Can palaeosols reveal palaeoenvironmental variability of fluvial systems? An example from the upper portion of the Bauru Group (Upper Cretaceous, SE Brazil)

IF 2.7 2区 地球科学 Q1 GEOLOGY Sedimentary Geology Pub Date : 2024-02-20 DOI:10.1016/j.sedgeo.2024.106604
Giorgio Basilici , Paolo Lorenzoni , Áquila Ferreira Mesquita , Juraj Janočko , Luca Colombera , Grace I.E. Cosgrove , Nigel Philip Mountney , Carlos Roberto Souza Filho , Alexandre Ribeiro Cardoso , Agustín Guillermo Martinelli , Lucas Ernesto Fiorelli , Richard Guillermo Vasconez Garcia , Thiago da Silva Marinho , André Marconato
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Abstract

Palaeosols are common in sedimentary successions of continental origin, and notably they comprise the majority of the thickness of some accumulated successions of fluvial origin. Yet, detailed investigation of palaeosols and evaluation of their palaeoenvironmental significance are not routinely undertaken in detail in many sedimentological studies. A careful analysis of palaeosols may, however, reveal that sedimentary units, which appear similar if based solely on the facies analysis, indeed show strongly distinct palaeoenvironmental and depositional characteristics.

This is the case of the upper portion of the Bauru Group, a 100–190 m-thick Maastrichtian red sandstone unit of fluvial origin, present over an area of c. 180,000 km2 in south-eastern Brazil. In this study, the palaeosols of this unit, which constitute 25–92 % of the succession by thickness, are used to decipher palaeoenvironmental climate conditions, sediment source areas, and relationships between pedogenic and depositional processes. Through the combined study of macroscopic, micromorphological, and geochemical aspects of the palaeosols and of facies analysis of the deposits, the upper portion of the Bauru Group succession is separated into three sectors: north-western, north-eastern, and south-eastern. Although these three areas are all characterised by similar lithology types and lithofacies, indicative of deposition in alluvial systems, the palaeosol analysis highlights that they were each characterised by different climate, different clastic source areas and different dynamics and interaction of the pedogenic and sedimentary processes. This research reveals the critical significance of the palaeosols for discriminating otherwise apparently similar depositional units.

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古溶胶能否揭示河流系统的古环境变异性?以包鲁组上部(上白垩世,巴西东南部)为例
古溶胶在大陆源沉积演替中很常见,特别是在一些河道源累积演替中,古溶胶占了大部分厚度。然而,在许多沉积学研究中,并没有对古溶胶进行详细调查,也没有对其古环境意义进行评估。然而,对古溶胶的仔细分析可能会揭示出,如果仅根据岩相分析,看似相似的沉积单元实际上显示出强烈不同的古环境和沉积特征。该单元的古溶胶厚度占演替厚度的 25-92%,本研究利用该单元的古溶胶来解读古环境气候条件、沉积物源区以及成土过程和沉积过程之间的关系。通过对古溶胶的宏观、微观形态和地球化学方面的综合研究,以及对沉积物的剖面分析,将包鲁组演替的上部分为三个区域:西北部、东北部和东南部。虽然这三个地区都具有类似的岩性类型和岩相,表明它们沉积在冲积系统中,但古溶胶分析突出表明,它们各自具有不同的气候特征、不同的碎屑源区以及不同的动力和成土过程与沉积过程之间的相互作用。这项研究揭示了古溶胶对于区分表面上相似的沉积单元的重要意义。
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来源期刊
Sedimentary Geology
Sedimentary Geology 地学-地质学
CiteScore
5.10
自引率
7.10%
发文量
133
审稿时长
32 days
期刊介绍: Sedimentary Geology is a journal that rapidly publishes high quality, original research and review papers that cover all aspects of sediments and sedimentary rocks at all spatial and temporal scales. Submitted papers must make a significant contribution to the field of study and must place the research in a broad context, so that it is of interest to the diverse, international readership of the journal. Papers that are largely descriptive in nature, of limited scope or local geographical significance, or based on limited data will not be considered for publication.
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