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首页> 外文期刊>Materials transactions >A Mineralogical Study of the Reductive Roasting of Zinc Ferrite Residues-A Potential Zinc Recycling Technology
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A Mineralogical Study of the Reductive Roasting of Zinc Ferrite Residues-A Potential Zinc Recycling Technology

机译:铁酸锌残留物还原焙烧的矿物学研究-一种潜在的锌回收技术

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摘要

A stockpiled zinc ferrite residue from Noranda Inc., CEZinc consists mostly of ZnFe_2O_4 and Fe_2O_3, together with trace amounts of a number of other phases including Mn-bearing oxides and Sr sulphate. Reductive roasting of the zinc ferrite residue for 2h at 800 deg C resulted in the extensive conversion of the ZnFe_2O_4 to (Fe, Zn)O and ZnO; the (Fe, Zn)O phase contains about 16 mass percent Zn. The particle sizes and shapes after reductive roasting are similar to those in the unroasted feed, but the roasted material may be slightly more porous. The copper impurity in the ferrite residue is reduced to an Ag-bearing copper alloy which occurs as inclusions along the grain boundaries of the (Fe, Zn)O phase. Some of the Sr sulphate present in the zinc ferrite residue is reduced to a Zn-Fe-Sr sulphide phase, and all of the initially present Fe_2O_3 is reduced to (Fe, Zn)O. Reductive roasting converts the zinc ferrite residue into species which are soluble in dilute acid or alkaline media, thereby allowing the potential recycling of the Zn, Cu and Ag values.
机译:CEZinc是Noranda Inc.储备的铁酸锌残留物,主要由ZnFe_2O_4和Fe_2O_3以及痕量的许多其他相组成,包括含Mn的氧化物和Sr硫酸盐。 800℃下铁氧体锌残留物的还原焙烧2h导致ZnFe_2O_4大量转化为(Fe,Zn)O和ZnO。 (Fe,Zn)O相含有约16质量%的Zn。还原焙烧后的粒度和形状与未焙烤进料中的相似,但焙烤的材料可能会稍微多孔。铁氧体残留物中的铜杂质被还原成含银铜合金,该铜合金沿(Fe,Zn)O相的晶界以夹杂物的形式出现。存在于铁氧体锌残余物中的一些Sr硫酸盐被还原为Zn-Fe-Sr硫化物相,所有最初存在的Fe_2O_3被还原为(Fe,Zn)O。还原焙烧将铁氧体锌残留物转化为可溶于稀酸或碱性介质的物质,从​​而可回收利用Zn,Cu和Ag值。

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