College of Marine Science, Shanghai Ocean University, 999 Hu-Cheng-Huan-Lu, Shanghai 201306, PR China.
Mar Environ Res. 2010 Sep-Oct;70(3-4):308-17. doi: 10.1016/j.marenvres.2010.06.003. Epub 2010 Jun 25.
River discharges are the important freshwater and nutrient sources for Bohai Sea (BS), and have a profound impact on the local marine environment. In this paper, the annual cycles of nutrient and phytoplankton dynamics in 1980s were reproduced using a coupled biogeochemical-physical model. Based on the validated simulations, the nutrient limitation characters were further investigated by running the model with the riverine nutrient altered, first enriching nitrogen and then phosphorus. It was found that although the riverine N:P ratios in Yellow and Haihe Rivers were much higher than the Redfield number, the nitrogen enrichment was still able to enhance the algae bloom in Laizhou and Bohai Bays. On the other hand, the response of algae growth to phosphorus enrichment was not thus obvious, which suggests that the local phytoplankton dynamics was characterized by the nitrogen limitation. Simulations also show that the nitrogen enrichment is generally accompanied by the phosphorus consumption, so a shift from nitrogen limitation to phosphorus limitation may occur if such a trend continues.
河流径流量是渤海(BS)重要的淡水和营养物质来源,对当地海洋环境有深远影响。本研究使用耦合的生物地球化学-物理模型再现了 20 世纪 80 年代营养盐和浮游植物动态的年际变化。基于验证后的模拟结果,通过改变河流营养盐输入(先富氮后富磷)进一步研究了营养盐限制特征。结果表明,尽管黄河和海河的河流 N:P 比值远高于 Redfield 比值,但氮富集仍能促进莱州湾和渤海湾的藻类水华。另一方面,藻类生长对磷富集的响应并不明显,这表明当地浮游植物动态以氮限制为特征。模拟还表明,氮富集通常伴随着磷的消耗,如果这种趋势持续下去,可能会从氮限制转变为磷限制。