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Air-sea exchange of gaseous mercury in the tropical coast (Luhuitou fringing reef) of the South China Sea, the Hainan Island, China

机译:中国海南岛南海热带海岸(鹿回头边缘礁)气态汞的海-气交换

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The air-sea exchange of gaseous mercury (mainly Hg(0)) in the tropical ocean is an important part of the global Hg biogeochemical cycle, but the related investigations are limited. In this study, we simultaneously measured Hg(0) concentrations in surface waters and overlaying air in the tropical coast (Luhuitou fringing reef) of the South China Sea (SCS), Hainan Island, China, for 13 days on January-February 2015. The purpose of this study was to explore the temporal variation of Hg(0) concentrations in air and surface waters, estimate the air-sea Hg(0) flux, and reveal their influencing factors in the tropical coastal environment. The mean concentrations (+/- SD) of Hg(0) in air and total Hg (THg) in waters were 2.34 +/- 0.26 ng m(-3) and 1.40 +/- 0.48 ng L-1, respectively. Both Hg(0) concentrations in waters (53.7 +/- 18.8 pg L-1) and Hg(0)/THg ratios (3.8 %) in this study were significantly higher than those of the open water of the SCS in winter. Hg(0) in waters usually exhibited a clear diurnal variation with increased concentrations in daytime and decreased concentrations in nighttime, especially in cloudless days with low wind speed. Linear regression analysis suggested that Hg(0) concentrations in waters were positively and significantly correlated to the photosynthetically active radiation (PAR) (R (2) = 0.42, p < 0.001). Surface waters were always supersaturated with Hg(0) compared to air (the degree of saturation, 2.46 to 13.87), indicating that the surface water was one of the atmospheric Hg(0) sources. The air-sea Hg(0) fluxes were estimated to be 1.73 +/- 1.25 ng m(-2) h(-1) with a large range between 0.01 and 6.06 ng m(-2) h(-1). The high variation of Hg(0) fluxes was mainly attributed to the greatly temporal variation of wind speed.
机译:热带海洋中气态汞(主要为Hg(0))的海-气交换是全球Hg生物地球化学循环的重要组成部分,但相关研究有限。在这项研究中,我们在2015年1月至2月的13天中,同时测量了中国海南岛南海热带海岸(鹿回头边缘礁)的地表水和覆盖空气中的Hg(0)浓度。这项研究的目的是探讨空气和地表水中Hg(0)浓度的时间变化,估算海气中Hg(0)的通量,并揭示其在热带沿海环境中的影响因素。空气中Hg(0)的平均浓度(+/- SD)和水中的总Hg(THg)分别为2.34 +/- 0.26 ng m(-3)和1.40 +/- 0.48 ng L-1。在这项研究中,水中的Hg(0)浓度(53.7 +/- 18.8 pg L-1)和Hg(0)/ THg比率(3.8%)均显着高于冬季SCS的开放水域。水中的Hg(0)通常表现出明显的昼夜变化,白天浓度升高,夜间浓度降低,尤其是在低风速无云的日子。线性回归分析表明,水中的Hg(0)浓度与光合有效辐射(PAR)正相关且显着相关(R(2)= 0.42,p <0.001)。与空气相比,地表水总是被Hg(0)过饱和(饱和度为2.46至13.87),表明地表水是大气中Hg(0)的来源之一。气海Hg(0)通量估计为1.73 +/- 1.25 ng m(-2)h(-1),范围在0.01到6.06 ng m(-2)h(-1)之间。 Hg(0)通量的高变化主要归因于风速的极大时间变化。

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