State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210046, PR China.
Chemosphere. 2011 Feb;82(6):935-9. doi: 10.1016/j.chemosphere.2010.09.067. Epub 2010 Nov 20.
The diurnal atmospheric phosphine (PH3) concentrations and fluxes at the water-air interface in Lake Taihu were reported. The results showed that the PH3 flux at the water-air interface ranged from -69.9±29.7 to 121±42 ng m(-2) h(-1), with a mean flux of 14.4±22.5 ng m(-2) h(-1). The fluxes were both negative and positive during the diurnal period, indicating that the lake can act as a sink and a source of PH3. In addition, the PH3 fluxes were positively correlated with water temperature, total soluble phosphorus and soluble reactive phosphorus, while they were negatively correlated with water redox potential. A similar diurnal variation curve of atmospheric PH3 concentrations was observed during all four seasons, with the maximum level occurring in early morning and the minimum appearing around midday. These findings suggest that light plays an important role in the elimination of atmospheric PH3. A significant positive correlation was also found between air temperature and atmospheric PH3 concentration. The mean flux of PH3 in Lake Taihu was higher than in other reported wetlands, with an estimated annual emission of PH3 to the atmosphere of 2.94×10(5) g y(-1).
报道了太湖水面-气界面昼夜大气膦(PH3)浓度和通量。结果表明,水面-气界面 PH3 通量范围为-69.9±29.7 至 121±42ngm(-2)h(-1),平均通量为 14.4±22.5ngm(-2)h(-1)。昼夜期间通量既有正有负,表明湖泊既可以是 PH3 的汇,也可以是源。此外,PH3 通量与水温、总可溶性磷和可溶解性反应磷呈正相关,而与水氧化还原电位呈负相关。在四季中均观察到大气 PH3 浓度昼夜变化曲线相似,最高水平出现在清晨,最低水平出现在中午左右。这些发现表明,光照在大气 PH3 的消除中起着重要作用。空气温度与大气 PH3 浓度之间也存在显著正相关。太湖 PH3 的平均通量高于其他报道的湿地,估计每年向大气排放 PH3 的量为 2.94×10(5)g y(-1)。