The chemical composition of ice and water under ice of Lake Onega (the case of Petrozavodsk Bay)

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY Led i Sneg-Ice and Snow Pub Date : 2018-09-26 DOI:10.15356/2076-6734-2018-1-417-428
A. Sabylina, T. Efremova
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引用次数: 1

Abstract

Data on the content of ions, nutrients and organic substance in snow on the ice as well as in the ice and water under ice in the Petrozavodsk Bay and Central part of Onega Lake (March 2017) as well as in the snow cover on the Petrozavodsk Bay shore (2008–2017) are presented. In areas of the Petrozavodsk Bay experiencing anthropogenic and natural impacts, chloride ions prevail among anions in crystallo-hydrates, while sulphate ions are prevalent at the exit from the Bay and in the central part of the lake (clean water). The water under ice has a bicarbonate-calcium composition. Among the inorganic forms of nitrogen compounds (NH4+, NO2, NO3) ammonium ions prevail in the ice(70%), while in snow and the water under ice the prevalent are nitrate ions and organic nitrogen. The content of nitrogen compounds and mineral and total phosphorus is increased in the upper layer of ice. Note, that chemical composition of ice cover is formed by both, a water under the ice and atmospheric precipitation. To determine intensity of involvement of dissolved substances to the ice in combination with ice-forming water, the coefficient of involvement Kv was used. As is shown by our studies, value of the involvement index Kv is individual for each chemical component, however a certain general regularity is observed. Thus, the not proportional relations between contents of ammonium and phosphate ions in ice and water under ice were noticed. The increased involvement indices of NH4+and РО43−into the ice from the water under ice seem to be due to the high rate of migration of these ions together with detachment of them from organic matter molecules.
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奥涅加湖冰和冰下水的化学成分(以彼得罗扎沃茨克湾为例)
介绍了彼得罗扎沃茨克湾和奥涅加湖中部(2017年3月)以及彼得罗扎沃茨克湾沿岸积雪(2008-2017年)冰面上的雪、冰下的冰和水中的离子、营养物质和有机物含量的数据。在彼得罗扎沃茨克湾受到人为和自然影响的地区,氯离子在晶体水合物中的阴离子中占主导地位,而硫酸盐离子则普遍存在于海湾出口和湖中央部分(清洁水)。冰下的水由碳酸氢盐和钙组成。在无机形式的氮化合物(NH4+、NO2、NO3)中,冰中以铵离子为主(70%),雪和冰下水中以硝酸盐离子和有机氮为主。在冰的上层,氮化合物、矿物和总磷的含量增加。请注意,冰盖的化学成分是由冰下的水和大气降水两者共同形成的。为了确定溶解物质与冰形成水结合对冰的介入强度,使用了介入系数Kv。我们的研究表明,每一种化学成分的卷入指数Kv的值是不同的,但有一定的普遍规律。由此可见,冰和冰下水的铵离子和磷酸离子的含量不是成比例的关系。NH4+和РО43−从冰下的水中进入冰的参与指数的增加似乎是由于这些离子的高迁移率以及它们与有机物分子的分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Led i Sneg-Ice and Snow
Led i Sneg-Ice and Snow GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.50
自引率
42.90%
发文量
11
审稿时长
8 weeks
期刊介绍: The journal was established with the aim of publishing new research results of the Earth cryosphere. Results of works in physics, mechanics, geophysics, and geochemistry of snow and ice are published here together with geographical aspects of the snow-ice phenomena occurrence in their interaction with other components of the environment. The challenge was to discuss the latest results of investigations carried out on Russia’s territory and works performed by Russian investigators together with foreign colleagues. Editorial board works in collaboration with Glaciological Association that is professional community of specialists in glaciology from all republics of the Former Soviet Union which are now new independent states. The journal serves as a platform for the presentation and discussion of new discoveries and results which help to elucidate the state of the Earth’s cryosphere and the characteristics of the evolution of the snow-ice processes and phenomena under the current conditions of rapid climate change.
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