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Innovative methodology for comprehensive utilization of high iron bearing zinc calcine

机译:高铁含锌煅烧炉综合利用的创新方法

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An innovative method for comprehensive utilization of high iron bearing zinc calcine was proposed, and the recovery of zinc and iron was studied. The thermodynamic analysis and roasting experiments were firstly carried out to study the decomposition of ZnFe2O4 which could be selectively converted to ZnO and Fe3O4 under optimized roasting conditions. The roasted zinc calcine was then subjected to low acid leaching followed by magnetic separation. The effects of operating conditions on the recovery of zinc and iron and the mineralogical changes during the process were investigated. The results showed that about 91% of zinc was extracted and most of iron was separated into the leach residue as magnetite at 40 degrees C for 10 min with 90 g/L H2SO4 and liquid/solid ratio at 10 mg/L, while about 91% of iron was reported to the concentrate with iron grade of 45.5% after a magnetic separation at 35 kA/m. Besides, lead impurity was transformed, separated and concentrated into the tailing in the form of PbSO4 and Pb. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种高铁含锌煅烧炉综合利用的创新方法,并对锌和铁的回收率进行了研究。首先进行了热力学分析和焙烧实验,研究了在最佳焙烧条件下可选择性转化为ZnO和Fe3O4的ZnFe2O4的分解。然后将焙烧的锌煅烧锌进行低酸浸,然后进行磁分离。研究了操作条件对过程中锌和铁的回收率以及矿物学变化的影响。结果显示,在90 g / L H2SO4和液/固比为10 mg / L的情况下,在40摄氏度下10分钟萃取了大约91%的锌,并且大部分铁以磁铁矿的形式被浸入了浸出残渣中,而大约91据报道,在35 kA / m的磁分离后,铁含量为45.5%的精矿含铁量为45%。此外,铅杂质被转化,分离并浓缩为PbSO4和Pb形式的尾矿。 (C)2015 Elsevier B.V.保留所有权利。

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