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首页> 外文期刊>Journal of Science and Technology of Agriculture and Natural Resources >Evaluating Quality of Ajabshir Groundwater Resources Based on Groundwater Quality Indicator (GQI) and Geographical Information System
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Evaluating Quality of Ajabshir Groundwater Resources Based on Groundwater Quality Indicator (GQI) and Geographical Information System

机译:基于地下水质量指标(GQI)和地理信息系统的阿贾布尔地下水资源质量评价。

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Groundwater quality evaluation is very necessary to provide drinking water. Groundwater excessive consumption can cause subsidence and penetration of saline groundwater into freshwater aquifers in Ajabshir Plain, on the Urmia lake margin. The main goal of the current project was to evaluate the groundwater quality by employing the qualitative indices of groundwater and GIS. Ten parameters of 15 wells including EC, TDS, total hardness as well as the concentration of Ca~(++), Na~(+), Mg~(++), K~(+), SO_(4)~(--), HCO_(3)~(-) and Cl~(-) were analyzed. At first, the maps of parameters concentration were prepared by the kiriging method. Then based on WHO drinking water standards, the maps were standardized and ranked for drawing the maps of quality indices. The results showed that quality index changes were in the range of moderate (61) to acceptable (81). Removing the single map method of sensitivity analysis detected the quality index was more sensitive to the K~(+) parameter. Finally, the quality index from the eastern north to the western south of Ajabshir Plain and the other areas was ranked in the acceptable and moderate classes, respectively.
机译:地下水质量评估对于提供饮用水非常必要。地下水的过度消耗会导致盐分地下水的沉陷和渗透到Urmia湖边缘的Ajabshir平原的淡水含水层中。当前项目的主要目标是通过利用地下水和GIS的定性指标来评估地下水质量。 EC,TDS,总硬度以及Ca〜(++),Na〜(+),Mg〜(++),K〜(+),SO_(4)〜( -),HCO_(3)〜(-)和Cl〜(-)进行了分析。首先,通过基里格法绘制参数浓度图。然后根据世界卫生组织的饮用水标准,对地图进行标准化和排名,以绘制质量指数图。结果表明,质量指数的变化范围为中度(61)到可接受(81)。删除敏感性分析的单一图谱方法后,检测到质量指数对K〜(+)参数更加敏感。最后,从阿贾布希尔平原的北部北部到南部南部以及其他地区的质量指数分别被评为可接受和中等等级。

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