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Physicochemical quality of Wadi Bounamoussa surface waters (Northeast of Algeria)

机译:Wadi Bounamoussa Surface Waters(阿尔及利亚东北部)的物理化学品

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Nitrogen is a nutrient that causes inland waters and marine environements’ eutrophication. The latter has become a worldwide environmental concern that considerably lessens the aquatic environments’ quality. This study has focused on physicochemical aspect of Wadi Bounamoussa water, by the diagnosis of the watercourse eutrophication. The river drains a watershed mainly characterized by agricultural activities based on irrigated crops and livestock of sheep and cattle. Fertilizers being Nitrogen inputs and livestock waste are potential pollution source. Nitrogen can get into the watershed's hydro-system in the form of minerals or organic. Temperature, pH, dissolved oxygen, NH4+, NO3?, NO2? were monitored in water samples taken in September and in December 2013 corresponding to the low season, and also in March and June 2014 corresponding to water high season. These samples were obtained from ten stations located along the river downstream sequence between El Cheffia dam and El Batah River mouth. Few observations have been made based on results obtained from the physicochemical analysis. Temperature, pH level, electrical conductivity as well as silica were significantly higher during low water periods comparing to high ones. It has been noticed from the analysis of various water sampling stations the presence of chloride ions with an increasing gradient from upstream to downstream, where it’s content has fluctuated between 30.52 mg·dm?3 and 9964.6 mg·dm?3. In conclusion, the presence of inorganic nitrogen is not considered as an eutrophication risk on the watercourse and its receiving environment.
机译:氮是一种导致内陆水域和海洋环境的富营养化的营养素。后者已成为全球环境问题,以减少水产环境的质量。本研究专注于WADI Bounamoussa水的物理化学方面,通过诊断水道富营养化。该河流排行了一个流域,主要是基于灌溉作物和绵羊和牛牲畜的农业活动。肥料是氮素投入和牲畜废物是潜在的污染源。氮气可以以矿物质或有机的形式进入流域的水力系统。温度,pH,溶解氧,NH4 +,NO3?,NO2?在2013年9月和2013年12月对应于淡季采取的水样中监测,并在2014年3月和2014年6月对应于水旺季。这些样品从位于El Cheffia Dam和El Batah河口之间的河流下游序列的十个站获得。基于从物理化学分析获得的结果进行了少数观察结果。在与高水位相比,温度,pH水平,电导率以及二氧化硅显着高得多。从各种水采样站的分析中,已经注意到各种水采样站的存在与从上游到下游的梯度的存在,其中含量在30.52mg·dm?3和9964.6mg·dm·3之间波动。总之,无机氮的存在不被视为水道的富营养化风险及其接受环境。

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