Smieja-Król Beata, Janeczek Janusz, Bauerek Arkadiusz, Thorseth Ingunn H
Faculty of Earth Sciences, University of Silesia, Będzińska 60, 41-200, Sosnowiec, Poland.
Department of Environmental Monitoring, Central Mining Institute, Plac Gwarków 1, 40-166, Katowice, Poland.
Environ Sci Pollut Res Int. 2015 Oct;22(20):15495-505. doi: 10.1007/s11356-015-4728-8. Epub 2015 May 27.
The supply of Cd, Cu, Fe, Pb, Zn, and Tl into a wetland in the industrial area of Upper Silesia, southern Poland via atmospheric precipitation and dust deposition has been counterbalanced by the biogenic metal sulfide crystallization in microsites of the thin (<30 cm) peat layer, despite the overall oxidative conditions in the wetland. Disequilibrium of the redox reactions in the peat pore water (pH 5.4-6.2) caused by sulfate-reducing microorganisms has resulted in the localized decrease in Eh and subsequent precipitation of micron- and submicron-sized framboidal pyrite, spheroidal ZnS and (Zn,Cd)S, and galena as revealed by high-resolution scanning electron microscopy (SEM)/energy dispersive spectrometer (EDS). Saturation index for each sulfide is at a maximum within the calculated Eh range of -80 and -146 mV. Lead was also immobilized in galena deposited in fungal filaments, possibly at a higher Eh. Thallium (up to 3 mg kg(-1)) in the peat strongly correlates with Zn, whereas Cu (up to 55 mg kg(-1)) co-precipitated with Pb. The metal sulfides occur within microbial exudates, which protect them from oxidation and mechanical displacement. Vertical distribution of toxic metals in the peat layer reflects differences in pollution loads from atmospheric deposition, which has been much reduced recently.
尽管该湿地整体处于氧化环境,但通过大气降水和粉尘沉降进入波兰南部上西里西亚工业区湿地的镉、铜、铁、铅、锌和铊,已被薄泥炭层(<30厘米)微位点中的生物源金属硫化物结晶所平衡。硫酸盐还原微生物导致泥炭孔隙水(pH值5.4 - 6.2)中的氧化还原反应失衡,使得Eh局部降低,随后通过高分辨率扫描电子显微镜(SEM)/能谱仪(EDS)揭示出微米级和亚微米级莓球状黄铁矿、球状硫化锌和(锌,镉)硫化物以及方铅矿的沉淀。在计算得出的-80至-146 mV的Eh范围内,每种硫化物的饱和指数均达到最大值。铅也固定在沉积于真菌丝中的方铅矿中,可能处于较高的Eh条件下。泥炭中的铊(高达3毫克/千克)与锌密切相关,而铜(高达55毫克/千克)与铅共沉淀。金属硫化物存在于微生物分泌物中,从而保护它们免受氧化和机械位移的影响。泥炭层中有毒金属的垂直分布反映了大气沉降污染负荷的差异,近期这种污染负荷已大幅降低。