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首页> 外文期刊>Journal of Water and Land Development >Thermo-mineral waters of Hammam Meskoutine (north-east Algeria): Composition and origin of mineralization
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Thermo-mineral waters of Hammam Meskoutine (north-east Algeria): Composition and origin of mineralization

机译:哈曼·梅斯库丁(阿尔及利亚东北部)的热矿泉水:成矿成分和成因

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The extreme north-eastern Algeria, in particular the Guelma city conceals thermal springs, whose waters circulating at great depths allow the rain-waters to warm up (according to the average geothermal gradient of 1?°C per 33 m) and to acquire a mineralization which depends on the traversed rock. The goal of this research work was to determine mineralization origin of the thermo-mineral waters of Hammam Meskoutine (Algerian N-E). A hydro-chemical study involved analyses of a number of physical and chemical parameters of waters such as temperature, hydrogen potential, electrolytical conductivity, Cl-, SO4 2-, HCO3 -, Ca2+, Mg2+, K+ and Na+. The data processing on the diagram revealed two dominating chemical facies sulphate-magnesium and bicarbonate magnesium. With a high conductivity in excess of 2300 ??S?·cm-1, the temperature reaches 97?°C. Calculation of the saturation index shows that the waters are supersaturated in carbonate minerals (calcite, dolomite and aragonite) and less saturated with evaporite minerals (halite, anhydrite, sylvite and gypsum). The reconstitution in dissolved salts reveals a dominant salt rich in calcium bicarbonates, in calcium sulphates and secondarily in magnesium salts. Geological sections used in the study zone affirm that the chemical composition of the spring waters comes from the neritic limestone dissolution and the gypso-saline complex of Hammam Meskoutine.
机译:阿尔及利亚的最东北部,特别是盖尔马市,掩藏着温泉,温泉的水深处循环,使雨水变暖(根据每33 m的平均地热梯度1?C)并获得矿化取决于所遍历的岩石。这项研究工作的目的是确定哈马姆梅斯库丁(阿尔及利亚N-E)的热矿泉水的矿化成因。一项水化学研究涉及对水的许多物理和化学参数的分析,例如温度,氢势,电解电导率,Cl-,SO4 2-,HCO3-,Ca2 +,Mg2 +,K +和Na +。图上的数据处理显示出两个主要的化学相硫酸镁和碳酸氢镁。在超过2300Ω·S··cm-1的高电导率下,温度达到97℃。饱和指数的计算表明,水在碳酸盐矿物(方解石,白云石和文石)中过饱和,而在蒸发矿物(卤石,硬石膏,钾盐和石膏)中则较不饱和。溶解盐中的重构表明,主要的盐富含碳酸氢钙,硫酸钙,其次是镁盐。研究区使用的地质断层证实,泉水的化学成分来自于灰岩岩溶和哈马姆美金刚碱的石膏-盐复合物。

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