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The late Paleozoic ice age: An evolving paradigm

机译:晚古生代冰河时代:不断发展的范式

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The late Paleozoic icehouse was the longest-lived ice age of the Phanerozoic, and its demise constitutes the only recorded turnover to a greenhouse state. This review summarizes evidence for the timing, extent, and behavior of continental ice on Pangea in addition to the climate and ecosystem response to repeated transitions between glacial and interglacial conditions. Combined empirical and climate modeling studies argue for a dynamic ice age characterized by discrete periods of glaciation separated by periods of ice contraction during intermittent warmings, moderate-size ice sheets emanating from multiple ice centers throughout southern Gondwana, possible glaciation of the Northern Hemisphere, and atmospheric CO2 as a primary driver of both ice sheet and climate variability. The glacioeustatic response to fluctuations of these smaller ice sheets was likely less extreme than previously suggested. Modeling studies, stratigraphic relationships, and changes in both the geographic patterns and community compositions of marine fauna and terrestrial flora indicate the potential for strong responses to high-latitude glacial conditions in both ocean circulation and low-latitude climate. The forcings and feedbacks of these linkages, as well as existing climate paradoxes, define research targets for future studies of the late Paleozoic.
机译:古生代晚期的冰室是Phanerozoic寿命最长的冰期,其灭绝是唯一记录到温室状态的周转量。这篇综述总结了Pangea上大陆冰的时间,范围和行为的证据,以及气候和生态系统对冰川和冰川间条件反复转变的响应。经验和气候模型研究相结合,提出了一个动态的冰河时代,其特征是不连续的冰川期,间歇性变暖期间的冰期收缩,来自冈瓦纳南部多个冰中心的中等大小的冰盖,北半球可能的冰川化以及大气中的二氧化碳是冰盖和气候变化的主要驱动因素。对这些较小冰盖波动的冰川稳定反应可能没有以前建议的那么极端。建模研究,地层关系以及海洋动物和陆生植物区系的地理格局和群落组成的变化都表明,在海洋环流和低纬度气候中,对高纬度冰川条件有强烈反应的潜力。这些联系的强迫和反馈,以及现有的气候悖论,为晚古生代的未来研究确定了研究目标。

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