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Integrated Environmental Quality Assessment of Kizilirmak River and its Coastal Environment

机译:Kizilirmak河及其沿海环境的综合环境质量评价

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Kizilirmak River receives substantial loads of nutrients, trace metals and other compounds, resulting from anthropogenic activities within its catchment. The main aims of this research were to evaluate spatial and seasonal trends in water discharge, nutrients and trace metals and also to compare data with water and sediment quality criteria and with certain quality indices such as water quality index (WQI), sediment quality index (SQI) and trophic state index (TSI), identifying the environmental pressures and assessing the impact of the loads to the coastal environment. Nine stations were sampled within the main stream of Kizilinnak River near to the Black Sea. Field measurements and routine laboratory water analysis were carried on the eight sampling stations seasonally. Wet sediment sample analyses were also performed for EC, pH, organic matter and moisture content within the range of 1.13-1.76 mS; 7.52-8.80; 1.41-4.60%; 18.92-33.65%, respectively. However, trace metal analyses including Cd, Ni and Pb were done by Atomic Absorption Spectroscopy (AAS) both on water and sediment samples with the total digestion methods. Since the analytical cost involved could be a limiting factor for river quality assessments in developing countries, certain quality indices were used in this study. For each type of indices calculations, different approaches from the literature were selected and compared. Calculated NSFWQI, WQI(new), and WQI(min.) values are in good agreement and the water quality of the river is considered at medium level. For the Derbent Dam of Kizilirmak River, two different trophic level index calculations have also the same results indicating eutrophic conditions where algal growth and blooms can occur. However, certain metal quality indices both for water and sediment measurements indicate that the river has medium quality of lead pollution which may be caused by automobile exhausts and urban storm run-off.
机译:由于其集水区的人为活动,基济马马克河吸收了大量的养分,微量金属和其他化合物。这项研究的主要目的是评估排水,养分和微量金属的空间和季节趋势,并将数据与水和沉积物质量标准以及某些质量指标(例如水质指数(WQI),沉积物质量指数( SQI)和营养状态指数(TSI),确定环境压力并评估负荷对沿海环境的影响。在黑海附近的Kizilinnak河干流中采样了9个站。季节性地在八个采样站进行了现场测量和常规实验室水分析。还对EC,pH,有机物和水分含量在1.13-1.76 mS范围内的湿沉积物样品进行了分析; 7.52-8.80; 1.41-4.60%;分别为18.92-33.65%。但是,使用总消解方法,通过原子吸收光谱法(AAS)对水和沉积物样品进行了痕量金属分析,包括Cd,Ni和Pb。由于所涉及的分析成本可能成为发展中国家河流水质评估的限制因素,因此本研究中使用了某些质量指标。对于每种类型的指数计算,选择和比较文献中的不同方法。计算得出的NSFWQI,WQI(新)和WQI(最小值)值吻合良好,并且将河流水质视为中等水平。对于Kizilirmak河的Derbent大坝,两种不同的营养水平指数计算也得出相同的结果,表明可能发生藻类生长和开花的富营养化条件。但是,用于水和沉积物测量的某些金属质量指标表明,河流的铅污染质量中等,可能是汽车尾气和城市暴雨径流引起的。

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