冰下是什么?利用现代河卵石的地球化学和地质年代学更好地解读冰川火山弧的演化(美国阿拉斯加Wrangell弧)

IF 2.5 Q2 Earth and Planetary Sciences
Matthew Brueseke, Beth K. Morter, Jeffrey A Benowitz, Jeffrey Trop, Stanley A Mertzman, Carl S Kirby, Kailyn Davis
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引用次数: 0

摘要

阿拉斯加~30 Ma至最近的Wrangell弧(WA)是研究俯冲作用和板块边缘岩浆作用的理想地点。然而,西澳覆盖面积巨大(约15,000 km2),约29%的西澳被冰川覆盖,地形崎岖,使得基岩采样具有挑战性。我们用地球化学和地质年代学分析了从环绕西澳大利亚的河流中收集的火成岩鹅卵石来解决这些障碍。结果表明岩浆活动先向南迁移,再向西北迁移,反映了基岩研究。砾石地球化学结果与基岩结果重叠,钙碱性和埃达克质砾石在空间和时间上普遍存在,表明俯冲作用和板块熔融作用是主导作用。西澳大利亚西南部河流中未发现与弧内伸展有关的过渡性拉斑岩卵石,其基岩和卵石资料均有限。新型串联鹅卵石方法在地球化学、时间和空间背景下与基岩记录密切匹配,可用于基岩进入问题和/或表征流域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
What lies beneath the ice? Using the geochemistry and geochronology of modern river cobbles to better decipher the evolution of a glaciated volcanic arc (Wrangell Arc, Alaska, U.S.A.)
The ~30 Ma to Recent Wrangell Arc (WA), Alaska is an ideal location to study subduction and slab-edge magmatism. However, the WA covers a huge area (~15,000 km2) and ~29% of the WA is covered by glaciers with rugged topography, making bedrock sampling challenging. We addressed these barriers with geochemical and geochronologic analyses on igneous cobbles collected from rivers encircling the WA. Results show that magmatism migrated southward and then northwestward, mirroring bedrock studies. Cobble geochemistry overlaps bedrock results, where calc-alkaline and adakitic cobbles are spatially and temporally ubiquitous in the WA, indicating that subduction and slab melting have been dominant processes. Intra-arc extension-related transitional-tholeiitic cobbles are not found in southwestern WA rivers and are limited in both bedrock and cobble data. The novel tandem cobble method closely matches the bedrock record in geochemical, temporal, and spatial contexts and can be used when bedrock access concerns and/or for characterizing watersheds.
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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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