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Assessment of water quality and hydrogeochemical processes of Salda alkaline lake (Burdur, Turkey)

机译:Salda碱性湖水质和水文地球化学过程的评估(土耳其布尔杜尔)

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Salda Lake is one of the rare alkaline lakes in the world. In this study, the major and trace element contents of the Salda Lake water were analysed in two periods. Lake water samples were taken at the surface, at 10 m and 20 m depths. The pH and EC values of the lake water varied from 9.08 to 9.34 and from 1690 to 2124 mu S/cm, respectively. The dominant water type of the lake water was Mg-CO3-HCO3. The high Mg content in the lake water originated from the weathering of ultramafic rocks which were located in the lake basin. All of the Ca, Cl and SO4 contents were high in surface samples in the dry period. The CO3 and HCO3 contents of the lake water did not show a change with depth and were constant in the wet period. The Mg, Na and K contents of the lake water increased depending on the depth in both periods, while CO3 and HCO3 contents showed depth-dependent increases only in the dry period. Weathering processes and anthropogenic inputs are the largest dissolution mechanisms that control the chemical structure of the lake water. The Salda Lake water is generally classified as class I in terms of T, DO, oxygen saturation, NH4 and NO2 parameters according to the SWQR and USEPA regulations. But, the water is in classes II, III, IV and V with respect to pH, EC, NO3, biochemical oxygen demand (BOD), oxygen saturation, As and Cr in the different periods. The increase in the As and Cr concentrations is geogenic in origin and is related to the lithological units that interact with the bottom and surroundings of the lake.
机译:萨尔达湖是世界上罕见的碱性湖泊之一。在本研究中,分两个阶段分析了萨尔达湖水的主要和微量元素含量。在地表深度10 m和20 m处采集湖水样品。湖水的pH和EC值分别在9.08至9.34和1690至2124μS/ cm之间变化。湖水的主要水类型为Mg-CO3-HCO3。湖水中高的Mg含量来自位于湖盆中的超镁铁质岩石的风化作用。在干燥时期,表面样品中所有的Ca,Cl和SO4含量都很高。湖泊水中的CO3和HCO3含量没有随深度变化,在湿润时期是恒定的。在两个时期中,湖水中的Mg,Na和K含量均随深度而增加,而CO3和HCO3含量仅在干旱时期才显示出深度依赖性。风化过程和人为输入是控制湖泊水化学结构的最大溶解机制。根据SWQR和USEPA法规,Salda湖水的T,DO,氧饱和度,NH4和NO2参数通常被分类为I类。但是,在不同时期,相对于pH,EC,NO3,生化需氧量(BOD),氧饱和度,As和Cr,水处于II,III,IV和V类。砷和铬浓度的增加是起源于地质的,并且与与湖底和周围环境相互作用的岩性单元有关。

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