Villanueva J D, Le Coustumer P, Denis A, Abuyan R, Huneau F, Motelica-Heino M, Peyraube N, Celle-Jeanton H, Perez T R, Espaldon M V O
Université de Bordeaux, Université Bordeaux Montaigne, EA 4592 Géoressources & Environnement, ENSEGID, 1 allée F. Daguin, F-33607, Pessac, France.
Environ Sci Pollut Res Int. 2015 Sep;22(18):13842-57. doi: 10.1007/s11356-015-4835-6. Epub 2015 Jun 18.
The spatio-temporal trend of trace metals (Cd, Co, Cr, Cu, Ni, Pb, and Zn) in a tropical urban estuary under the influence of monsoon was determined using diffusive gradient in thin films (DGT) in situ samplers. Three different climatic periods were observed: period 1, dry with dredging activity; period 2, intermediate meaning from dry to wet event; and period 3, wet having continuous rainfall. Conforming to monsoon regimes, these periods correspond to the following: transition from winter to summer, winter, and summer monsoons, respectively. The distinction of each period is defined by their specific hydrological and physico-chemical conditions. Substantial concentrations of the trace metals were detected. The distribution and trend of the trace metals under the challenge of a tropical climate were able to follow using DGT as a sensitive in situ sampler. In order to identify the differences among periods, statistical analyses were performed. This allowed discriminating period 2 (oxic water) as significantly different compared to other periods. The spatio-temporal analysis was then applied in order to distinguish the trend of the trace metals. Results showed that the trend of trace metals can be described according to their response to (i) seasonal variations (Cd and Cr), (ii) spatio-temporal conditions (Co, Cu, Ni, and Pb), and (iii) neither (i) nor (ii) meaning exhibiting no response or having constant change (Zn). The correlation of the trace metals and the physico-chemical parameters reveals that Cd, Co, Cu, and Cr are proportional to the dissolved oxygen (DO), Cd and Ni are correlated pH, and Zn lightly influenced by salinity.
利用薄膜扩散梯度(DGT)原位采样器测定了季风影响下热带城市河口痕量金属(镉、钴、铬、铜、镍、铅和锌)的时空变化趋势。观测到三个不同的气候时期:时期1,干燥且有疏浚活动;时期2,介于干燥到湿润事件之间的过渡时期;时期3,湿润且有持续降雨。与季风模式一致,这些时期分别对应从冬季到夏季的过渡、冬季和夏季季风。每个时期的区别由其特定的水文和物理化学条件定义。检测到痕量金属有较高浓度。使用DGT作为灵敏的原位采样器能够追踪热带气候挑战下痕量金属的分布和变化趋势。为了识别不同时期之间的差异,进行了统计分析。这使得能够区分出时期2(含氧水)与其他时期有显著差异。然后应用时空分析来区分痕量金属的变化趋势。结果表明,痕量金属的变化趋势可以根据它们对(i)季节变化(镉和铬)、(ii)时空条件(钴、铜、镍和铅)以及(iii)既不响应(i)也不响应(ii)即无响应或呈恒定变化(锌)来描述。痕量金属与物理化学参数的相关性表明,镉、钴、铜和铬与溶解氧(DO)成正比,镉和镍与pH相关,锌受盐度影响较小。