地质学
远足
大陆边缘
海水
地体
放射性核素
火山
风化作用
句号(音乐)
古气候学
古生物学
地球科学
火山作用
构造学
岩浆作用
海平面
显生宙
剥蚀
构造隆升
岛弧
裂谷
焊剂(冶金)
火山岩
全球降温
地幔(地质学)
地质时标
古地理学
古地磁
火成岩
作者
Shan Li,Wenjiao Xiao,Long Xiang Quek,David Chew,Iwan Setiawan
出处
期刊:Geology
[Geological Society of America]
日期:2026-08-13
摘要
The Middle Triassic (246−235 Ma) seawater 87Sr/86Sr record exhibits an excursion following the recovery from Siberian large igneous province volcanism. Two primary mechanisms have been proposed to explain the isotopic shift: (1) a change in the 87Sr/86Sr ratio of the continental weathering flux, or (2) a change in the flux magnitude itself. We demonstrate that the excursion is best explained by the former: an influx of low-87Sr/86Sr material derived from equatorial juvenile arc terranes along the Sundaland margin of Pangea. These terranes, characterized with 87Sr/86Sr = 0.7040−0.7078, have been largely overlooked in previous models of Triassic seawater Sr cycling. Using a quantitative flux-ratio model constrained by steady-state Sr fluxes during a period of Pangean equilibrium, we show that the observed excursion requires an ∼4 × 10−4 decrease in the isotopic ratio of the global continental weathering flux. Attributing this shift solely to the Sundaland margin implies that the region contributed ∼10% of the global continental Sr flux—a value consistent with independent paleoclimate simulations. Our results show that intense tropical weathering of rapidly exhumed, juvenile volcanic arcs (rather than an unlikely alternative, given independent proxy constraints on global fluxes) drove the 87Sr/86Sr decline. This highlights the role of climatically amplified, geochemically distinct terranes in modulating global seawater isotopic signatures during periods of relative tectonic quiescence, challenging the long-held view of Pangea as a uniformly radiogenic Sr source.
科研通智能强力驱动
Strongly Powered by AbleSci AI