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Geochemical evaluation of high-fluoride and nitrate groundwater: A Case Study from Qinkenpao area, Daqing, China

机译:高氟和硝酸盐地下水的地球化学评价-以大庆市秦垦报地区为例

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Groundwater quality problems have emerged in many geographical areas due to natural environmental processes and human intervention in the geosystems. Hydrogeochemical appraisal of fluoride contaminated groundwater in Qinkenpao area, Daqing State, China is carried out by means of groundwater quality investigations. Results obtained from aqueous speciation modeling using AQUACHEM 5.1 reveal that the groundwater is undersaturated with fluorite and with calcite. The samples also contained high concentrations of nitrate, which is a serious water quality issue due to the impact of human activity. Factor analysis modeling demonstrated that NO3? in the system are produced by anthropogenic sources. Strong correlation observed between NO3? and Ca2+, Mg2+, Cl? and F?, suggesting that they have the same origin. The factor analysis indicates that sodium plus nitrate bicarbonate groundwater have a high loading factor for fluoride, whereas that for calcium chloride and magnesium chloride groundwater is low. The plausible geochemical reactions in the area of study are dissolution of calcite and dolomite, carbon dioxide and sulphate minerals with ion exchange.
机译:由于自然环境过程和地球系统的人为干预,许多地理区域都出现了地下水质量问题。通过对地下水质量的调查,对中国大庆州秦垦报地区的氟化物污染地下水进行了水文地球化学评估。使用AQUACHEM 5.1从水形态分析中获得的结果表明,萤石和方解石使地下水欠饱和。样品中还含有高浓度的硝酸盐,由于人类活动的影响,这是一个严重的水质问题。因子分析建模表明NO3?在系统中是由人为来源产生的。观察到NO3之间有很强的相关性。和Ca2 +,Mg2 +,Cl?和F ?,表明它们具有相同的来源。因子分析表明,钠加硝酸盐碳酸氢盐地下水对氟化物的载量高,而氯化钙和氯化镁地下水的载量低。研究领域中可能发生的地球化学反应是方解石和白云石,二氧化碳和硫酸盐矿物的离子交换溶解。

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