Hall K C, Baldwin D S, Rees G N, Richardson A J
Murray-Darling Freshwater Research Centre, PO Box 991, Wodonga Vic, Australia.
Sci Total Environ. 2006 Oct 15;370(1):235-44. doi: 10.1016/j.scitotenv.2006.07.019. Epub 2006 Aug 23.
This project examined the extent of sulfidic sediments in freshwater wetlands of the Murray-Darling Basin, Australia. We sampled 81 wetlands throughout the basin with methods previously developed for the analysis of coastal acid sulfate soils. Sulfidic sediments are generally regarded as a coastal phenomenon. We tested the hypothesis that elevated concentrations of mineral sulfides may also accumulate in sediments of inland wetlands. Of the 81 wetlands sampled, 17 (21%) contained reduced sulfur in sediments at concentrations above suggested trigger values. Most of the affected wetlands were adjacent to the Murray River, with only several associated with other major river catchments. Reduced sulfur in the sediments was positively correlated with sulfate concentrations in the overlying water column. This represents a concern for wetland managers because of the increasing desire to return wetlands to a more natural wetting and drying cycle to improve wetland health. However, during drying, sulfidic sediments oxidise and produce acid, which may exceed the buffering capacity of the system and ultimately harm aquatic life. Therefore, if sulfidic sediments are present, a drying phase should only be reinstated after careful consideration of the potential acidification risks. This study verified that sulfidic sediments can occur in freshwater wetlands in concentrations that could pose an ecological risk if mismanaged.
本项目研究了澳大利亚墨累-达令盆地淡水湿地中硫化物沉积物的分布范围。我们采用先前开发的用于分析沿海酸性硫酸盐土壤的方法,对该盆地的81个湿地进行了采样。硫化物沉积物通常被视为一种沿海现象。我们检验了一个假设,即内陆湿地沉积物中也可能积累高浓度的矿物硫化物。在采样的81个湿地中,有17个(21%)湿地沉积物中的还原硫浓度高于建议的触发值。大多数受影响的湿地毗邻墨累河,只有少数与其他主要河流集水区相关。沉积物中的还原硫与上覆水柱中的硫酸盐浓度呈正相关。这引起了湿地管理者的关注,因为人们越来越希望让湿地恢复更自然的干湿循环以改善湿地健康状况。然而,在干涸期间,硫化物沉积物会氧化并产生酸,这可能超过系统的缓冲能力并最终损害水生生物。因此,如果存在硫化物沉积物,在仔细考虑潜在的酸化风险之后,才应恢复干涸阶段。本研究证实,淡水湿地中可能存在硫化物沉积物,如果管理不当,其浓度可能会带来生态风险。