Park Chaewon, Song Yungoo, Kim Namsoo, Choi Sung-Ja, Chwae Ueechan, Jang Yirang, Kwon Sanghoon, Kim Jeongmin, Kim Ha, Jeong Youn-Joong
Department of Earth System Sciences, Yonsei University, Seoul, Republic of Korea.
Korea Institute of Geoscience and Mineral Resources (KIGAM), Daejeon, Republic of Korea.
Sci Rep. 2023 Sep 13;13(1):15174. doi: 10.1038/s41598-023-42200-3.
Clastic successions found in the carbonate platform of continental margin during the Ordovician-Silurian Transition (OST) period are archives for interpreting paleo-depositional systems. Here, we report in-situ δO and Sr/Sr isotope chemo-stratigraphy for an unconformable clastic unit from the Cathaysia terrane that rifted off the Gondwana Supercontinent in the Early Paleozoic Era. Our results suggest a depositional proxy and model for geological events attributed to rapid changes in the sedimentary environment during the OST period. Importantly, these results present crucial clues that infer the influence of Paleo-Tethys Sea opening, global eustatic regression, and rapid sedimentary provenance change. Our study provides insight into paleo-tracer that could be a key method for interpreting depositional system of carbonate platform based on in-situ mineral isotope chemo-stratigraphy that preserves the original value of provenance and geochemical condition.
在奥陶纪-志留纪过渡(OST)时期大陆边缘碳酸盐台地中发现的碎屑岩层序是解释古沉积系统的档案。在此,我们报告了来自华夏地块一个不整合碎屑单元的原位δO和Sr/Sr同位素化学地层学,该地块在早古生代从冈瓦纳超大陆裂离。我们的结果提出了一个沉积代理和模型,用于解释OST时期沉积环境快速变化所导致的地质事件。重要的是,这些结果提供了关键线索,可推断古特提斯海打开、全球海平面下降和沉积物源快速变化的影响。我们的研究为古示踪剂提供了见解,这可能是基于原位矿物同位素化学地层学解释碳酸盐台地沉积系统的关键方法,原位矿物同位素化学地层学保留了物源和地球化学条件的原始值。