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Identification of nitrates origin in Limia river basin and pollution-determinant factors

机译:鉴定硝酸盐河流域硝酸盐源性与污染决定因子

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摘要

The aim of this work was to evaluate monthly the presence of pollutants, especially nitrates, in the Limia river and tributaries in order to evaluate the quality of surface water samples during 2018. An isotopic analysis (delta N-15 and delta O-18) of nitrates was also done with the order to explain the primary sources of nitrate contamination. This area is characterised by intensive use of the soil for potato production over the past 50 years, and has a high livestock load, mainly of pigs. Obtained results show that, in general, water pollution in this area is low with 81.5 % of the samples having all their physicochemical parameters within the category of very good or good quality according to the water quality thresholds. The spatial and temporal distribution of nitrates has shown high variability in the interaction between various factors, such as season and sampling area. Values exceeding 25 mg L-1 of nitrates (moderate quality) were observed in seven samples taken in the Antela lagoon area. Besides, it was observed a relationship between the accumulated rainfall and the concentration of nitrates in surface waters due to the dragging effect from the surrounding land. According to the isotopic results, the primary source of nitrates seems to be the organic inputs to the soil through livestock waste. By applying the discriminant function method, nitrates concentration was correlated positively with the conductivity and negatively with the data of alkalinity and chloride content in waters. Moreover, with principal component analysis, it was possible to separate the water samples by their content in nitrates and other measured contaminants or chemical parameters.
机译:这项工作的目的是评估每月污染物,尤其是硝酸盐,柠檬河和支流的存在,以评估2018年的地表水样的质量。同位素分析(Delta N-15和Delta O-18)还使用命令来解释硝酸盐污染的主要来源的硝酸盐。该地区的特点是在过去50年内密集使用土壤用于土豆生产,并具有高牲畜载荷,主要是猪。得到的结果表明,一般而言,该地区的水污染率低81.5%的样品,其中在根据水质阈值的情况下具有非常好的或良好的品质范畴内的所有物理化学参数。硝酸盐的空间和时间分布在各种因素之间的相互作用中显示出高度的变化,例如季节和采样区域。在Antela Lagoon地区占用的七个样品中观察到超过25mg L-1的硝酸盐(中等质量)。此外,由于从周围土地拖曳效应,观察到表面水中累积降雨与硝酸盐浓度之间的关系。根据同位素结果,硝酸盐的主要来源似乎是通过牲畜废物对土壤的有机投入。通过施加判别函数方法,硝酸盐浓度随着导电性和碱性与水中的碱度和氯含量的数据负相关。此外,利用主成分分析,可以通过硝酸盐和其他测量的污染物或化学参数将水样品分离。

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