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Role of Panama uplift on oceanic freshwater balance

机译:巴拿马隆升对海洋淡水平衡的作用

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Comparison between planktic foraminiferal oxygen isotope records from the Caribbean Sea (Ocean Drilling Program [ODP] Site 999) and the equatorial east Pacific (ODP Site 851) suggests an increase in Caribbean surface-water salinity between 4.7 and 4.2 Ma. The modern Atlantic-Pacific salinity contrast of about 1‰ became fully established at 4.2 Ma as reflected by a 0.5‰ planktic foraminifera ~(18)O enrichment in the Caribbean Sea. This is interpreted as the result of restricted surface-water exchange between the tropical Atlantic and Pacific in response to the shoaling of the Central American seaway. As a consequence, the Atlantic and Pacific surface-ocean circulation regime changed, as did the freshwater balance between the major ocean basins. Simultaneous shifts in benthic carbon isotope records in the Caribbean Sea suggest an intensification in North Atlantic thermohaline circulation. These results indicate that the Panamanian isthmus formation caused several new ocean-atmosphere feedback mechanisms that have affected climate since the early Pliocene.
机译:来自加勒比海(海洋钻探计划[ODP]站点999)和赤道东太平洋(ODP站点851)的板式有孔虫氧同位素记录的比较表明,加勒比地表水盐度在4.7和4.2 Ma之间增加。加勒比海的0.5‰浮游有孔虫〜(18)O富集反映出,现代大西洋-太平洋盐度反差在4.2 Ma时已完全确立,约为4.2 Ma。这被解释为热带大西洋和太平洋之间为响应中美洲海道的浅滩而限制了地表水交换的结果。结果,大西洋和太平洋的表层海洋环流方式发生了变化,主要海盆之间的淡水平衡也发生了变化。加勒比海底栖碳同位素记录的同时变化表明北大西洋热盐环流的加剧。这些结果表明,自上新世以来,巴拿马地峡的形成引起了几种新的海洋-大气反馈机制,这些机制已经影响了气候。

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