Evaluation of Temporal and Spatial Variations of Water Quality Parameters in Zohreh River, Iran

M. Ravanbakhsh, Y. Tahmasebi Birgani, M. Dastoorpoor, K. Ahmadi Angali
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Abstract

Discriminant analysis (DA) and principal component analysis (PCA), as multivariate statistical techniques, are used to interpret large complex water quality data and assess their temporal and spatial variation in the basin of the Zohreh river. In this study, data sets of 16 water quality parameters collected from 1966 to 2013) in 4 stations (1554 observations for each parameter) were analyzed. PCA for data sets of Kheirabad, Poleflour, Chambostan and Dehmolla stations resulted in 4, 4, 4, and 3 latent factors accounting for 88.985%, 93.828%, 88.648%, and 88.68% of the total variance in water quality parameters, respectively. It is indicated that total dissolved solids (TDS), electrical conductivity (EC), chlorides (Cl−), sodium (Na), sodium absorption ratio (SAR), and %Na were responsible for water quality variations which are mainly related to natural and anthropogenic pollution sources including climate effects, gypsum, and salt crystals in the supratidal of Zohreh river delta, fault zones of Chamshir I and II, drainage of sugarcane fields, and domestic and industrial wastewaters discharge into the river. DA reduced the data set to only seven parameters (discharge, temperature, electrical conductivity, HCO3-, Cl-, %Na, and T-Hardness), affording more than 58.5% correct assignations in temporal evaluations and describing responsible parameters for large variations in the quality of the Zohreh river.
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伊朗Zohreh河水质参数的时空变化评价
判别分析(DA)和主成分分析(PCA)作为多元统计技术,用于解释大型复杂水质数据,并评估其在Zohreh河流域的时间和空间变化。在本研究中,分析了4个站点(每个参数1554个观测值)的16个水质参数(1966年至2013年收集)的数据集。Kheirabad、Polefour、Chambostan和Dehmolla站数据集的主成分分析结果显示,4、4、4和3个潜在因素分别占水质参数总方差的88.985%、93.828%、88.648%和88.68%。研究表明,总溶解固体(TDS)、电导率(EC)、氯化物(Cl−)、钠(Na)、钠吸收率(SAR)和%Na是造成水质变化的原因,这些变化主要与自然和人为污染源有关,包括气候效应、Zohreh河三角洲潮上带、Chamshir I和II断层带的石膏和盐晶体,甘蔗地的排水以及生活和工业废水排入河流。DA将数据集减少到只有七个参数(流量、温度、电导率、HCO3-、Cl-、%Na和T硬度),在时间评估中提供了超过58.5%的正确分配,并描述了导致Zohreh河水质大幅变化的主要参数。
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来源期刊
Avicenna Journal of Environmental Health Engineering
Avicenna Journal of Environmental Health Engineering Environmental Science-Health, Toxicology and Mutagenesis
CiteScore
1.00
自引率
0.00%
发文量
8
审稿时长
8 weeks
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