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希腊北部拉斯皮阿斯河的水量及水化学质量监测

Water quantity and hydrochemical quality monitoring of Laspias River, North Greece.

作者信息

Gikas Georgios D

机构信息

a Laboratory of Ecological Engineering and Technology , Department of Environmental Engineering, School of Engineering, Democritus University of Thrace , Xanthi , Greece.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2017 Dec 6;52(14):1312-1321. doi: 10.1080/10934529.2017.1357408. Epub 2017 Sep 28.

DOI:10.1080/10934529.2017.1357408
PMID:28956687
Abstract

The water quantity and quality of Laspias River, located in Xanthi Prefecture, Thrace, North Greece, are studied. A data collection program was designed at five stations along the main river course and its main tributary. Sampling frequency was about once every 10 days. Temperature (T), electrical conductivity (EC), pH, and dissolved oxygen were measured in situ simultaneously with discharge measurements. Moreover, water samples were collected and analyzed for the determination of nitrites, nitrates, ammonium, total phosphorus, biochemical oxygen demand, chemical oxygen demand, total suspended solids and alkalinity, according to standard methods. Anions (i.e., SO and Cl) and cations (i.e., Li, Na, Mg, and Ca) were determined using ion chromatography (Dionex ICS-3000 ion chromatograph). The results showed that there is an impact of point (e.g., wastewater treatment plant effluent and farms) and non-point (e.g., agricultural activities) sources of pollution on the EC values, and chloride, nitrogen and phosphorus concentrations in the river water. The trophic state of Laspias River, based on nutrient concentrations, was found eutrophic. Based on the Canadian Council of Ministers of Environment Water Quality Index, the river water quality ranged from "poor" to "marginal" category, indicating the need for management measures in order to improve it.

摘要

对位于希腊北部色雷斯地区克桑西州的拉斯皮阿斯河的水量和水质进行了研究。在主河道及其主要支流沿线的五个站点设计了一个数据收集程序。采样频率约为每10天一次。温度(T)、电导率(EC)、pH值和溶解氧在测量流量的同时进行现场测量。此外,还采集了水样并按照标准方法进行分析,以测定亚硝酸盐、硝酸盐、铵、总磷、生化需氧量、化学需氧量、总悬浮固体和碱度。使用离子色谱法(戴安ICS - 3000离子色谱仪)测定阴离子(即硫酸根和氯离子)和阳离子(即锂、钠、镁和钙)。结果表明,点源(如污水处理厂废水和农场)和非点源(如农业活动)污染源对河水的电导率值以及氯化物、氮和磷浓度有影响。根据营养物浓度,拉斯皮阿斯河的营养状态为富营养化。根据加拿大环境部长理事会水质指数,河水水质介于“差”到“边缘”类别之间,这表明需要采取管理措施来改善水质。

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