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首页> 外文期刊>Arabian journal of geosciences >Intracontinental uplift of the Brazilian Central Plateau linked to continental breakup, orogenies, and basin filling, supported by apatite and zircon fission-track data
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Intracontinental uplift of the Brazilian Central Plateau linked to continental breakup, orogenies, and basin filling, supported by apatite and zircon fission-track data

机译:巴西中部高原的肿瘤内隆起与大陆分发,orgenies和盆地填充有关,由磷灰石和锆石裂变轨道数据支持

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摘要

Fission-track analysis in zircon and apatite detrital grains from Mesoproterozoic sedimentary sequences show evidence of cooling episodes in central Brazil from Neoproterozoic to Cenozoic. Apatite fission-track ages reveal a main cooling episode during the Late Cretaceous-Early Paleogene, providing important clues on cooling by uplift and denudation during drifting of South America and Africa. Zircon data also suggest 3 distinct cooling events: (i) a Neoproterozoic-Cambrian event, probably related to orogenic exhumation of the Brasilia Belt and the thermal decay of West Gondwana assembly, (ii) a Devonian-Carboniferous event, probably related to the Late Famatinian orogeny and early stages of the Gondwanide orogeny, and (iii) an Early Permian to Triassic event, linked to the Late Gondwanide orogeny. These results indicate that the processes of assembly and breakup of supercontinents might significantly affect the plate interior, especially along with ancient orogenic belts. Zircon data has shown evidence of thermal decay during and after the West Gondwana assembly. Apatite data, on the other hand, has shown evidence of thermal decay during and after the breakup of Pangaea. The processes of assembly as well as the breakup of supercontinents can be tracked in the intracratonic setting, especially along with ancient orogenic belts. These assumptions take us back to the old concept of "mobile belts" as old orogenic regions that represent weak portions of the continental crust, assumed to have a greater tendency for mobility when solicited. In this case, the Brasilia Belt has shown to present great vertical mobility, accommodating tectonic far-field forces by uplift and as a result, feeding the Phanerozoic basins around it.
机译:中核古代沉积序列锆石和磷灰石滴乳中的裂变轨道分析显示了从新蛋白古代到新生代中央巴西冷却发作的证据。磷灰石裂变轨道年龄显示晚餐早期古烯期间的主要冷却集,在南美洲和非洲漂移期间,通过隆起和剥蚀在冷却和剥落时提供重要的线索。锆石数据还提出了3个不同的冷却事件:(i)一种新月制古代寒武纪的事件,可能与巴西利亚带的orgensic散发以及西吉隆海组件的热衰减,(ii)探索 - 石炭系事件,可能与晚期有关Famatinian Orogeny和戈尔旺赛orenogeny的早期阶段,和(iii)将初期的初期举行三叠纪的事件,与后期戈尼旺orenteny相关联。这些结果表明,超级性的组装和破碎过程可能会显着影响板内部,特别是与古代造山带一起。锆科数据显示了西吉纳组件期间和之后的热衰减的证据。另一方面,磷灰石数据显示了在突出的破碎期间和之后的热衰减的证据。在腔内设定中可以跟踪组装过程以及超级性的分解,特别是与古代造山带一起。这些假设将我们带回了“移动带”的旧概念,作为代表大陆地壳的弱部分的旧眶区域,假设在征集时具有更大的流动趋势。在这种情况下,巴西利亚带已经示出了具有巨大的垂直迁移率,通过隆起容纳构造远场力,结果,因此喂养了其周围的奇古代盆地。

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