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Evaluation of water quality trends in the Maroon River Basin, Iran, from 1990 to 2010 by WQI and multivariate analyses

机译:利用WQI和多元分析法评估1990年至2010年伊朗栗色河流域的水质趋势

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This research aimed to investigate the long-term spatiotemporal changes of surface water quality of the Maroon River by implementing Water Quality Index (WQI) and multivariate statistical analyses such as non-metric multidimensional scaling and cluster analyses, as complementary tools to investigate spatial variations in water quality parameters and also delineate areas in terms of water quality conditions in the period under study. The other purposes of this study were to evaluate the physicochemical properties of the Maroon River water and assess the effects of each water quality parameter on the WQI values. Relationship between quality scale of hydrochemical parameters and the resulting WQI scores was determined employing linear regression analysis. Moreover, the suitability of water quality was evaluated for irrigation purposes using conventional indices, electrical conductivity (EC), sodium adsorption ratio (SAR), and percent sodium (Na%). The monitoring stations were placed in high and very high categories according to the assessment of irrigation water quality with EC. Considering WQI, the upper (S1, S2, and S4) and lower (S3, S5, and S6) monitoring stations of the Maroon River distributed in category C3 (high salinity) and C4-C5 (very high salinity), respectively. The findings of WQI presented an increasing trend from upstream toward downstream in the Maroon River. The findings of the linear regression analysis showed no significant correlation between WQI scores with pH and SO42- concentrations even though the relationship is weak. These results suggest that pH and SO42- concentrations could be the secondary driving parameters behind the variations in WQI scores. It can be inferred that the Maroon River water is appropriate for irrigation based on Na% and SAR. However, it also exhibits high EC. Therefore, for mitigating the adverse impacts of polluted water authors recommend multidimensional management practices such as transferable discharge permit programs in the study area.
机译:本研究旨在通过实施水质指数(WQI)和多变量统计分析(例如非度量多维标度和聚类分析)来研究栗色河地表水水质的长期时空变化,作为研究喀麦隆空间变化的补充工具。水质参数,并根据研究期间的水质状况描述区域。这项研究的另一个目的是评估栗色河水的理化特性,并评估每个水质参数对WQI值的影响。使用线性回归分析确定水化学参数质量等级与所得WQI得分之间的关​​系。此外,使用常规指标,电导率(EC),钠吸附率(SAR)和钠百分比(Na%)对用于灌溉目的的水质适应性进行了评估。根据EC对灌溉水质量的评估,监测站分为高等级和非常高等级。考虑到WQI,褐红河的上部(S1,S2和S4)和下部(S3,S5和S6)监测站分别分配为C3(高盐度)和C4-C5(极高盐度)类别。 WQI的发现呈现出从栗色河上游到下游的增加趋势。线性回归分析的结果表明,WQI分数与pH和SO42-浓度之间没有显着相关性,即使这种关系很弱。这些结果表明,pH和SO42-浓度可能是WQI得分变化背后的次要驱动参数。可以推断出栗红河水适合于基于Na%和SAR的灌溉。但是,它也表现出较高的EC。因此,为减轻污染水的不利影响,作者建议采用多维管理方法,例如研究区域的可转让排放许可计划。

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