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首页> 外文期刊>African Journal of Marine Science >Seasonal and sub-seasonal oxygen and nutrient fluctuations in an embayment of an eastern boundary upwelling system: St Helena Bay
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Seasonal and sub-seasonal oxygen and nutrient fluctuations in an embayment of an eastern boundary upwelling system: St Helena Bay

机译:东部边界升支系统的核心和次季节性氧气和营养波动:St Helena Bay

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Seasonal, sub-seasonal and spatial fluctuations in bottom dissolved oxygen (DO) were examined in St Helena Bay, South Africa's largest and most productive embayment, between November 2013 and November 2014. Alongshore bay characteristics were assessed through comparison of variables along the 50-m depth contour. A mean coefficient of variation of 0.35 provided a measure of the relative variability of near-bottom DO concentrations along this contour. Consistently lower DO concentrations in the southern region of the bay in summer and autumn are attributed to enhanced retention. Across-shelf transects captured the seasonal development of hypoxia in relation to the distribution of phytoplankton biomass. Exceptional dinoflagellate blooms form extensive subsurface thin layers preceding the autumn DO minima in the south of the bay, prior to winter ventilation of the bottom waters. The seasonal decline in DO concentrations in the bottom waters was marked by sub-seasonal events of hypoxia, and ultimately anoxia linked to episodic deposition of organic matter, as indicated by increases in bottom chlorophyll-a concentrations. Seasonal changes in bottom water macronutrient concentrations followed trends in apparent oxygen utilisation (AOU), both of which mirrored DO concentrations. In the south of the bay, nitrogen loss through denitrification/anammox in suboxic waters was indicated by a dissolved inorganic N deficit in the bottom waters, which was most pronounced in autumn.
机译:在2013年11月和2014年11月期间,在ST Helena Bay,南非最大和最富有成效的压杆中审查了底部溶解氧(DO)的季节性,次季节和空间波动。通过比较50-的变量比较来评估沿海湾特征。 m深度轮廓。 0.35的平均变异系数提供了沿着该轮廓的近底浓度的相对变化的量度。在夏季和秋季湾南部地区的浓度始终如一,归因于增强保留。横跨货架横断面捕获了缺氧的季节性发展与浮游植物生物量的分布有关。特殊的Dinoflagellate Blooms在海湾南部南部的秋季进行了广泛的地下薄层,在冬季水域冬天的通风之前。底部水中浓度的季节性下降标志着缺氧的季节性事件,最终缺氧与有机物质的显着沉积相关,如底部叶绿素-A浓度的增加所示。底部水致营养素浓度的季节变化呈现出明显氧利用(Aou)的趋势,两者都是镜像的浓度。在海湾的南部,通过在底部水域中的溶解无机N缺陷表明通过解硝化/厌氧毒剂中的氮气损失,在秋季中最明显的溶解无机N缺陷。

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