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Geothermal Fluid Equilibrium Modeling: Comparison of Wellhead Fluid Samples to Deep Samples in the Reykjanes System, Iceland

机译:地热流体平衡模型:冰岛雷克雅内斯系统中井口流体样品与深层样品的比较

摘要

Single phase geothermal fluids sampled in 2007 from 1500m depth in Well RN-12 of the Reykjanes geothermal system in Iceland show large differences in dissolved copper, zinc and iron concentrations when compared with fluid sampled from the wellhead. Equilibrium modeling of the samples taken at depth indicate that the fluid was supersaturated in sulfide minerals even at moderately acidic pH values, suggesting that the deep samples, as collected, are out of equilibrium. Wellhead sample reconstructions indicate a well-bottom pH of about 5.5 at 295°C, but a pH of 3.6 at saturation with chalcopyrite, bornite, pyrite and sphalerite would be required to account for the large concentrations of Cu, Zn and Fe in the down-well samples. This acidic value needed for the high metal concentrations is not realistic in this naturally buffered system, likely indicating contamination in the downhole analysis.
机译:与从井口取样的流体相比,2007年在冰岛雷克雅尼斯地热系统RN-12井中1500m深度采样的单相地热流体显示出溶解的铜,锌和铁浓度存在很大差异。深度采集的样品的平衡模型表明,即使在中等酸性的pH值下,硫化物矿物中的流体也过饱和,这表明所收集的深层样品不平衡。井口样品的重建表明,在295°C时井底pH约为5.5,但需要用黄铜矿,斑铁矿,黄铁矿和闪锌矿饱和时的pH值为3.6,才能解释向下的大量Cu,Zn和Fe好的样品。在这种自然缓冲的系统中,高金属浓度所需的酸性值不现实,可能表明井下分析中存在污染。

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    Seward Ryan;

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  • 年度 2014
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