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Effect of the oxygen minimum zone on the second chlorophyll maximum in the Eastern Tropical Pacific off Mexico

机译:墨西哥东部热带太平洋的最小氧气区对第二个叶绿素最大值的影响

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摘要

Field data collected during June 2005 were used to determine the relationship between the second fluorescence maximum (FMax), the top of the oxygen minimum zone (OMZ), and physical processes (coastal currents, eddies, and upwelling) in the northern region of the Eastern Tropical Pacific off Mexico (ETPM). A recurrent second FMax was observed in the ETPM, which was formed only when the upper limit of the OMZ (9.0 μmol L-1) overlapped with the 1% downwelling blue irradiance depth (Ed490). The presence of the second FMax increased the total integrated water column chlorophyll from 20% to 40%. The second FMax was absent from areas where oxygenated California Current Water (CCW) deepened the upper limit of the OMZ below 1% Ed490. The poleward Mexican Coastal Current carried less oxygenated Subtropical Subsurface Water into the area, and enabled the formation of the second FMax. The variability of the second FMax driven by mesoscale physical processes was related to coastal upwelling and cyclonic eddies only in areas not influenced by CCW.
机译:2005年6月收集的现场数据用于确定第二个荧光最大值(FMax),最小氧气区顶部(OMZ)和北部北部地区的物理过程(沿海气流,涡流和上升流)之间的关系。墨西哥东部热带太平洋(ETPM)。仅当OMZ的上限(9.0μmolL-1)与1%的下降蓝光辐照深度(Ed490)重叠时,才在ETPM中观察到复发性第二FMax。第二个FMax的存在使总的水柱总叶绿素从20%增加到40%。在加氧的加利福尼亚现行水(CCW)加深了OMZ上限低于1%Ed490的区域中,没有第二个FMax。极极的墨西哥沿海海流将较少的含氧亚热带地下水带入该区域,并形成了第二个FMax。中尺度物理过程驱动的第二个FMax的变异性仅在不受CCW影响的地区与沿海上升流和旋风涡相关。

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