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GIS-based assessment of groundwater quality for drinking and irrigation purposes in central Iraq

机译:基于GIS的地下水质量评估伊拉克中部饮酒及灌溉用途

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摘要

In many parts of the world, groundwater is considered to be a key source of fresh water for both the domestic and non-domestic sectors. Where groundwater extraction is implemented, systems to monitor water quality must ensure a safe and sustainable supply. Over the years, Iraq has suffered from surface water quality and supply problems, necessitating groundwater extraction in many regions. This study investigates groundwater quality in a region of central Iraq around Babylon city, covering an area of 5119 km(2). The data gathered for this study included maps, well locations and water quality data and was sourced from the relevant governmental departments. A base map of the focussed region was initially prepared following data collection. The analysed water quality parameters were used as an attribute database to produce thematic maps using a geographical information system (GIS) environment. In this paper, the water quality index (WQI) and the irrigation water quality index (IWQI) were calculated for different groundwater samples using various parameters including the Electrical Conductivity (EC), Cl-, HCO3(-), Na+ and pH. Moreover, the groundwater suitability for irrigation purposes has been assessed using indices such as Kelly's ratio (KR), sodium absorption ratio (SAR), residual sodium carbonate (RSC), soluble sodium percentage (SSP) and permeability index (PI). Water quality index maps have been developed using the GIS environment. The obtained results reveal that the groundwater in the study location requires specific treatments to be usable.
机译:在世界的许多地方,地下水被认为是国内和非国内部门的淡水的关键来源。在实施地下水提取的情况下,监测水质的系统必须确保安全和可持续的供应。多年来,伊拉克遭受了地表水质和供应问题,需要在许多地区进行地下水提取。本研究调查了巴比伦市伊拉克中部地区的地下水质量,占地面积5119公里(2)。收集了本研究的数据包括地图,井位置和水质数据,并来自相关政府部门。在数据收集之后最初准备了聚焦区域的基础图。分析的水质参数用作属性数据库,以使用地理信息系统(GIS)环境生成专题贴图。本文使用包括电导率(EC),Cl-,HCO3( - ),Na +和pH的不同参数计算不同地下水样品的水质指数(WQI)和灌溉水质指数(IWQI)。此外,使用诸如凯利的比率(KR),钠吸收比(SAR),残留碳酸钠(RSC),可溶性钠百分比(SSP)和渗透性指数(PI)等索引来评估灌溉目的的地下水适用性。使用GIS环境开发了水质指数地图。获得的结果表明,研究位置的地下水需要可用的特定治疗方法。

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