The structure of a continental intraplate volcanic system and controls from shear zones: Insights into the central Hoggar Cenozoic volcanic province, Northwest Africa, from electrical resistivity images

IF 7.2 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Gondwana Research Pub Date : 2024-08-13 DOI:10.1016/j.gr.2024.08.003
Zakaria Boukhalfa , Amel Z. Benhallou , Matthew J. Comeau , Abderrezak Bouzid , Abderrahmane Bendaoud , Aboubakr Deramchi
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Abstract

Continental intraplate volcanic systems, with their locations far from plate tectonic boundaries, are not well understood: the crustal and lithospheric mantle structure of these systems remain enigmatic and there is no consensus on the mechanisms that cause melt generation and ascent. The Cenozoic saw the development of numerous volcanic provinces on the African plate, including within the Central Hoggar, located in Northwest Africa, part of the Tuareg shield. The magmatic activity began at approximately 34 Ma and continued throughout the Quaternary. In order to understand the origins and potential mechanisms that generated the intraplate volcanic activity in the Central Hoggar we aim to image the subsurface architecture, in terms of electrical resistivity, from the surface to the lithospheric mantle. To do so we use magnetotelluric measurements from 40 locations to generate a 3-D electrical resistivity model, over an area of about 100 km by 160 km. Low-resistivity features (i.e., conductors) are observed in the crust that are narrow, linear structures congruent with the boundaries of terranes and prominent fault zones (e.g., Azrou N’Fad). They likely reflect the Pan-African mega-shear zones, which were reactivated throughout the tectonic evolution of the region. The model reveals that these faults are lithospheric-scale. The low-resistivity features likely represent the signatures of past fluid pathways and mineralization. A deeper low-resistivity feature is observed in the upper lithospheric mantle directly beneath the Manzaz and Atakor volcanic districts. It may represent local, small-scale metasomatism of the sub-continental lithospheric mantle, and low-percent partial melting, that sits above a regional, large-scale asthenospheric upwelling associated with the Hoggar swell. It is likely the origin point of the fluids responsible for the overlying anomalies. The results highlight the control of the lithospheric-scale, mega-shear zones on the spatial distribution of the recent Cenozoic volcanic activity, which was influenced by the location of pre-existing structural weaknesses.

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大陆板内火山系统的结构和剪切带的控制:从电阻率图像洞察非洲西北部霍加尔新生代火山区中部
大陆板块内火山系统的位置远离板块构造边界,人们对其了解不多:这些系统的地壳和岩石圈地幔结构仍然是个谜,人们对导致熔体生成和上升的机制也没有达成共识。新生代时期,非洲板块上出现了许多火山区,包括位于非洲西北部、图阿雷格地盾一部分的中霍加尔地区。岩浆活动始于大约 34 Ma,并持续了整个第四纪。为了了解霍加尔中部板块内火山活动的起源和潜在机制,我们的目标是通过电阻率对从地表到岩石圈地幔的地下结构进行成像。为此,我们使用了 40 个地点的磁电测量数据,生成了一个面积约为 100 千米乘 160 千米的三维电阻率模型。在地壳中观察到的低电阻率特征(即导体)是与地层边界和突出断层带(如 Azrou N'Fad)相一致的狭窄线性结构。它们很可能反映了在该地区整个构造演化过程中被重新激活的泛非特大剪切带。模型显示,这些断层属于岩石圈尺度。低电阻率特征可能代表了过去流体通道和矿化的特征。在曼扎兹和阿塔科火山区正下方的岩石圈上地幔中观察到了更深的低电阻率特征。它可能代表了次大陆岩石圈地幔的局部小规模变质作用和低浓度部分熔融,位于与霍加尔膨胀相关的区域性大尺度星体隆起之上。它很可能是造成上覆异常的流体的起源点。研究结果凸显了岩石圈尺度的特大剪切带对新生代近期火山活动空间分布的控制,而火山活动的空间分布受到了先前存在的结构弱点位置的影响。
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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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