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Integrating Lithostratigraphic Units and GIS-Analysis Techniques to Modified Surface Water Quality Index

机译:结合岩性地层单位和GIS分析技术改进地表水水质指标

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The purpose of this study is to investigate the effect of using Bicarbonate and Calcium parameters as alternatives to the lithostratigraphic units covered the catchment area, on water quality index (WQI) values that have been implemented with GIS technique at Wadi Al-Arab Dam. The analyzed results (by WQI method) have been used to depict water quality for the two approaches. Based on physico-chemical parameters, the calculated values for WQI over the 3-year for study period were 169, 168, and 157, respectively. While the WQI values were 184, 183 and 172, respectively, as a result of incorporated Bicarbonate and Calcium parameters in WQI calculations that significantly contributed to increasing the WQI. The elevated values may be attributed to the influence of carbonate stone dissolution and mechanical erosion under weathering conditions that are prevalent during winter season in the catchment area. As a consequence of lithostratigraphic unites product and GIS technique integration and normalization processes, most of water quality ranks are good and only autumn season has poor water quality in the 2012 and 2013, while in 2014 it has good water quality in the same season. The WQI values increase in general trend from winter to autumn seasons during the study period that may be referred to outflow by daily consumption, evaporation rising, and seepage water. The analysis shows that the modified water quality values of the Wadi Al-Arab Dam Reservoir (WADR) vary after using Bicarbonate and Calcium parameters by constant value. Generally, the results signify that the WADR is not polluted based on the physical and chemical characteristics of water.
机译:这项研究的目的是调查使用碳酸氢盐和钙参数作为覆盖集水区的岩性地层学单位的替代方案对Wadi Al-Arab大坝通过GIS技术实施的水质指数(WQI)值的影响。分析结果(通过WQI方法)已用于描述两种方法的水质。根据理化参数,研究期间三年内的WQI计算值分别为169、168和157。虽然WQI值分别为184、183和172,但由于WQI计算中合并了碳酸氢盐和钙参数,从而大大提高了WQI。升高的值可能归因于集水区冬季普遍存在的风化条件下碳酸盐石溶解和机械侵蚀的影响。由于岩石地层学将产品与GIS技术集成和标准化过程相结合,因此大多数水质等级都很好,2012年和2013年只有秋季的水质较差,而2014年则同季水质良好。在研究期间,从冬季到秋季,WQI值总体呈上升趋势,这可以通过每日消费,蒸发量增加和渗水来表示流出。分析表明,在使用重碳酸盐和钙参数一个恒定值之后,瓦迪·阿拉伯-阿拉伯大坝水库(WADR)的修正水质值会发生变化。通常,结果表明基于水的物理和化学特性,WADR没有受到污染。

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