首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Chemical speciation and bioavailability of Cd,Cu, Pb and Zn in Western Balkan soils
Authors:O Popovic  ÅR Almås  M Manojlovic  S Muratovi?
Institution:1. Department of Plant and Environmental Sciences IPM , University of Life Sciences UMB , ?s, Norway;2. Department of Agricultural Sciences and Ecology, Faculty of Life Sciences , University of Copenhagen , Copenhagen, Denmark;3. Department of Plant and Environmental Sciences IPM , University of Life Sciences UMB , ?s, Norway;4. Faculty of Agriculture , University of Novi Sad , Trg D. Obradovi?a 8, 21000, Novi Sad, Serbia;5. Faculty of Agriculture and Food Sciences , University of Sarajevo , Zmaja od Bosne 8, 71000, Sarajevo, Bosnia and Herzegovina
Abstract:Abstract

Three thermal power plants in Serbia, Croatia and Bosnia of the Western Balkan region were expected to be metal polluting sources, and this study was performed to investigate the bioavailability and chemical speciation of trace metals in soils and soil water extracts, respectively. Surface (0–15 cm) soil samples along with maize and grass samples were collected at a gradient from the pollution source. The chemical speciation of metals was conducted using the Windereme Humic Aqueous Model (WHAM)/Model VI for water, whereas the Diffusion Gradient in Thin Films (DGT) technique was used to estimate plant availability. The chemical speciation indicated that more than 99% of all four metals in soil water extracts were complexed to fulvic acid. This is connected to relatively high soil pH (> 6.5) and high contents of soil organic matter in these soils. The accumulation of trace metals by DGT was not correlated to plant uptake. This is connected to the very low partitioning of free ions in solution, but also to the low variation in metal solubility and metal concentration in plant tissue between sites. In spite of active thermal power plants located in the areas, hardly any differences in concentration of soil metals between sites were seen and the partition of metals in soil waters was insignificant. The latter indicates that these soils have a large metal-retaining capacity. The only significant soil chemical variable affecting the variation in metal solubility was the soil pH. In a time with large infrastructure and industrial expansion in these areas, this investigation indicates the importance of protecting these high-quality soils from industrial use and degradation. High industrial activity has so far had insignificant effect on soil quality with respect to bioavailability of trace metals in these soils.
Keywords:Bioavailability  DGT devices  soil contamination  speciation  trace metals  WHAM/Model VI
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号