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首页> 外文期刊>Contributions to Mineralogy and Petrology >Magma mixing and the generation of isotopically juvenile silicic magma at Yellowstone caldera inferred from coupling ~(238)U-~(230)Th ages with trace elements and Hf and O isotopes in zircon and Pb isotopes in sanidine
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Magma mixing and the generation of isotopically juvenile silicic magma at Yellowstone caldera inferred from coupling ~(238)U-~(230)Th ages with trace elements and Hf and O isotopes in zircon and Pb isotopes in sanidine

机译:从〜(238)U-〜(230)Th年龄与锆石中的痕量元素与Hf和O同位素以及Sanidine中的Pb同位素耦合推断出黄石破火山口的岩浆混合和同位素少年硅质岩浆的生成

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The nature of compositional heterogeneity within large silicic magma bodies has important implications for how silicic reservoirs are assembled and evolve through time. We examine compositional heterogeneity in the youngest (~170 to 70 ka) post-caldera volcanism at Yellowstone caldera, the Central Plateau Member (CPM) rhyolites, as a case study. We compare ~(238)U-~(230)Th age, trace-element, and Hf isotopic data from zircons, and major-element, Ba, and Pb isotopic data from sanidines hosted in two CPM rhyolites (Hayden Valley and Solfatara Plateau flows) and one extracaldera rhyolite (Gibbon River flow), all of which erupted near the caldera margin ca. 100 ka. The Hayden Valley flow hosts two zircon populations and one sanidine population that are consistent with residence in the CPM reservoir. The Gibbon River flow hosts one zircon population that is compositionally distinct from Hayden Valley flow zircons. The Solfatara Plateau flow contains multiple sanidine populations and all three zircon populations found in the Hayden Valley and Gibbon River flows, demonstrating that the Solfatara Plateau flow formed by mixing extracaldera magma with the margin of the CPM reservoir. This process highlights the dynamic nature of magmatic interactions at the margins of large silicic reservoirs. More generally, Hf isotopic data from the CPM zircons provide the first direct evidence for isotopically juvenile magmas contributing mass to the youngest post-caldera magmatic system and demonstrate that the sources contributing magma to the CPM reservoir were heterogeneous in ~(176)Hf/~(177)Hf at ca. 100 ka. Thus, the limited compositional variability of CPM glasses reflects homogenization occurring within the CPM reservoir, not a homogeneous source.
机译:大型硅质岩浆体内的组成非均质性对硅质储层如何组装和随时间演化具有重要意义。我们研究了黄石破火山口(中部高原成员(CPM)流纹岩)中最年轻的(约170至70 ka)火山后火山岩的成分异质性。我们比较了来自锆石的〜(238)U-〜(230)Th年龄,痕量元素和Hf同位素数据,以及来自两种CPM流纹岩(海登谷和索尔法塔拉高原)中的山梨碱的主要元素,Ba和Pb同位素数据流)和一支破火山口流纹岩(长臂猿河流),全部在火山口边缘附近爆发。 100 ka。海登谷流包含两个锆石种群和一个山梨烷种群,与CPM储层中的居住区一致。长臂猿河流容纳了一个锆石种群,其组成与海登谷流锆石截然不同。 Solfatara高原流包含多个山san种群,以及在海登谷和长臂猿河中发现的所有三个锆石种群,这表明Solfatara高原流是由火山口外岩浆与CPM储层边缘混合而成。这一过程突显了大型硅质油藏边缘岩浆相互作用的动力学性质。更一般而言,来自CPM锆石的Hf同位素数据提供了同位素少年岩浆对最年轻的破火山口后岩浆系统贡献质量的第一个直接证据,并证明了贡献CPM储层的岩浆来源在〜(176)Hf /〜中是异质的。 (177)Hf约。 100 ka。因此,CPM玻璃的有限成分变异性反映了CPM储罐内发生的均质化,而不是均质的。

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