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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Coupling between mineral reactions, chemical changes in groundwater, and earthquakes in Iceland
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Coupling between mineral reactions, chemical changes in groundwater, and earthquakes in Iceland

机译:矿物反应,地下水的化学变化与冰岛地震之间的耦合

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摘要

Chemical analysis of groundwater samples collected from a borehole at Hafralaekur, northern Iceland, from October 2008 to June 2015 revealed (1) a long-term decrease in concentration of Si and Na and (2) an abrupt increase in concentration of Na before each of two consecutive M 5 earthquakes which occurred in 2012 and 2013, both 76km from Hafralaekur. Based on a geochemical (major elements and stable isotopes), petrological, and mineralogical study of drill cuttings taken from an adjacent borehole, we are able to show that (1) the long-term decrease in concentration of Si and Na was caused by constant volume replacement of labradorite by analcime coupled with precipitation of zeolites in vesicles and along fractures and (2) the abrupt increase of Na concentration before the first earthquake records a switchover to nonstoichiometric dissolution of analcime with preferential release of Na into groundwater. We attribute decay of the Na peaks, which followed and coincided with each earthquake to uptake of Na along fractured or porous boundaries between labradorite and analcime crystals. Possible causes of these Na peaks are an increase of reactive surface area caused by fracturing or a shift from chemical equilibrium caused by mixing between groundwater components. Both could have been triggered by preseismic dilation, which was also inferred in a previous study by Skelton et al. (2014). The mechanism behind preseismic dilation so far from the focus of an earthquake remains unknown.
机译:从2008年10月至2015年6月,从冰岛北部哈弗拉库尔的一个钻孔收集的地下水样品的化学分析显示:(1)Si和Na的浓度长期降低,(2)在每次使用之前Na的浓度突然增加两次连续的M 5地震分别发生在2012年和2013年,距哈夫拉莱库尔均为76公里。基于地球化学(主要元素和稳定同位素),岩石学和矿物学研究,从邻近的钻孔中获取钻屑,我们能够证明(1)Si和Na的长期浓度下降是由于常数钠长石取代了钠长石,并在囊泡和裂缝中析出了沸石,(2)在第一次地震前,Na浓度突然增加,记录了其转变为非化学计量的钠长石溶解,并优先释放了Na到地下水中。我们将Na峰的衰减归因于此,每次地震发生并与之相伴,是由于拉长石和方沸石晶体之间的断裂或多孔边界吸收了Na。这些Na峰的可能原因是由压裂引起的反应性表面积增加,或由地下水组分之间的混合引起的化学平衡偏移。两者都可能是由地震前扩张引起的,这在Skelton等人的先前研究中也得出了结论。 (2014)。到目前为止,地震前震后扩张的机制尚不清楚。

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