Deformation, age, and provenance of the Nogolí Metamorphic Complex protoliths, Sierra de San Luis, Argentina: evidence of a non-collisional history for the Cambrian in the western Gondwana margin

IF 1.8 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Augusto F. Morosini, Eliel Enriquez, Alina M. Tibaldi, Juan M. Perón Orrillo, Eber A. Cristofolini, Damián A. Manchento, Diego S. Pagano, Andrés O. Carugno Duran, Joshua J. Schwartz, Juan E. Otamendi, Ariel E. Ortiz Suárez
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Abstract

Situated in the western Sierras Pampeanas of San Luis, the Nogolí Metamorphic Complex has become a key geological locality for unraveling the construction of the western Gondwana margin on the South American tectonic plate. This study presents a comprehensive analysis, encompassing new petrological and geochronological data, along with a meticulous structural examination of two distinct regions within the Nogolí Metamorphic Complex. Our primary aim is to assess the age and provenance of the protoliths, thereby shedding light on their geodynamic evolution. Detrital zircon U–Pb ages, obtained from a quartz–feldspathic-schist paleosome within a metatexite exposure in the La Barranquita area, disclosed a polymodal distribution. The predominant age population, centered around 616 ± 11 Ma, suggests a late Neoproterozoic source (Brasiliano–Pan African orogen). A secondary, yet significant, age peak at 542 ± 12 Ma points to a late Ediacaran to Early Cambrian origin (Pampean orogen). Additionally, a peak ranging from 930 to 1144 Ma indicates contributions from an early Neoproterozoic source (Grenvillian–Sunsas orogen). The maximum depositional age was determined to be 533 ± 14 Ma, based on the calculation of the youngest grain cluster at 2σ uncertainty. This polymodal zircon-age spectrum indicates that the sedimentary protolith of the Nogolí Metamorphic Complex derived from a Cambrian-age crystalline basement situated along the western margin of Gondwana. Contrary to models invoking continent–continent collision in western Gondwana during the early Cambrian, our findings better support a ridge–trench collision as the most plausible hypothesis for the origin of the Pampean orogeny.

Graphical abstract

Abstract Image

阿根廷圣路易山Nogolí变质复合原岩的变形、年龄和来源:冈瓦纳西部寒武纪非碰撞历史的证据
Nogolí变质杂岩位于美国圣·路易斯的Pampeanas山脉西部,已成为揭示南美构造板块西冈瓦纳边缘构造的关键地质位置。这项研究提出了一个全面的分析,包括新的岩石学和地质年代学数据,以及对Nogolí变质杂岩内两个不同区域的细致结构检查。我们的主要目的是评估原岩的年龄和来源,从而揭示它们的地球动力学演化。在La Barranquita地区的一变质岩暴露区,对石英长石片岩古岩体进行了碎屑锆石U-Pb年龄测定,结果显示其具有多模态分布。主要年龄群集中在616±11 Ma左右,表明其来源为晚新元古代(巴西利亚-泛非造山带)。另一个重要的年龄峰值为542±12 Ma,指向埃迪卡拉晚期至早寒武纪(潘潘纪造山带)。此外,930 ~ 1144 Ma的峰值表明其贡献来自于新元古代早期(Grenvillian-Sunsas造山带)。根据2σ不确定度下最年轻颗粒团簇的计算,确定其最大沉积年龄为533±14 Ma。该多模态锆石年龄谱表明,Nogolí变质杂岩的沉积原岩来自位于冈瓦纳西缘的寒武纪结晶基底。与引用早寒武纪冈瓦纳西部大陆-大陆碰撞的模型相反,我们的发现更好地支持山脊-海沟碰撞是潘潘纪造山运动起源的最合理的假设。图形抽象
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来源期刊
International Journal of Earth Sciences
International Journal of Earth Sciences 地学-地球科学综合
CiteScore
4.60
自引率
4.30%
发文量
120
审稿时长
4-8 weeks
期刊介绍: The International Journal of Earth Sciences publishes process-oriented original and review papers on the history of the earth, including - Dynamics of the lithosphere - Tectonics and volcanology - Sedimentology - Evolution of life - Marine and continental ecosystems - Global dynamics of physicochemical cycles - Mineral deposits and hydrocarbons - Surface processes.
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