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来源期刊
Land Degradation & Development
Land Degradation & Development 农林科学-环境科学
CiteScore
7.70
自引率
8.50%
发文量
379
审稿时长
5.5 months
期刊介绍: Land Degradation & Development is an international journal which seeks to promote rational study of the recognition, monitoring, control and rehabilitation of degradation in terrestrial environments. The journal focuses on: - what land degradation is; - what causes land degradation; - the impacts of land degradation - the scale of land degradation; - the history, current status or future trends of land degradation; - avoidance, mitigation and control of land degradation; - remedial actions to rehabilitate or restore degraded land; - sustainable land management.
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