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Noble gas geochemistry and chronology of groundwater in an active rift basin in central China

机译:中部地下水地下水的高尚气体地球化学和年代学

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Stable noble gas isotopes are excellent groundwater tracers. Radioactive noble gases are emerging new tools in the study of groundwater circulation dynamics. Among these, the ~(85)Kr and ~(81)Kr, and ~(39)Ar have advanced very fast in recent years and exhibit strong potential in the reconstruction of the history of groundwater recharge and evolution in sedimentary basins at different scales. Here, we report the findings in groundwater circulation dynamics as relative to intensive water-rock interactions, heat transfer and He gas flux in Guanzhong Basin located in Xi'an, the geographical centre of China, which is a rift basin created by collision between the Eurasia and Indian plates, with active neotectonic activities. The recent technological breakthrough in noble gas isotope measurements, i.e. the atomic trap trace analysis (ATTA) techniques on Kr and Ar gas radionuclei, has revolutionized groundwater dating. Noble gas samples from shallow and deep wells to 3000 m depth have been collected to study isotope variations to reconstruct the history of groundwater recharge and understand the water-rock interaction processes. Stable isotopes of water show strong water-rock interaction in the formation, creating a strong positive O-isotope shift up to 10 ‰, a phenomenon that is rarely seen in a fairly low temperature environment. Analysis of ~(85)Kr and ~(81)Kr show groundwater ages up to 1.3 million years old along both North-South and a West-East cross sections, which offers strong evidence about the slow moving flow, strong water-rock interaction, rich geothermal resources as well as He gas resources.
机译:稳定的惰性气体同位素地下水优秀示踪剂。放射性惰性气体地下水循环动力学的研究出现的新工具。其中,〜(85)Kr与〜(81)Kr和〜(39)Ar的速度非常快,近年来先进,地下水回灌和进化的不同尺度沉积盆地历史的重建表现出强大的潜力。在这里,我们报告中的地下水循环动力学的调查结果相对密集的水 - 岩相互作用,传热和他气体流量在关中盆地位于西安,中国的地理中心,这是由碰撞产生的裂谷盆地欧亚大陆和印度板块,积极与新构造活动。最近在稀有气体同位素测量技术突破,上Kr与Ar气radionuclei即原子陷阱跟踪分析(ATTA)技术,彻底改变了地下水的约会。由浅和深水井至3000米的深度稀有气体样品已收集到研究同位素变体来重建地下水补给的历史和理解水岩交互过程。的水稳定同位素显示出强的水 - 岩相互作用的形成,从而形成强的正O形同位素位移达10‰,即在相当低的温度环境下很少见到的现象。 〜分析(85)氪和〜(81)氪秀地下水年龄长达130万年沿两个南北和西东横截面,它提供了对移动缓慢流动的有力证据,强大的水 - 岩相互作用老,丰富的地热资源,以及他的天然气资源。

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