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Carbon isotopic constraints on CO2 degassing in cold-water geysers, Green River, Utah

机译:碳同位素对冷水间歇泉二氧化碳脱气的限制,犹他州格林河

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摘要

Cold-water geysers at Green River, in east central Utah are sourced by natural springs situated along the Little Grand Wash and Salt Wash faults zones, as well as abandoned oil and water wells. The intermittent geysers are driven by degassing of CO2 from CO2-rich waters sourced from the Jurassic Navajo sandstone. Here we discuss use of del13C analyses of water and gases to estimate the depth at which the ascending waters become CO2 saturated. This is a potentially important control in the unlikely event of rapid CO2 escape from CO2 reservoirs. In Green River, it is also important for calculation of the kinetics of fluid-mineral reactions in the Navajo sandstone as an analogue for predicting the fate of CO2 in carbon storage reservoirs
机译:犹他州中部东部格林河的冷水间歇泉来自Little Grand Wash和Salt Wash断层带沿线的天然泉水以及废弃的油井和水井。间歇喷泉由来自侏罗纪纳瓦霍砂岩的富含二氧化碳的水中的二氧化碳脱气驱动。在这里,我们讨论了使用水和气体的del13C分析来估计上升水变成CO2饱和的深度。在不太可能的情况下,这可能是重要的控制措施,以防止二氧化碳迅速从CO2储库中逸出。在绿河中,这对于计算纳瓦霍砂岩中的流体矿物反应动力学也很重要,它可以作为预测碳储存库中二氧化碳命运的类似物

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