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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Light hydrocarbons as redox and temperature indicators in the geothermal field of El Tatio (northern Chile)
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Light hydrocarbons as redox and temperature indicators in the geothermal field of El Tatio (northern Chile)

机译:El Tatio(智利北部)地热田中的轻烃作为氧化还原和温度指示剂

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El Tatio (northern Chile), one of the largest geothermal fields of South America, is presently undergoing a new program of geothermal exploration, after the failure of the first exploration phase in the early 1970s. The geochemical features of the fluid discharges characterizing this system mainly consist of boiling pools and fumaroles, and represent the result of a complex mixing process involving 3 main components: (i) hydrothermal; (ii) atmospheric; (iii) magmatic. Chemical reactions involving light hydrocarbons equilibrate at higher temperature than those directly measured in the geothermal wells and calculated on the basis of the composition of the inorganic gas species. This suggests that in the deeper parts of the hydrothermal system temperatures higher than 300 degrees C may be achieved. Such results can have a strong impact for the evaluation of the potential resources of this geothermal system. Moreover, the chemical characteristics of the organic gas fraction allow the assessment of the chemical-physical conditions governing the geochemical processes acting on geothermal fluids at depth. (c) 2005 Elsevier Ltd. All rights reserved.
机译:El Tatio(智利北部)是南美最大的地热田之一,在1970年代初的第一个勘探阶段失败后,目前正在接受新的地热勘探计划。表征该系统的流体排放物的地球化学特征主要由沸腾池和喷气孔组成,代表了涉及3个主要成分的复杂混合过程的结果:(i)水热; (ii)大气; (iii)岩浆。涉及轻烃的化学反应比在地热井中直接测量并根据无机气体种类的组成进行计算的化学反应在更高的温度下达到平衡。这表明在热液系统的较深部分,可以达到高于300摄氏度的温度。这样的结果可能会对评估该地热系统的潜在资源产生重大影响。此外,有机气体馏分的化学特性允许评估控制深处作用于地热流体的地球化学过程的化学物理条件。 (c)2005 Elsevier Ltd.保留所有权利。

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