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Geochemical assessment, mixing behavior and environmental impact of thermal waters in the Guelma geothermal system,Algeria
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  • 英文篇名:Geochemical assessment, mixing behavior and environmental impact of thermal waters in the Guelma geothermal system,Algeria
  • 作者:Foued ; Bouaicha ; Hénia ; Dib ; Oualid ; Bouteraa ; Nabil ; Manchar ; Kamel ; Boufaa ; Nabil ; Chabour ; Abdeslam ; Demdoum
  • 英文作者:Foued Bouaicha;Hénia Dib;Oualid Bouteraa;Nabil Manchar;Kamel Boufaa;Nabil Chabour;Abdeslam Demdoum;Department of Applied Biology, Universitédes Frères Mentouri Constantine 1;Department of Geology, Universitédes Frères Mentouri Constantine 1;Laboratory of Geology and Environment(LGE), Universitédes Frères Mentouri Constantine 1;Department of Geology Sciences, University of Larbi BenM'hidi;Department of Earth Sciences, University of Setif 1;
  • 英文关键词:Geochemistry;;Geothermometry;;Mixing;;Thermal effluents;;Guelma;;Algeria
  • 中文刊名:Acta Geochimica
  • 英文刊名:地球化学学报(英文版)
  • 机构:Department of Applied Biology, Universitédes Frères Mentouri Constantine 1;Department of Geology, Universitédes Frères Mentouri Constantine 1;Laboratory of Geology and Environment(LGE), Universitédes Frères Mentouri Constantine 1;Department of Geology Sciences, University of Larbi BenM'hidi;Department of Earth Sciences, University of Setif 1;
  • 出版日期:2019-10-15
  • 出版单位:Acta Geochimica
  • 年:2019
  • 期:05
  • 语种:英文;
  • 页:75-94
  • 页数:20
  • CN:52-1161/P
  • ISSN:2096-0956
  • 分类号:P314
摘要
A study of thirteen geothermal springs located in the geothermal field of Guelma, northeastern Algeria, was conducted. Samples were collected during the period between January 2014 and February 2016. Geochemical processes responsible for the chemical composition of thermal and mineralized water were evaluated. The hydrochemical analysis shows that the thermal waters are characterized by the presence of two different chemical facies, the first type SO_4–Ca in the east, west and south of Guelma, the second type HCO_3~–Ca in the south. This analysis also attributed to sodium, chlorides, and sulfates to an evaporitic terrigenous origin by the molar ratio Sr~(2+)/Ca~)2+_. The thermal spring waters from Guelma geothermal system have a meteoric origin, and all samples are immature with strong mixing between hot and shallow waters with 19–38.5% rate of mixing. The silica geothermometer shows that these thermal waters have a temperature varying from 84 to 122 ℃ and that the water came from a depth of2100–3000 m through a fault system that limits the pullapart basin of Guelma. Potential environmental effluent from thermal spas could pollute in both the irrigation and drinking waters, and which imposes danger on the health of the inhabitants of the region.
        A study of thirteen geothermal springs located in the geothermal field of Guelma, northeastern Algeria, was conducted. Samples were collected during the period between January 2014 and February 2016. Geochemical processes responsible for the chemical composition of thermal and mineralized water were evaluated. The hydrochemical analysis shows that the thermal waters are characterized by the presence of two different chemical facies, the first type SO_4–Ca in the east, west and south of Guelma, the second type HCO_3~–Ca in the south. This analysis also attributed to sodium, chlorides, and sulfates to an evaporitic terrigenous origin by the molar ratio Sr~(2+)/Ca~)2+_. The thermal spring waters from Guelma geothermal system have a meteoric origin, and all samples are immature with strong mixing between hot and shallow waters with 19–38.5% rate of mixing. The silica geothermometer shows that these thermal waters have a temperature varying from 84 to 122 ℃ and that the water came from a depth of2100–3000 m through a fault system that limits the pullapart basin of Guelma. Potential environmental effluent from thermal spas could pollute in both the irrigation and drinking waters, and which imposes danger on the health of the inhabitants of the region.
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