Biogeochemical Response of the Water Column of Concepción Bay, Chile, to a New Regime of Atmospheric and Oceanographic Variability

Luis Bustos-Espinoza, Patricio Torres-Ramírez, Sergio Figueroa, Pablo S. González, Marcelo A. Pavez, Rodolfo Jerez, G. Saldías, Claudio Espinoza, Alexander Galán
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Abstract

Concepción Bay is a socio-economic and ecologically important embayment whose hydrographic variability has been historically regulated by wind-modulated seasonal upwelling events during spring–summer and by freshwater from precipitation and river discharges during fall–winter. This system is subject to several anthropogenic and environmental strains due to the intense port activity and the increasing occurrence of extreme natural events. This study determines a new hydrographic regime and characterizes and analyzes the biogeochemical response of the water column to changes in rainfall and upwelling patterns. Despite the intrusion of nitrate-rich upwelled waters that enhance biological productivity remains more intense during spring–summer, the system remains fertilized year-long due to the occurrence of persistent upwelling pulses during fall–winter. The hydrographic structure presented a two-layer water column that was stratified thermally in spring–summer and primarily by freshwater inputs in fall–winter. Nevertheless, the regular pattern of the rainfall has changed (a decrease in precipitation and an increased frequency of extreme rainfall events), together with recurrent upwelling-favorable wind pulses during the non-upwelling season. This new regime has altered the seasonality of the physicochemical conditions and the structure of the microplanktonic communities, with productive and sanitary implications affecting the biogeochemical status of CB.
智利康塞普西翁湾水柱对大气和海洋变化新机制的生物地球化学响应
康塞普西翁湾是一个具有重要社会经济和生态意义的海湾,其水文变化历来受春夏季风力调节的季节性上升流事件以及秋冬季降水和河流排放的淡水调节。由于港口活动频繁,极端自然事件日益增多,该系统受到了一些人为和环境因素的影响。这项研究确定了一种新的水文机制,并描述和分析了水体对降雨和上涌模式变化的生物地球化学反应。尽管富含硝酸盐的上涌水体的入侵在春夏季节更加强烈,从而提高了生物生产力,但由于秋冬季节出现持续的上涌脉冲,该系统全年都保持肥沃。水文结构呈现出两层水柱,春夏为热分层,秋冬主要由淡水输入。然而,降雨的常规模式发生了变化(降水量减少,极端降雨事件的频率增加),同时在非上升流季节经常出现有利于上升流的风脉冲。这一新的制度改变了物理化学条件的季节性和微浮游生物群落的结构,对 CB 的生物地球化学状况产生了生产和卫生方面的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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