为了揭示腾冲地区降水中氢氧稳定同位素特征,利用2009年1月~2011年12月腾冲地区339个降水样品资料,对降水中的氢、氧同位素组成及其影响因素进行了分析和研究。结果表明:腾冲地区大气降水中δ18O值变化范围为-2678‰~405‰,δD值变化范围为-20095‰~3689‰,均处于全球降水δ18O与δD值变化范围内。天气尺度下,腾冲地区降水中δ18O的变化具有显著的降水量效应以及反温度效应。但是,在季风降水期间,如果相邻两天都有降水发生时,腾冲地区降水中δ18O值变化并不一定遵循“降水量效应”。利用ECMWF(European Centre for Medium Range Weather Forecasts)提供的TCWV(Total Column Water Vapour)再分析资料,发现TCWV与δ18O的日变化存在明显的反位相对应关系。腾冲地区的大气降水线为:δD=818δ18O+1172,斜率与截距均比全球和全国的大气降水线偏大,说明该地区气候湿润多雨。d值分布具有季节差异,在雨季(4~9月),腾冲地区降水的水汽主要来源于低纬度海洋,空气湿度大,降水中d值较小;在干季(10~3月),由于受大陆性气团控制,腾冲地区降水的水汽主要来源于西风带的输送以及局地再蒸发水汽的补充,空气湿度小,降水中d值较大 相似文献
The stability of CuO nanoparticles (NPs) is expected to play a key role in the environmental risk assessment of nanotoxicity in aquatic systems. In this study, the effect of alginate (model polysaccharides) on the stability of CuO NPs in various environmentally relevant ionic strength conditions was investigated by using time-resolved dynamic light scattering. Significant aggregation of CuO NPs was observed in the presence of both monovalent and divalent cations. The critical coagulation concentrations (CCC) were 54.5 and 2.9 mM for NaNO3 and Ca(NO3)2, respectively. The presence of alginate slowed nano-CuO aggregation rates over the entire NaNO3 concentration range due to the combined electrostatic and steric effect. High concentrations of Ca2+ (>6 mM) resulted in stronger adsorption of alginate onto CuO NPs; however, enhanced aggregation of CuO NPs occurred simultaneously under the same conditions. Spectroscopic analysis revealed that the bridging interaction of alginate with Ca2+ might be an important mechanism for the enhanced aggregation. Furthermore, significant coagulation of the alginate molecules was observed in solutions of high Ca2+ concentrations, indicating a hetero-aggregation mechanism between the alginate-covered CuO NPs and the unabsorbed alginate. These results suggested a different aggregation mechanism of NPs might co-exist in aqueous systems enriched with natural organic matter, which should be taken into consideration in future studies.
An enzyme-limited immunosorbent assay (ELISA) was used to monitor spatial and temporal variation of microcystins (MCs) in Lake Taihu. MC concentrations were higher in summer and autumn than in other seasons. Maximal MC concentration was 15.6 mug L(-1). Compared to central Lake Taihu and Wuli Bay, Meiliang Bay had higher MC concentrations due to high biomass of Microcystis. 相似文献