Institute of Laboratory Research on Geomaterials, Faculty of Natural Sciences, Comenius University in Bratislava, Mlynská dolina, 84215 Bratislava, Slovakia.
Institute of Laboratory Research on Geomaterials, Faculty of Natural Sciences, Comenius University in Bratislava, Mlynská dolina, 84215 Bratislava, Slovakia.
J Hazard Mater. 2021 May 5;409:124938. doi: 10.1016/j.jhazmat.2020.124938. Epub 2021 Jan 12.
Natural ferric ochres that precipitate in streambeds at abandoned mining sites are natural scavengers of various metals and metalloids. Thus, their chemical and structural modification via microbial activity should be considered in evaluation of the risks emerging from probable spread of contamination at mining sites. Our results highlight the role of various aspergilli strains in this process via production of acidic metabolites that affect mobility and bioavailability of coprecipitated contaminants. The Mössbauer analysis revealed subtle structural changes of iron in ochres, while the elemental analysis of non-dissolved residues of ochres that were exposed to filamentous fungi suggest coinciding bioextraction of arsenic and antimony with extensive iron mobilisation. However, the zinc bioextraction by filamentous fungi is less likely dependent on iron leaching from ferric ochres. The strain specific bioextraction efficiency and subsequent bioaccumulation of mobilised metals resulted in distinct tolerance responses among the studied soil fungal strains. However, regardless the burden of bioextracted metal(loid)s on its activity, the Aspergillus niger strain has shown remarkable capability to decrease pH of its environment and, thus, bioextract significant and environmentally relevant amounts of potentially toxic elements from the natural ochres.
天然铁褐铁矿在废弃采矿场的河床中沉淀,是各种金属和类金属的天然清除剂。因此,在评估采矿场污染可能扩散带来的风险时,应考虑通过微生物活动对其进行化学和结构修饰。我们的研究结果通过产生影响共沉淀污染物迁移性和生物可利用性的酸性代谢物,突出了各种曲霉菌株在这一过程中的作用。穆斯堡尔分析揭示了褐铁矿中铁的细微结构变化,而丝状真菌暴露后的褐铁矿未溶解残留物的元素分析表明,砷和锑与广泛的铁活化同时被生物提取。然而,丝状真菌对锌的生物提取不太可能依赖于从高铁褐铁矿中浸出铁。由于不同菌株的生物提取效率和随后对活化金属的生物积累,在所研究的土壤真菌菌株中产生了明显的耐受反应。然而,无论生物提取的金属(类金属)对其活性的负担如何,黑曲霉(Aspergillus niger)菌株都显示出显著降低其环境 pH 值的能力,从而从天然褐铁矿中生物提取大量潜在有毒元素,这些元素在环境中具有重要意义。