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Thermodynamic analysis of the separation of zinc and lead from electric arc furnace dust by selective reduction with metallic iron

机译:金属铁选择性还原从电弧炉粉尘中分离锌铅的热力学分析

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During the remelting of automobile scrap in an electric arc furnace,the contained volatile metals and evolved particulates are captured in the oxidizing off-gas system as a dust.In most countries,this dust is considered as a hazardous waste but contains economically attractive amounts of various non-ferrous metals,such as zinc and lead.One method for recovering these metals is selective reduction,in which the non-ferrous metal oxides are reduced and the metals are simultaneously vaporized and separated,while the iron is maintained in oxide form.In the present research,the utilization of metallic iron as a selective reducing agent was investigated and the equilibrium composition of the reaction products was calculated using the equilibrium module of Outokumpu HSC Chemistry~R 5.1.For the standard conditions,a typical electric arc furnace dust composition was utilized and the temperature was varied from 1273 to 1873 K at atmospheric pressure(1 bar).The zinc and lead recoveries were determined and the separation of the metallic zinc or lead from the iron oxide,was quantified in terms of the selectivity factor(beta).In addition to temperature,the effects of the following variables on the zinc and lead recoveries were determined;reactant ratio(moles of metallic iron per 100 g of dust),dust composition,addition of a non-reactive gas such as nitrogen and also reduced total pressure.The results show that under the appropriate reducing conditions of temperature,reactant ratio and reduced pressure,both high recoveries and selectivity factors can be achieved for both zinc and lead.The calculated results are in reasonable agreement with experimental results,which have been previously published in the literature.
机译:在电弧炉中对汽车废料进行重熔的过程中,所含的挥发性金属和析出的颗粒物以粉尘形式被收集在氧化废气系统中。在大多数国家/地区,这些粉尘被视为危险废物,但在经济上具有一定的吸引力回收这些金属的一种方法是选择性还原,其中还原有色金属氧化物,同时蒸发和分离金属,同时将铁保持为氧化物形式。本研究研究了金属铁作为选择性还原剂的利用,并使用Outokumpu HSC Chemistry〜R 5.1的平衡模块计算了反应产物的平衡组成。在标准条件下,典型的电弧炉粉尘在大气压力(1巴)下,温度从1273 K到1873 K不等。确定锌和铅的回收率用选择性因子β对金属锌或铅与氧化铁的分离进行定量。除温度外,还测定了以下变量对锌和铅回收率的影响;反应物比(每100克粉尘中的金属铁摩尔数),粉尘成分,添加非反应性气体(如氮气)并降低总压力。结果表明,在适当的温度,反应物比例和减压降低条件下,两者均较高锌和铅均可达到回收率和选择性因子。计算结果与先前在文献中发表的实验结果合理吻合。

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