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Removal of Arsenic During Iron Extraction from Waste Copper Slag

机译:从废铜渣中取出铁萃取过程中的砷

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Substantial quantities of openly dumped slag contribute to the absence of recovery and utilization of valuable metals as well as potential environmental pollution to water and soil. Owing to the excessively high arsenic content present in iron extracted from copper smelting slag, we propose a new arsenic removal process in this paper. The results indicate that arsenic sulfides in copper smelting slag can be significantly removed at 1100 degrees C in an N(2)atmosphere, leading to a 0.15% residual arsenic content. Furthermore, undecomposed arsenate in the slag can be reduced in an N-2-CO atmosphere. During a coal-based direct reduction process, under optimal conditions, the removal efficiency of arsenic is relatively low. Subsequently, under optimal conditions, the arsenic content drops significantly from 0.18 to 0.080%. This new removal process engenders lower arsenic content in iron extracted from slag than the standards of pig iron and direct reduced iron in steelmaking.
机译:大量公开倾倒的矿渣导致有价金属得不到回收和利用,并对水和土壤造成潜在的环境污染。针对铜冶炼渣中铁中砷含量过高的问题,提出了一种新的除砷工艺。结果表明,在1100℃的氮(2)气氛中,铜冶炼渣中的砷硫化物可以被显著去除,残余砷含量为0.15%。此外,炉渣中未分解的砷酸盐可以在N-2-CO气氛中还原。在煤基直接还原过程中,在最佳条件下,砷的去除效率相对较低。随后,在最佳条件下,砷含量从0.18%显著下降至0.080%。这种新的去除工艺使从炉渣中提取的铁中砷的含量低于炼钢中生铁和直接还原铁的标准。

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