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Utilization of a multi-parameter sensor network for online monitoring of the water quality in the lignite mining area of Kozani, Greece

机译:利用多参数传感器网络在线监测希腊Kozani褐煤开采区的水质

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摘要

The present study is focused on the examination and evaluation of environmental pressures on the aquatic resources of western Macedonia region (Greece) and particularly in Kozani lignite mines area, and on the development of a water quality monitoring system in the region, in order to identify potential impacts to the adjacent water resources. A multi-parametric sensor system was installed in three representative sites of the target area and the corresponding measured parameters included pH, temperature, conductivity, nitrate ions (NO_3~-), sulfate ions (SO_4~2-), and chloride ions (Cl~-) for a period of about 10 months. Additionally, certain other complementary physicochemical parameters (turbidity, hardness, COD, BOD_5. DO, TSS, NO_2~-, NH_4~+, Fe, and Al) were measured in selected grab samples, collected from certain points in the same area, in order to have an integrated view of water quality. The pH values ranged between 7.6 and 8.3 and remained quite stable in all three monitoring stations. Conductivity values ranged from 188 to 1,082 μS/cm; in addition, the wide NO_3~- content-observed only in Ag. Dimitrios Public Power Corporation Station-was attributed to the discharge of partially treated wastewater effluents. A detailed analysis of recorded measurements on a day-to-day level, especially for SO_4~2- and Cl~-values, revealed potential pollution incidents. Comparison with meteorological data of the area for the corresponding period did not show any significant correlation between measured concentrations and rainfall quantity, indicating a negligible effect of surface drainage on water quality.
机译:本研究的重点是检查和评估马其顿西部地区(希腊),尤其是科扎尼褐煤矿区的水生资源的环境压力,以及该地区水质监测系统的发展,以便确定对邻近水资源的潜在影响。在目标区域的三个代表性位置安装了多参数传感器系统,相应的测量参数包括pH,温度,电导率,硝酸根离子(NO_3〜-),硫酸根离子(SO_4〜2-)和氯离子(Cl 〜-)约10个月。此外,还从选定区域的同一区域某些点采集的抓取样品中测量了某些其他互补的理化参数(浊度,硬度,COD,BOD_5,DO,TSS,NO_2〜-,NH_4〜+,Fe和Al)。为了对水质有一个整体的了解。 pH值在7.6到8.3之间,并且在所有三个监测站中都保持稳定。电导率值范围为188至1,082μS/ cm;另外,仅在Ag中观察到宽的NO_3〜-含量。迪米特里奥斯公共电力公司站-被归因于部分处理的废水的排放。对每天记录的测量值(特别是SO_4〜2-和Cl〜值)进行的详细分析揭示了潜在的污染事件。与该地区同期的气象数据进行比较,未发现测得的浓度与降雨量之间有任何显着相关性,表明地表排水对水质的影响可忽略不计。

著录项

  • 来源
    《Desalination and water treatment》 |2013年第15期|2977-2986|共10页
  • 作者单位

    Environmental Centre (KEPE), Region of Western Macedonia, 1st km Ptolernaida-Kozani Road, Ptolemaida 50200, Greece,Department of Informatics and Telecommunications Engineering, University of Western Macedonia, Kozani 50100, Greece;

    Department of Informatics and Telecommunications Engineering, University of Western Macedonia, Kozani 50100, Greece;

    Department of Food Technology, Technological Education Institute of Thessaloniki, Thessaloniki 57400, Greece;

    Department of Environmental Engineering, Democritus University of Thrace, Xanthi 67100, Greece;

    Environmental Centre (KEPE), Region of Western Macedonia, 1st km Ptolernaida-Kozani Road, Ptolemaida 50200, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Environmental pressures; Water quality monitoring; Multi-parameter sensor network; Kozani lignite mines region; Aquatic resources pollution;

    机译:环境压力;水质监测;多参数传感器网络;科扎尼褐煤矿区;水生资源污染;

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