首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Role of latitudinal shift and climate change in evolution of red and yellow palaeosols of the Himalayas: Implications for early Oligocene seasonality and Mid-Miocene enhanced precipitation
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Role of latitudinal shift and climate change in evolution of red and yellow palaeosols of the Himalayas: Implications for early Oligocene seasonality and Mid-Miocene enhanced precipitation

机译:纬度转变和气候变化在喜马拉雅群岛红色和黄色古藻糖醇的演变中的作用:对早期寡核糖季节性和中间中间植物增强降水的影响

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摘要

Cenozoic atmospheric circulation, climatic changes, sedimentation and weathering over the Indian sub-continent were mainly influenced by the northward drift of the Indian Plate, the shrinking Paratethys, India-Asia collision and the rise of the Himalayas. This study is aimed at exploring the fluvial sedimentary record of the north-west part of the Himalayan Foreland Basin to interpret weathering and pedogenesis during early Oligocene to Mid-Miocene time. Palaeopedological investigation of a 3.1 km thick succession from Kangra sub-basin of the Himalayan Foreland Basin shows that the lower 2 km part of the succession is characterized by the red (10R hue) and the upper 1.1 km part of the succession by the yellow (2.5Y hue) palaeosols with varying intensity of weathering and pedogenesis. The association of sedimentary rocks and pedogenic expression in palaeosols indicate four (Type-A to Type-D) pedofacies in the entire Oligocene-Miocene succession. The pedofacies are defined by a decrease in the intensity of palaeopedogenic development from strongly-developed palaeopedofeatures in Type-A, moderately-developed palaeopedofeatures in Type-B, weakly-developed palaeopedofeatures in Type-C and to the only incipient stage of palaeopedogenesis in Type-D pedofacies. The palaeolatitudinal shift during the convergence of the Indian Plate played a major role in weathering and palaeopedogenesis with the inception of seasonality during the early Oligocene, which is demonstrated by the formation of the red palaeosols with pedogenic CaCO3 and vertic features in tropical conditions. The transition to yellow palaeosols at about 20 Ma is marked by increased humidity, rapid aggradation, pronounced uplift and enhanced erosion of the hinterland. These yellow palaeosols are characterized by the abundance of weakly-developed Bw and Bss horizons, pure clay pedofeatures and absence of any pedogenic CaCO3 during short pedogenic intervals in subtropical conditions.
机译:新生代大气循环,气候变化,沉降和印度亚大陆的风化主要受到印度板材北方漂移的影响,萎缩的ParateShys,印度 - 亚洲碰撞和喜马拉雅山的崛起。本研究旨在探索喜马拉雅前陆盆地西北部的河口泥沙沉积记录,以在早期的少细胞到中间烯代时间来解释风化和肌电。 Paleopopedopicology调查喜马拉雅前陆盆地的Kangra子盆地连续3.1公里的继承表明,较低的2公里的成功是由黄色( 2.5Y色调)具有不同强度的风化和肌肉强度的古糖醇。古糖醇和沉积岩和基础表达的关联表示整个寡烯 - 中肾上腺素中的四种(A型至型D)Pedofacies。 Pedofacies由古物发达的古物发育的古物植被中的古代开发的古物植被中的古物发育的古物植被中的较弱发达的古物植被中的植物型群体型群体和唯一的植物类型-d pedofacies。在印度板块的收敛过程中古地区偏移在风化和古代内生成中发挥了重要作用,并且在早期的少茂期间季节性初始化,通过在热带条件下形成红甘草醇和枸杞特征来证明。在大约20 mA的黄色腭溶解的过渡标志着湿度增加,快速的加剧,明显的隆起和腹地的侵蚀。这些黄色腭溶胶的特征在于弱发达的BW和BSS视野,纯粘土小植被,并且在亚热带的短暂的基础间隔期间没有任何基因CACO 3。

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