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Influence of Tropical Cyclone on the Water Quality of Atsumi Bay

机译:热带气旋对厚水湾水质的影响

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Typhoon No. 14 that hit Japan on 30th October 2010 brought a huge water mass that increased the water volume and nutrient into the Atsumi Bay estuary, Japan. The aims of this research were to clarify the impact of a typhoon on the physical properties and nutrient concentrations of Atsumi Bay. This study summarizes the effects of a typhoon on nutrient fluxes from rivers to the estuary, which is revealed by the less-saline surface coastal water. The elevated surface chlorophyll a concentrations along the Toyo River transect were possibly caused by phytoplankton uptake on nutrient supply. The greatest increases of concentrations of nitrogen and phosphorus after typhoon generally appeared in the surface waters along the Umeda River transect caused by high nutrient concentrations from Umeda River; but decreased along the Toyo River transect due to dilution by seawater and possibly caused by phytoplankton uptake. The pre-typhoon predominant species of dissolved nitrogen (DN) is dissolved organic nitrogen (DON), it was changed to be 54% of dissolved inorganic nitrogen (DIN) along the Umeda River transect after typhoon in the surface layer. The lower post-typhoon bottom concentration of nutrient along both the Toyo and Umeda River transects was influenced by the disturbances of hypoxic condition in the bottom layer.
机译:2010年10月30日袭击日本的14号台风带来了巨大的水团,这增加了水量和养分进入日本厚水湾河口。本研究的目的是阐明台风对厚水湾物理特性和养分浓度的影响。这项研究总结了台风对从河流到河口的养分通量的影响,这表现在盐度较低的近岸沿海水域中。东洋河断面的表面叶绿素a浓度升高可能是由于养分供应吸收了浮游植物所致。台风过后,由于梅田河养分含量高,在梅田河断面的地表水中氮和磷的浓度增加最大。但由于海水稀释和可能由于浮游植物的吸收而导致东洋河断面减少。台风前的主要溶解态氮(DN)是溶解性有机氮(DON),在台风经过表层后,沿梅田河断面变为溶解态无机氮(DIN)的54%。台风和梅田河断面的台风后营养物较低浓度受底层低氧条件的干扰影响。

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