萨克斯科耶湖东西部盆地生态系统状况(克里米亚共和国)

V. Chaban, I. Rudneva, V. GuskovaN., V. G. Shaida
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Retaining dams and flood embankments erected in nearby ravines preclude desalination of the lake with flood and rain waters. Seawater is pumped to the lake through channels to preclude its drying. A quay is now actively constructed around the lake and will likely notably affect its hydrological and ecological conditions. The aim of the present study was the comparative analysis of the chemical and physical characteristics of the Eastern and Western basins of the Sakskoe Lake at the period of intensive building activity on their coasts at the summer period of 2019. Brine samples were collected at two tested sites in each of the lakes. Water salinity was measured by a PAL-06S LTA GO (Japan) refractometer and was expressed in ‰. The pH and Eh of the waters and oxygen dissolved in them were determined in the laboratory by an Expert-001 (Econix-Expert Moexa CoLtd, Russia) analyzer, with the use of appropriate Volta (Russia) selective electrodes. 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引用次数: 0

摘要

萨克斯科湖是克里米亚被研究得最透彻的水体。其治疗用的泥浆和盐水是用浴疗方法开采的。在两个世纪期间,当这个湖被人类使用时,它被水坝细分为七个水体,其中两个水体(东部和西部)现在被用于医疗目的,其他五个是保护用途。东部(目前已开发)盆地现在用于生产治疗用泥浆和盐水。盐碱地的底部覆盖着沉积物:上层是黑色的淤泥,下面是灰色、钢灰色、偶尔带蓝色的淤泥,这些淤泥被用作治疗泥浆。这个湖由地表水和地下水补给。在附近的峡谷中建立的挡土坝和防洪堤阻止了洪水和雨水对湖泊的淡化。海水通过管道被泵入湖中,以防止湖水干涸。目前,环湖码头正在积极建设,可能会对其水文和生态条件产生重大影响。本研究的目的是比较分析2019年夏季萨克斯科耶湖东部和西部盆地在其海岸密集建筑活动期间的化学和物理特征。在每个湖泊的两个测试地点收集了盐水样本。水的盐度用PAL-06S LTA GO(日本)折光计测定,单位为‰。在实验室使用Expert-001 (Econix-Expert Moexa CoLtd, Russia)分析仪,使用合适的Volta (Russia)选择电极,测定水的pH和Eh以及溶解在其中的氧。用分光光度法和原子吸收法测定离子浓度。采用标准显微方法研究了两种水体中青蒿种群的不同生活阶段。结果表明,西部盆地卤水中阳离子总含量为东部盆地卤水的1.5倍,分别为108.4 g/l和72.1 g/l。这些数值与西部盆地卤水的高盐度有直接关系。阴离子浓度变化趋势相同,西部盆地的阴离子浓度显著高于东部盆地(分别为193、14和125、41 g/l),这与水体生态系统形成的水文地质条件不同有关。另一方面,东部盆地卤水的pH、盐度和Eh均低于西部盆地,而溶解氧浓度则高于西部盆地。在湖的东部盆地的盐水中发现了阿尔忒弥亚的所有生活阶段,包括囊肿,nauplia和成虫,而在西部盆地只有囊肿。因此,根据这些结果,我们可以认为,在萨克斯科湖沿岸发生的伴随着密集建筑活动的人为过程对湖泊生态系统没有影响。为了了解这两个生态系统的变化及其可能的原因,需要进一步的监测研究,包括对两个盆地的盐水中离子浓度的测试。这对萨克科湖的优化管理和资源开发具有重要意义。
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ECOSYSTEMS STATE OF EASTERN AND WESTERN BASINS OF SAKSKOE LAKE (CRIMEAN REPUBLIC)
Sakskoe Lake is the most thoroughly studied water body in Crimea. Its therapeutic mud and brine are exploited by balneological treatment methods. During the two centuries, when the lake was used by humans, it was subdivided into seven water bodies by dams, with two of these bodies (Eastern and Western) being now utilized for medical purposes, and the other five being protective. The Eastern (currently exploited) basin is now used to produce therapeutic mud and brine. The bottoms of the saline basins are covered by sediments: an upper layer of black silt, which is underlain by gray, steel-gray, occasionally bluish silt, which is used as therapeutic mud. The lake is fed by surface and groundwaters. Retaining dams and flood embankments erected in nearby ravines preclude desalination of the lake with flood and rain waters. Seawater is pumped to the lake through channels to preclude its drying. A quay is now actively constructed around the lake and will likely notably affect its hydrological and ecological conditions. The aim of the present study was the comparative analysis of the chemical and physical characteristics of the Eastern and Western basins of the Sakskoe Lake at the period of intensive building activity on their coasts at the summer period of 2019. Brine samples were collected at two tested sites in each of the lakes. Water salinity was measured by a PAL-06S LTA GO (Japan) refractometer and was expressed in ‰. The pH and Eh of the waters and oxygen dissolved in them were determined in the laboratory by an Expert-001 (Econix-Expert Moexa CoLtd, Russia) analyzer, with the use of appropriate Volta (Russia) selective electrodes. Ions concentration was determined spectrophotometrically and by atomic absorption method. Various living stages of Artemia populations in two water bodies were studied according the standard microscopic methods. The obtained results demonstrated, that the total content of the cations in the brine of the Western basin was in 1,5-fold higher as compared with the data of the brine in the Eastern basin (108,4 and 71,2 g/l respectively). The values were directly correlated with the high salinity of the Western basin brine. The identical trend was shown for the anions concentration, which was significantly greatly in the Western basin related to Eastern one (193,14 and 125,41 g/l correspondingly), which was connected with the different hydrogeological conditions of the formation of the ecosystems of the tested water bodies. At the other hand, pH, salinity and Eh of the brine in the Eastern basin were lower than in the brine of the Western basin, while the concentration of dissolved oxygen was higher. In the brine of the Eastern basin of the lake all living stages of Artemia, including cysts, nauplia and adults were found, while in the Western basin only cysts were shown. Therefore, according the obtained results we could suggest, that anthropogenic processes which were taken place on the coasts of the Sakskoe Lake accompanied with the intensive building activity did not influence on the lake ecosystem. The further monitoring studies including the testing of the ions concentrations in the brine of two basins, Artemia populations state are required for the understanding the changes of the both ecosystems and the possible reasons of their changes. It is important for development of the optimization of the management of Sakskoe lake and its resources exploitation.
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