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MARINE GEOLOGY and GEOPHYSICS

机译:海洋地质与地球物理

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Proposed links between magmatism and ecological catastrophe include global warming, global cooling, ozone depletion and changes in ocean chemistry. However, the critical combinations of environmental changes responsible for global mass extinction are undetermined. In particular, the combined and competing climate effects of sulfur and carbon outgassing remain to be quantified. Here we present results from global climate model simulations of flood basalt outgassing that account for sulfur chemistry and aerosol microphysics with coupled atmosphere and ocean circulation. We consider the effects of sulfur and carbon in isolation and in tandem. We find that coupling with the ocean strongly influences the climate response to prolonged flood basalt-scale outgassing. We suggest that sulfur and carbon emissions from the Siberian Traps combined to generate systemic swings in temperature, ocean circulation and hydrology within a longer-term trend towards a greenhouse world in the early Triassic.
机译:岩浆活动和生态灾难之间的拟议联系包括全球变暖,全球冷却,臭氧消耗和海洋化学变化。但是,尚不确定导致全球大规模灭绝的环境变化的关键组合。特别是,硫和碳排放的综合和竞争性气候影响仍有待量化。在这里,我们介绍了洪水玄武岩放气的全球气候模型模拟结果,这些模拟结果说明了硫化学和气溶胶微观物理学与大气和海洋环流的耦合作用。我们单独和串联考虑硫和碳的影响。我们发现,与海洋的耦合强烈影响了对长期洪水玄武岩规模脱气的气候响应。我们建议将西伯利亚圈套中的硫和碳排放结合起来,从而在三叠纪早期朝温室世界发展的长期趋势内,引起温度,海洋环流和水文学的系统性波动。

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    《Oceanographic Literature Review》 |2019年第1期|59-111|共53页
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