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Genesis and preservation of a uranium-rich Paleozoic epithermal system with a surface expression (Northern Flinders Ranges, South Australia): radiogenic heat driving regional hydrothermal circulation over geological timescales

机译:具有表面表达的富铀古生代浅成热液系统的成因和保存(北弗林德斯山脉,南澳大利亚):放射性热驱动地质时间尺度上的区域热液循环

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摘要

The surface expressions of hydrothermal systems are prime targets for astrobiological exploration, and fossil systems on Earth provide an analogue to guide this endeavor. The Paleozoic Mt. Gee–Mt. Painter system (MGPS) in the Northern Flinders Ranges of South Australia is exceptionally well preserved and displays both a subsurface quartz sinter (boiling horizon) and remnants of aerial sinter pools that lie in near-original position. The energy source for the MGPS is not related to volcanism but to radiogenic heat produced by U-Th-K-rich host rocks. This radiogenic heat source drove hydrothermal circulation over a long period of time (hundreds of millions of years, from Permian to present), with peaks in hydrothermal activity during periods of uplift and high water supply. This process is reflected by ongoing hot spring activity along a nearby fault. The exceptional preservation of the MGPS resulted from the lack of proximal volcanism, coupled with tectonics driven by an oscillating far-field stress that resulted in episodic basement uplift. Hydrothermal activity caused the remobilization of U and rare earth elements (REE) in host rocks into (sub)economic concentrations. Radiogenic-heat-driven systems are attractive analogues for environments that can sustain life over geological times; the MGPS preserves evidence of episodic fluid flow for the past 300 million years. During periods of reduced hydrothermal activity (e.g., limited water supply, quiet tectonics), radiolytic H2 production has the potential to support an ecosystem indefinitely. Remote exploration for deposits similar to those at the MGPS systems can be achieved by combining hyperspectral and gamma-ray spectroscopy.
机译:热液系统的表面表达是进行天体生物学探索的主要目标,地球上的化石系统提供了类似的方法来指导这一工作。古生代山吉–山。南澳大利亚州北弗林德斯山脉的涂装系统(MGPS)保存得非常完好,既显示了地下石英烧结矿(沸腾的水平),又显示了处于接近原始位置的空中烧结矿池的残留物。 MGPS的能源与火山活动无关,而是与富含U-Th-K的宿主岩石产生的放射热有关。这种放射源性热源在很长一段时间(从二叠纪到现在的亿万年)内推动了热液循环,在隆升和高供水期间热液活动达到峰值。沿附近断层不断进行的温泉活动反映了这一过程。 MGPS的出色保存是由于缺乏近端火山作用,再加上振荡的远场应力驱动的构造,导致了基底层的隆升。水热活动导致宿主岩中的U和稀土元素(REE)迁移到(亚)经济集中区。辐射热驱动系统是可以在地质时期维持生命的环境的有吸引力的类似物。 MGPS保留了过去3亿年间流体不断流动的证据。在热液活动减少的时期(例如,有限的水供应,安静的构造),放射性H2的产生具有无限期支持生态系统的潜力。通过结合高光谱和伽马射线光谱技术,可以实现对与MGPS系统相似的沉积物的远程勘探。

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