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Weathering regime in the Eastern Himalaya since the mid-Miocene:Indications from detrital geochemistry and clay mineralogy of the Kameng River Section, Arunachal Pradesh, India

机译:中新世以来喜马拉雅东部的风化作用:印度阿鲁纳恰尔邦卡孟河段的碎屑地球化学和粘土矿物学指示

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摘要

It is crucial to understand lateral differences in paleo-climate and weathering in order to fully understand the evolution of the Himalayan mountain belt. While many studies have focused on the western and central Himalaya, the eastern Himalaya remains poorly studied with regard to paleoclimate and past weathering history. Here we present a multi-proxy study on the Mio-Pliocene sedimentary foreland-basin section along the Kameng River in Arunachal Pradesh, northeast India, in order to obtain better insight in the weathering history of the eastern Himalaya. We analyzed a continuous sedimentary record over the last 13 Ma. Heavy-mineral and petrography data give insight into diagenesis and provenance, showing that the older part of the section is influenced by diagenesis and that sediments were not only deposited by a large Trans-Himalayan river and the palaeo-Kameng river, but also by smaller local tributaries. By taking into account changes in diagenesis and provenance, results of clay mineralogy and major element analysis show an overall increase in weathering intensity over time, with a remarkable change between ~10 and ~8 Ma.
机译:了解古气候和风化的横向差异对于充分了解喜马拉雅山带的演化至关重要。尽管许多研究都集中在喜马拉雅山脉的中部和西部,但喜马拉雅山脉东部的古气候和过去的风化历史仍然研究不足。在这里,我们对印度东北部阿鲁纳恰尔邦的卡缅河沿河的上新统沉积前陆盆地剖面进行了多代理研究,目的是为了更好地了解喜马拉雅东部的风化历史。我们分析了过去13 Ma的连续沉积记录。重矿物学和岩相学数据提供了成岩作用和物源的洞察力,表明该断层的较早部分受成岩作用的影响,并且沉积物不仅由大的横喜马拉雅河和古卡门河沉积,还受到较小的沉积作用。当地支流。考虑到成岩作用和物源的变化,粘土矿物学和主要元素分析的结果显示,风化强度随时间整体增加,在〜10至〜8 Ma之间有显着变化。

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