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首页> 外文期刊>Mineralogical Magazine >Composition and element mobilization in pyrometallurgical slags from the Orzel Bialy smelting plant in the Bytom-Piekary Slaskie area, Poland
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Composition and element mobilization in pyrometallurgical slags from the Orzel Bialy smelting plant in the Bytom-Piekary Slaskie area, Poland

机译:波兰Bytom-Piekary Slaskie地区Orzel Bialy冶炼厂的火冶金渣中的成分和元素动员

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Wastes accumulated at Piekary Slaskie, Poland, are the result of 150 years of continuous working of the Orzel Bialy smelting plant. Slags are composed of: oxides (spinel, hematite, zincite); silicates and aluminosilicates (olivine, monticellite-kirschteinite, titanite, merwinite, pyroxene, melilite, feldspars: plagioclases and plumbean K-feldspar, nepheline, kalsilite, leucite); sulfides (pyrrhotite, rudashevskyite, galena), metallic phases (pure iron and iron-arsenic mixture) and secondary phases (gypsum, rapidcreekite, apatite). Interstices between the crystalline phases are filled by glass, concentrating toxic and potentially harmful elements, e.g. up to 53.22 wt.% PbO. The sequence of crystallization of primary phases depended on the local variability of oxygen fugacity and degree of calcination, while the texture type resulted from the cooling time and partial pressure of volatiles. Suggested crystallization temperatures are in the range of 1200 1500 degrees C. Bulk chemical analyses show that the slags are composed mainly of SiO2, Al2O3, Fe2O3, MgO and CaO. Among the potentially harmful elements, Zn is the most common, reaching up to 5.93 wt.%, Pb is present in concentrations up to 3.9 wt.% and As in weathered samples exceeds 1 wt.%. Leaching tests of these elements confirms As mobility as Zn and Pb are preferably leached from fresh slags, while As is present in greater amounts in leachate from weathered slag samples. The documented amounts of As, Zn, Pb and their mobility in slags produce an environmental risk, as this material is currently used widely for commercial purposes.
机译:波兰的Piekary Slaskie积累的废料是Orzel Bialy冶炼厂连续工作150年的结果。炉渣由以下物质组成:氧化物(尖晶石,赤铁矿,锌矿);硅酸盐和铝硅酸盐(橄榄石,蒙脱石-钾长石,钛矿,汞矿,辉石,陨石,长石:斜长石和铅钾钾长石,霞石,钾盐石,白云母);硫化物(硫铁矿,金刚砂石,方铅矿),金属相(纯铁和铁-砷混合物)和次生相(石膏,速晶石,磷灰石)。晶相之间的间隙被玻璃填充,从而浓缩了有毒和潜在有害元素,例如最高53.22 wt。%PbO。初生相的结晶顺序取决于氧逸度和煅烧程度的局部变化,而织构类型则取决于冷却时间和挥发物的分压。建议的结晶温度范围为1200 1500摄氏度。大量化学分析表明,炉渣主要由SiO2,Al2O3,Fe2O3,MgO和CaO组成。在潜在有害元素中,锌是最常见的元素,含量高达5.93 wt。%,铅的含量高达3.9 wt。%,风化样品中的砷含量超过1 wt。%。这些元素的浸出试验证实,优选从新鲜矿渣中浸出作为Zn和Pb的As流动性,而来自风化炉渣样品的渗滤液中As的含量更高。所记录的As,Zn,Pb的量及其在炉渣中的迁移性会产生环境风险,因为该材料目前已广泛用于商业用途。

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