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首页> 外文期刊>Geology >Alkalic (ocean-island basalt type) and calc-alkalic volcanism in the Mexican volcanic belt: A case for plume-related magmatism and propagating rifting at an active margin?
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Alkalic (ocean-island basalt type) and calc-alkalic volcanism in the Mexican volcanic belt: A case for plume-related magmatism and propagating rifting at an active margin?

机译:墨西哥火山带中的碱(海洋-岛屿玄武岩类型)和钙碱性火山作用:与羽流有关的岩浆作用和活跃裂谷传播裂谷的案例?

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The Mexican volcanic belt has been traditionally regarded as a classic case of subduction-related calc-alkalic volcanism. However, a series of geologic, geophysical, and petrological arguments makes this simple relationship doubtful. A seismic gap beneath the belt, a large-scale mantle anomaly, a graben triple-junction domain, and the presence of volumetrically important oceanic-island basalt (OIB) volcanism throughout the belt suggest a more complex tectonic scenario involving plume- and subduction-related processes. We here propose a model involving the development of a propagating rift opening from west to east in response to plume activity. The process started in Miocene time within the western sector of the belt (Guadalajara) and gave rise to a graben triple junction and OIB-type and calc-alkalic volcanism. Extension and volcanism proceeded to the east, giving rise to progressively younger ages for the initiation of OIB-type volcanism: (1) Miocene in the west (e.g., Guadalajara), (2) Pliocene in the central zone (e.g., Michoacan-Guanajuato), and (3) Quaternary farther east (e.g., Chichinautzin). Geochemical evidence suggests that part of the modern calc-alkalic volcanism (e.g., Chichinautzin) may be derived from magma mixing between the OIB mafic magmas and silicic, crust-derived magmas. However, we do not preclude some influence of the subducting slab in the generation of other (e.g., Jorullo) calc-alkalic volcanic rocks. Our model suggests a currently unrooted upper plume attached to the subcontinental lithosphere, which defines a hot zone beneath the Mexican volcanic belt.
机译:传统上,墨西哥火山带被认为是俯冲相关的钙碱性火山作用的经典案例。但是,一系列的地质,地球物理和岩石学论据使这种简单的关系令人怀疑。带下的地震带,大范围的地幔异常,一条三结交汇处的区域以及整个带上存在重要体积的重要海洋岛玄武岩(OIB)火山活动,表明了涉及羽状-俯冲-地壳的更复杂的构造场景。相关过程。我们在这里提出一个模型,该模型涉及响应羽流活动从西向东传播的裂谷。该过程始于中新世时期,位于该带的西部(瓜达拉哈拉)西部,并引起了and陷的三重交界处和OIB型和钙碱性火山作用。伸展运动和火山活动向东方延伸,开始出现OIB型火山活动的年龄越来越小:(1)西部中新世(例如瓜达拉哈拉),(2)中部上新世(例如米却肯州-瓜纳华托) ),以及(3)更东第四纪(例如Chichinautzin)。地球化学证据表明,现代的钙碱火山岩的一部分(例如Chichinautzin)可能是由OIB基性岩浆与硅质壳源岩浆混合而成。但是,我们不排除俯冲板片对其他(例如Jorullo)钙碱性火山岩生成的影响。我们的模型表明,目前附着在次大陆岩石圈上的无根上部羽状流,这界定了墨西哥火山带下方的热区。

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