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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Oxygen-osmium isotope systematics of West Maui lavas: A record of shallow-level magmatic processes
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Oxygen-osmium isotope systematics of West Maui lavas: A record of shallow-level magmatic processes

机译:西毛伊岛熔岩的氧-同位素系统:浅层岩浆过程的记录

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New delta(18)O and Os-187/Os-188 data from late shield-building stage lavas from West Maui volcano, Hawai'i, indicate that a range of distinct shallow-level processes can affect compositions of plume-generated ocean island magmas. The relative ages of the samples studied were determined either on the basis of field relationships, or from collection depth in a water well. The stratigraphically lower lavas have [Os]=61-399 ppt, initial Os-187/Os-188=0.1311-0.1324 and delta(18)O(olivine)=4.53-4.88 parts per thousand. The stratigraphically higher lavas have [Os] = 20-273 ppt, initial Os-187/Os-188=0.1323-0.1390 (with the exception of one low [Os] sample with Os-187/Os-188=0.1517), and delta(18)O(olivine)=4.73-5.21 parts per thousand. These compositions are generally similar to those of Kea-type Hawaiian lavas from Mauna Kea and Kilauea volcanoes, but in detail, there are some significant differences between the West Maui lavas and other Kea-type lavas. The stratigraphically lower lavas have Os-187/Os-188 similar to those previously observed for Mauna Kea and Kilauea lavas, and define a nearly flat Sr-87/Sr-86 vs. Os-187/Os-188 trend that is consistent with assimilation by these magmas of small degree melts of Pacific oceanic crustal gabbros. The stratigraphically higher West Maui lavas extend to Os-187/Os-188 higher than observed at Mauna Kea or Kilauea. This probably results from interaction of these magmas with the hydrothermally altered volcanic edifice during the waning phases of the shield building stage. This process is likely to affect the isotope systematics of Os and 0, but will have little effect on those of Hf, Nd, Pb or Sr. (c) 2005 Elsevier B.V. All rights reserved.
机译:来自夏威夷西毛伊岛火山的盾构建造后期熔岩的新delta(18)O和Os-187 / Os-188数据表明,一系列不同的浅层过程会影响羽状洋岛的成分岩浆。根据田间关系或从水井中的收集深度确定研究样品的相对年龄。地层较低的熔岩具有[Os] = 61-399 ppt,初始Os-187 / Os-188 = 0.1311-0.1324和δ(18)O(橄榄石)= 4.53-4.88千分之几。地层较高的熔岩[Os] = 20-273 ppt,初始Os-187 / Os-188 = 0.1323-0.1390(除了一个低[Os]样品的Os-187 / Os-188 = 0.1517),和δ(18)O(橄榄石)= 4.73-5.21千分之几。这些成分通常类似于来自莫纳克亚火山和基拉韦厄火山的凯亚型夏威夷熔岩的成分,但详细地说,西毛伊岛熔岩与其他基亚型熔岩之间存在一些显着差异。地层较低的熔岩的Os-187 / Os-188与以前对莫纳克亚山和基拉韦厄火山的熔岩相似,并确定了Sr-87 / Sr-86与Os-187 / Os-188趋势几乎持平,这与这些岩浆对太平洋大地壳辉长岩的少量融化作用同化。地层上较高的西毛伊岛熔岩延伸到比在莫纳克亚山或基拉韦厄火山上观察到的高的Os-187 / Os-188。这可能是由于这些岩浆在盾构建造阶段逐渐减弱的阶段与热液蚀变的火山大厦之间的相互作用。此过程可能会影响Os和0的同位素系统,但对Hf,Nd,Pb或Sr的同位素系统影响很小。(c)2005 Elsevier B.V.保留所有权利。

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