首页> 外文期刊>Arabian journal of geosciences >Hydrochemical, isotopic, and reservoir characterization of the Pasinler (Erzurum) geothermal field, eastern Turkey
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Hydrochemical, isotopic, and reservoir characterization of the Pasinler (Erzurum) geothermal field, eastern Turkey

机译:帕斯内勒(Erzurum)地热田,东部土耳其的水化学,同位素和储层特征

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摘要

The reservoir temperature and conceptual model of the Pasinler geothermal area, which is one of the most important geothermal areas in Eastern Anatolia, are determined by considering its hydrogeochemical and isotope properties. The geothermal waters have a temperature of 51 degrees C in the geothermal wells and are of Na-Cl-HCO3 type. The isotope contents of geothermal waters indicate that they are of meteoric origin and that they recharge on higher elevations than cold waters. The geothermal waters are of immature water class and their reservoir temperatures are calculated as 122-155 degrees C, and their cold water mixture rate is calculated as 32%. According to the delta C-13(VPDB) values, the carbon in the geothermal waters originated from the dissolved carbon in the groundwaters and mantle-based CO2 gases. According to the delta S-34(CDT) values, the sources of sulfur in the geothermal waters are volcanic sulfur, oil and coal, and limestones. The sources of the major ions (Na+, Ca2+, Mg2+, Cl-, and HCO3-) in the geothermal waters are ion exchange and plagioclase and silicate weathering. It is determined that the volcanic rocks in the area have effects on the water chemistry and elements like Zn, Rb, Sr, and Ba originated from the rhyolite, rhyolitic tuff, and basalts. The rare earth element (REE) content of the geothermal waters is low, and according to the normalized REE diagrams, the light REE are getting depleted and heavy REE are getting enriched. The positive Eu and negative Ce anomalies of waters indicate oxygen-rich environments.
机译:通过考虑其水文化学和同位素特性,确定了帕辛珀地热区域的水库温度和概念模型,该地区是东安罗尼亚东部最重要的地热区域之一。地热水在地热井中的温度为51摄氏度,是Na-Cl-HCO3型。地热水的同位素含量表明它们是陨石的起源,并且它们在高海拔上充电而不是冷水。地热水是不成熟的水级,它们的储层温度计算为122-155℃,并且它们的冷水混合物率计算为32%。根据Delta C-13(VPDB)值,地热水中的碳源于地下水和基于披风的CO2气体中的溶解碳。根据Delta S-34(CDT)值,地热水中的硫磺源是火山硫,油和煤和石灰石。地热水中的主要离子(Na +,Ca2 +,Mg2 +,Cl-和HCO3-)的来源是离子交换和Plagioclase和硅酸盐风化。确定该地区的火山岩对源于流石,血管凝灰岩和沼气等Zn,Rb,Sr等水化学和元素产生影响。地热水的稀土元素(REE)含量低,并且根据规范化的REE图,轻盈的REE被耗尽,重型雷厄富裕。水域的正面欧盟和负CE异常表示富氧环境。

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