Geochemistry and the Environment Division, Institute of Chemistry, Jan Kochanowski University, 7 Uniwersytecka St., 25-406 Kielce, Poland.
Geochemistry and the Environment Division, Institute of Chemistry, Jan Kochanowski University, 7 Uniwersytecka St., 25-406 Kielce, Poland.
J Environ Sci (China). 2020 Aug;94:128-136. doi: 10.1016/j.jes.2020.03.041. Epub 2020 May 1.
The abundances of trace elements, a low pH of water and soil in areas impacted by the acid mine drainage (AMD) may cause an excessive uptake of potentially toxic elements and nutritional imbalances in plants. Metal-tolerant, native plants are used for revegetation of degraded mining areas. We established levels of selected trace elements and stable sulfur isotopes in the above-ground plant biomass collected in a mining area in south-central Poland. In 2016, 20 samples of the most common species were collected from sites with a different influence of acid mine drainage and analyzed for trace elements by the inductively coupled plasma mass spectrometry technique. On the basis of the results obtained in 2016, the most contaminated site was selected for a more detailed study, in which sulfur contents and stable sulfur isotope ratios were determined together with trace elements in 17 samples. The results confirmed that the plants native to the AMD area efficiently accumulated trace elements, especially As and rare earth elements. Mosses showed the highest content of trace elements, but exhibited the lowest concentrations of sulfur accompanied by the highest δS values. It has been shown for the first time that stable sulfur isotope composition of AMD plants in south-central Poland is significantly depleted in the S isotope showing an average δS value of -10.5‰ in comparison with positive δS values in local vegetation growing outside the AMD area and in local precipitation.
受酸性矿山排水 (AMD) 影响的地区,微量元素丰富,水和土壤的 pH 值较低,这可能导致植物过度吸收潜在有毒元素和营养失衡。耐金属的本地植物被用于矿区的植被恢复。我们在波兰中南部一个矿区采集了地上植物生物量,测定了其中选定的微量元素和稳定硫同位素的水平。2016 年,从受 AMD 不同影响的地点采集了 20 个最常见物种的样本,并用电感耦合等离子体质谱技术分析了微量元素。根据 2016 年的结果,选择污染最严重的地点进行更详细的研究,在 17 个样本中测定了硫含量和稳定硫同位素比值以及微量元素。结果证实,AMD 地区的本地植物能有效地积累微量元素,尤其是砷和稀土元素。苔藓表现出最高的微量元素含量,但伴随的硫浓度最低,δS 值最高。这是首次表明,与 AMD 区外当地植被和当地降水的正 δS 值相比,波兰中南部 AMD 植物的稳定硫同位素组成明显亏损 S 同位素,平均 δS 值为-10.5‰。