首页> 外文期刊>Geosphere >Geochemical and paleomagnetic variations in basalts from the Wendell Regional Aquifer Systems Analysis (RASA) drill core: Evidence for magma recharge and assimilation–fractional crystallization from the central Snake River Plain, Idaho
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Geochemical and paleomagnetic variations in basalts from the Wendell Regional Aquifer Systems Analysis (RASA) drill core: Evidence for magma recharge and assimilation–fractional crystallization from the central Snake River Plain, Idaho

机译:Wendell区域含水层系统分析(RASA)钻芯中玄武岩的地球化学和古磁变化:来自爱达荷州Snake River平原中心的岩浆补给和同化-分形结晶的证据

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The temporal and magmatic evolution of central Snake River Plain (SRP; Idaho, USA) olivine tholeiites erupted within the past 4 m.y. is evaluated here. This investigation correlates and merges both geochemical and paleomagnetic measurements to constrain the volcanic history recovered from the 340 m Regional Aquifer Systems Analysis (RASA) test well located near Wendell, Idaho. Only a handful of studies have accomplished this task of shedding light on the chemical stratigraphy of the SRP and the petrogenesis of basalts with depth, and therefore through time.Paleomagnetic relationships suggest that time breaks between individual lava flows represent a few years to decades, time breaks between flow groups represent at least a couple of hundred years or possibly much longer, while significant hiatuses in volcanism, revealed by thick sediment packages or polarity reversals (both are evidenced in this well), are inferred to last thousands to tens of thousands of years. Major element geochemistry from 52 basaltic lava flows demonstrates near primitive compositions (i.e., a??10 wt% MgO) and tholeiitic iron enrichment trends, similar to lavas from the eastern SRP. Trace element concentrations are similar to those of ocean island basalts, with enriched Ba and Pb, and light rare earth element (REE)/heavy REE ratios similar to those of many Neogene volcanics of the western Cordillera. When combined, we identify a total of 11 flow groups, which we also classify as fractionation or recharge on the basis of decreasing or increasing MgO weight percent with depth.Taking into consideration these trends, we review the potential recharge, fractionation, and assimilation processes that characterize much of SRP olivine tholeiite, and conclude that assimilation, in combination with fractional crystallization, is the dominant petrogenesis for the basalts in the central SRP. Although fractionation of Wendell parent magmas was accompanied by assimilation of crustal material, this could not have been assimilation of ancient cratonic crust. The geochemical cycles observed in this well are inferred to represent fractionation and recharge of basaltic magma from a series of sill-like layered mafic intrusions located in the middle crust, similar to what has been proposed for the processes that control the eruptive history of basalts in the eastern SRP.
机译:在过去的4 y年内,中部蛇河平原(SRP;美国爱达荷州)的橄榄石冲孔岩在时间和岩浆上演化。在这里评估。这项研究将地球化学和古磁测量值关联并合并在一起,以约束从位于爱达荷州温德尔附近的340 m区域含水层系统分析(RASA)测试井中回收的火山历史。只有极少的研究完成了这项工作,以深入了解SRP的化学地层学和玄武岩的成因,并因此揭示出了时间。古磁关系表明,单个熔岩流之间的时间间隔代表了数年至数十年的时间。流动群之间的断裂至少代表了数百年甚至更长的时间,而厚的沉积物包裹或极性反转(均在该井中得到了证明)揭示了火山的显着中断,据推测持续了数千至数万年份。来自52个玄武岩熔岩流的主要元素地球化学表明,其原始成分(即≥10wt%MgO)接近原始成分和生铁性富集趋势,类似于东部SRP的熔岩。痕量元素的浓度与海洋岛玄武岩中的痕量元素浓度相似,富含Ba和Pb,轻稀土元素(REE)/重REE比率与西部Cordillera的许多新近纪火山岩相似。合并后,我们总共确定了11个流动组,我们也根据随深度增加或减少的MgO重量百分比将其分类为分馏或补给。考虑到这些趋势,我们回顾了潜在的补给,分馏和同化过程代表了SRP橄榄石黄铁矿的大部分特征,并得出结论认为,同化作用与分步结晶结合是中央SRP中玄武岩的主要成岩作用。尽管温德尔母岩浆的分馏伴随着地壳物质的同化,但这不可能是古代克拉通地壳的同化。据推断,在该井中观察到的地球化学循环代表了位于中地壳的一系列基岩状层状镁铁质侵入体对玄武岩浆的分馏和补给,类似于针对控制玄武岩喷发史的过程所提出的建议。东部SRP。

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