Induced subduction initiation near an ultra-slow spreading ridge: A case study from the Beila ophiolite in the north-central Tibetan Plateau

IF 7.2 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Gondwana Research Pub Date : 2024-08-02 DOI:10.1016/j.gr.2024.07.019
Qingguo Zhai , Yue Tang , Peiyuan Hu , Yiming Liu , Wei Wang
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Abstract

Subduction initiation of oceanic lithosphere is the key scientific problem of the plate tectonics on Earth. When, where, and how an oceanic subduction began remained obscure because of little geological records. Here, we report a newly documented ophiolitic sequence, including ultra-slow spreading ridge fragments (V1) and associated fore-arc lavas (V2) units in the Bangong-Nujiang suture zone, north-central Tibetan Plateau. The V1 units are controlled by detachment fault with peridotite, gabbro and pillow basalt. Peridotite exhibits uniform characteristics of abyssal peridotite, representing residues after low-degree melting of asthenospheric mantle. Mafic rocks display geochemical features of normal mid-ocean ridge basalt (N-MORB). These features, combined with zircon U-Pb dating, indicate that formation of the oceanic lithosphere occurred along an ultra-slow spreading ridge around 177–170 Ma in this area. The V2 units occur as a complete sequence from bottom to top of fore-arc basalt (FAB), basaltic andesite, boninite, and high-Mg arc-related rocks with formation ages of 160–150 Ma, which directly extruded and overlay on the V1 units. This sequence is identical to those of the Izu-Bonin-Mariana (IBM) fore-arc, and represent magmatic response to subduction initiation (SI). Thus, we propose that the Beila ophiolite preserved an entire process of oceanic transition from ultra-slow spreading oceanic ridge to the SI. Subduction initiation in the Beila area was induced by southward subduction transition after the closure of the northern branch of the Bangong-Nujiang Meso-Tethys Ocean and subsequent continental collision. This study provides direct geological evidence for delineating the geodynamic mechanism of an oceanic initial subduction.

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超慢速扩张脊附近的诱导俯冲起始:青藏高原中北部贝拉蛇绿岩案例研究
海洋岩石圈的俯冲起始是地球板块构造的关键科学问题。由于几乎没有地质记录,大洋俯冲何时、何地、如何开始一直模糊不清。在此,我们报告了一个新记录的蛇绿岩序列,包括青藏高原中北部班公-怒江缝合带的超慢速扩张脊碎片(V1)和相关的前弧熔岩(V2)单元。V1 单元受控于橄榄岩、辉长岩和枕状玄武岩的剥离断层。橄榄岩表现出统一的深海橄榄岩特征,是天体层地幔低度熔融后的残留物。镁质岩显示出正常洋中脊玄武岩(N-MORB)的地球化学特征。这些特征与锆石U-Pb年代测定相结合,表明大洋岩石圈的形成是沿着该地区177-170Ma左右的超慢速扩张洋脊进行的。V2 单元是一个完整的序列,从下到上依次为前弧玄武岩、玄武安山岩、褐铁矿和高镁弧相关岩石,形成年龄为 160-150 Ma,它们直接挤压并覆盖在 V1 单元上。该序列与伊豆-波宁-马里亚纳(IBM)前弧的序列相同,代表了俯冲起始(SI)的岩浆反应。因此,我们认为贝拉蛇绿混杂岩保留了从超慢速扩张洋脊到 SI 的整个海洋过渡过程。在班公-怒江中特提斯洋北支闭合和随后的大陆碰撞之后,向南俯冲转变诱发了贝拉地区的俯冲起始。这项研究为划分大洋初始俯冲的地球动力学机制提供了直接的地质证据。
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来源期刊
Gondwana Research
Gondwana Research 地学-地球科学综合
CiteScore
12.90
自引率
6.60%
发文量
298
审稿时长
65 days
期刊介绍: Gondwana Research (GR) is an International Journal aimed to promote high quality research publications on all topics related to solid Earth, particularly with reference to the origin and evolution of continents, continental assemblies and their resources. GR is an "all earth science" journal with no restrictions on geological time, terrane or theme and covers a wide spectrum of topics in geosciences such as geology, geomorphology, palaeontology, structure, petrology, geochemistry, stable isotopes, geochronology, economic geology, exploration geology, engineering geology, geophysics, and environmental geology among other themes, and provides an appropriate forum to integrate studies from different disciplines and different terrains. In addition to regular articles and thematic issues, the journal invites high profile state-of-the-art reviews on thrust area topics for its column, ''GR FOCUS''. Focus articles include short biographies and photographs of the authors. Short articles (within ten printed pages) for rapid publication reporting important discoveries or innovative models of global interest will be considered under the category ''GR LETTERS''.
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