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首页> 外文期刊>Contributions to Mineralogy and Petrology >Rear-arc vs. arc-front volcanoes in the Katmai reach of the Alaska Peninsula: a critical appraisal of across-arc compositional variation
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Rear-arc vs. arc-front volcanoes in the Katmai reach of the Alaska Peninsula: a critical appraisal of across-arc compositional variation

机译:阿拉斯加半岛卡特迈河下游的弧形火山与弧形前火山:对跨弧成分变化的重要评估

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摘要

Physical and compositional data and K-Ar ages are reported for 14 rear-arc volcanoes that lie 11-22 km behind the narrowly linear volcanic front defined by the Mount Katmai-to-Devils Desk chain on the Alaska Peninsula. One is a 30-km~3 stratocone (Mount Griggs; 51-63 percent SiO_2) active intermittently from 292 ka to Holocene. The others are monogenetic cones, domes, lava flows, plugs, and maars, of which 12 were previously unnamed and unstudied; they include seven basalts (48-52 percent SiO_2), four mafic andesites (53-55 percent SiO_2), and three andesite-dacite units. Six erupted in the interval 500-88 ka, one historically in 1977, and five in the interval 3-2 Ma. No migration of the volcanic front is discernible since the late Miocene, so even the older units erupted well behind the front. Discussion explores the significance of the volcanic front and the processes that influence compositional overlaps and differences among mafic products of the rear-arc volcanoes and of the several arc-front edifices nearby. The latter have together erupted a magma volume of about 200 km~3, at least four times that of all rear-arc products combined. Correlation of Sr-isotope ratios with indices of fractionation indicates crustal contributions in volcanic-front magmas (0.7033-0.7038), but lack of such trends among the rear-arc units (0.70298-0.70356) suggests weaker and less systematic crustal influence. Slab contributions and mantle partial-melt fractions both appear to decline behind the front, but neither trend is crisp and unambiguous. No intraplate mantle contribution is recognized nor is any systematic across-arc difference in intrinsic mantle-wedge source fertility discerned. Both rear-arc and arc-front basalts apparently issued from fluxing of typically fertile NMORB-source mantle beneath the Peninsular terrane, which docked here in the Mesozoic.
机译:据报道,位于阿拉斯加半岛卡特迈山至魔鬼台台链所定义的狭窄线性火山锋后11-22公里处,有14座后弧火山的物理和成分数据以及K-Ar年龄。一种是从292 ka到全新世间歇性活动的30 km〜3平流圆锥体(Mount Griggs; 51-63%SiO_2)。其他的是单相的圆锥体,穹顶,熔岩流,旋塞和泥浆,其中12个以前未命名和研究。它们包括七个玄武岩(48%至52%的SiO_2),四个镁铁质安山岩(53%至55%的SiO_2)和三个安山岩-d石单元。在500-88 ka区间爆发了6次,历史上是1977年爆发,在3-2 Ma区间爆发了5次。自中新世晚期以来,没有发现火山锋的迁移,因此,即使是较老的单元也从火山锋后方喷发。讨论探讨了火山前沿的重要性以及影响后弧火山和附近几个弧前大厦的镁铁质产品之间成分重叠和差异的过程。后者总共喷出了约200 km〜3的岩浆量,至少是所有后弧产品总和的四倍。 Sr-同位素比率与分馏指数的相关性表明了火山前岩浆中的地壳贡献(0.7033-0.7038),但是后弧单元(0.70298-0.70356)中缺乏这种趋势表明地壳影响较弱且系统性较小。板坯的贡献和地幔的部分融化率似乎都在前部下降,但是没有任何趋势是清晰明了的。没有认识到板内的地幔贡献,也没有发现内在的地幔楔源肥力的任何系统的跨弧差异。弧后玄武岩和弧前玄武岩显然都是由典型的可育的NMORB源地幔通流而产生的,该地幔位于中生代的半岛地层之下。

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