首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Carbon dioxide degassing at Latera caldera (Italy): Evidence of geothermal reservoir and evaluation of its potential energy
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Carbon dioxide degassing at Latera caldera (Italy): Evidence of geothermal reservoir and evaluation of its potential energy

机译:意大利Latera Caldera的二氧化碳脱气:地热储层的证据及其潜在能量的评估

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In order to test the potentiality of soil CO2 diffuse degassing measurements for the study of underground mass and heat transfer in geothermal systems detailed surveys were performed at Latera caldera, which is an excellent test site, because of the abundant available subsurface data. Over 2500 measurements of soil CO2 flux revealed that endogenous CO2 at Latera caldera concentrates on a NE-SW band coinciding with a structural high of fractured Mesozoic limestones hosting a water-dominated high-enthalpy geothermal reservoir. The total hydrothermal CO2 degassing from the structural high has been evaluated at 350 t d-1 from an area of 3.1 km2. It has been estimated that such a CO2 release would imply a geothermal liquid flux of 263 kg s-1, with a heat release of 239 MW. The chemical and isotopic composition of the gas indicates a provenance from the geothermal reservoir and that CO2 is partly originated by thermal metamorphic decarbonation in the hottest deepest parts of the system and partly has a likely mantle origin. The ratios of CO2, H2, CH4, and CO to Ar were used to estimate the T-P conditions of the reservoir. Results cluster at T ~ 200–300°C and PCO2 ~ 100–200 bars, close to the actual well measurements. Finally, the approach proved to be an excellent tool to investigate the presence of an active geothermal reservoir at depth and that the H2-CO2-CH4-CO-Ar gas composition is a useful T-P geochemical indicator for such CO2 rich geothermal systems.
机译:为了测试土壤CO2扩散脱气测量潜力的潜力,以研究地热系统中的地下物质和热传递,在Latera火山口进行了详细调查,这是一个极好的测试地点,因为它具有大量可用的地下数据。超过2500次的土壤CO2通量测量表明,Latera火山口的内源性CO2集中在NE-SW带上,这与裂缝性中生石灰岩的构造高点相吻合,该裂缝性中灰岩蕴藏着以水为主的高焓地热储层。已经从350 km d-1的3.1 km2区域评估了从结构高处脱气的总热液CO2。据估计,这种二氧化碳的释放将意味着地热液体通量为263 kg s-1,放热为239 MW。气体的化学和同位素组成表明它来自地热储层,而CO2的部分来源是系统最热最深部分的热变质脱碳作用,部分可能来自地幔。使用CO2,H2,CH4和CO与Ar的比率估算储层的T-P条件。结果聚集在T〜200–300°C和PCO2〜100–200 bar,接近于实际测井。最后,该方法被证明是研究深部活跃地热储层存在的极佳工具,并且H2-CO2-CH4-CO-Ar气体成分是此类富含CO2地热系统的有用的T-P地球化学指示剂。

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