Sarmiento Aguasanta M, Oliveira Vanessa, Gómez-Ariza José Luis, Nieto José Miguel, Sánchez-Rodas Daniel
Department of Geology, Faculty of Experimental Sciences, University of Huelva, 21071 Huelva, Spain.
Chemosphere. 2007 Jan;66(4):677-83. doi: 10.1016/j.chemosphere.2006.07.084. Epub 2006 Sep 11.
Twenty four hours diel cycles of arsenic speciation in Acid Mine Drainage (AMD) due to photooxidation have been reported for the first time. AMD samples were taken during 48 h (31st March and 1st April, 2005) at 6 h intervals from the effluent of a massive abandoned polymetallic sulphide mine of the Iberian Pyrite Belt (Sw Spain). Samples were preserved in situ using cationic exchange prior to analysis by coupled high performance liquid chromatography, hydride generation and atomic fluorescence spectrometry (HPLC-HG-AFS) for arsenic speciation. The results indicated the presence of inorganic arsenic species with daily means of 262mugl(-1) for As(V) and 107 microg l(-1) for As(III). No marked diel trend was observed for As(V). However, a marked diel trend was observed for As(III) in the two studied days, with maximum concentrations during nighttime (141-143 microg l(-1)) and minimum concentrations at daytime (72-77 microg l(-1)). This difference in concentration during daytime and nighttime is ca. 100%. A similar diel cycle was observed for iron. An explanation for the arsenic diel cycles observed is the light induced photooxidation of As(III) and the elimination of As(V) due to its adsorption onto Fe precipitates during the daytime. Furthermore, the diel changes in arsenic speciation emphasize the importance of designing suitable sampling strategies in AMD systems.
首次报道了酸性矿山排水(AMD)中由于光氧化作用导致的砷形态的24小时昼夜循环。2005年3月31日至4月1日期间,每隔6小时从伊比利亚黄铁矿带(西班牙西南部)一个大型废弃多金属硫化物矿山的废水排放口采集AMD样品。在通过高效液相色谱、氢化物发生和原子荧光光谱联用(HPLC-HG-AFS)分析砷形态之前,使用阳离子交换法对样品进行原位保存。结果表明存在无机砷形态,As(V)的日均含量为262μg l⁻¹,As(III)的日均含量为107μg l⁻¹。未观察到As(V)有明显的昼夜趋势。然而,在研究的两天中均观察到As(III)有明显的昼夜趋势,夜间浓度最高(141 - 143μg l⁻¹),白天浓度最低(72 - 77μg l⁻¹)。白天和夜间的浓度差异约为100%。铁也观察到了类似的昼夜循环。所观察到的砷昼夜循环的一个解释是As(III)的光诱导光氧化作用以及白天As(V)由于吸附到铁沉淀物上而被去除。此外,砷形态的昼夜变化强调了在AMD系统中设计合适采样策略的重要性。