浮游植物群落变化引起的渤海夏季缺氧

IF 1.6 Q4 ENVIRONMENTAL SCIENCES Anthropocene Coasts Pub Date : 2023-03-20 DOI:10.1139/anc-2020-0017
Hao Wei, Liang Zhao, Haiyan Zhang, Youyu Lu, Wei Yang, Guisheng Song
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引用次数: 8

摘要

在中国北部沿海的渤海中部深处,长期观测显示,2006年至2018年夏季,底部附近的溶解氧浓度明显低于1978年至2005年。底部DO的减少与水柱营养结构变化引起的浮游植物群落变化密切相关。从文献综述来看,对浮游植物群落结构的观察表明,自21世纪以来,甲藻与硅藻的丰富比例有所增加,并实现了小型化。2006年以后,新的优势物种dinoflagel晚期和微微和纳米细胞藻类碎屑下沉速度慢,停留时间长,有利于水柱中的有效耗氧,并导致耗氧增强和DO浓度下降。分析还表明,水温、分层和沉积物再悬浮在DO的长期变化中起着不太重要的作用。缺氧的形成与浮游植物群落的变化之间的联系回答了为什么渤海在近十年开始出现缺氧,而富营养化从20世纪80年代开始。所确定的缺氧形成的新机制可能适用于富营养化导致浮游植物群落变化的其他沿海海域,应在生物地球化学模型中予以考虑。
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Summer hypoxia in Bohai Sea caused by changes in phytoplankton community

In the deep central part of the Bohai Sea off the coast of northern China, long-term observations show significantly lower dissolved oxygen (DO) concentration near the bottom in summer during 2006–2018 than during 1978–2005. The decrease in bottom DO is closely linked to changes in phytoplankton community driven by nutrient structure changes in the water column. From literature review, observations in the phytoplankton community structure indicate an increase in the abundant proportion of dinoflagellate to diatom and miniaturization since the 21st century. The new dominate species of dinoflagel-late and the pico- and nano-celled algae detritus, with slow sinking rate and long residence time, favor the efficient oxygen consumption in the water column and lead to oxygen depletion enhancement and DO concentration decrease after 2006. Analyses also suggest that water temperature, stratification, and resuspension of sediment play less significant roles in long-term variations of DO. The linkage of hypoxia formation to changes of phytoplankton community answers why hypoxia in the Bohai Sea started to occur in the recent decade while eutrophication began since the 1980s. The identified new mechanism of hypoxia formation may be applicable to other coastal seas where eutrophication has led to changes in the phytoplankton community, and should be considered in biogeochemical models.

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