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Determination of iron and chromium fluorides solubility for the treatment of wastes from stainless steel mills

机译:测定用于处理不锈钢厂废物的铁和氟化铬的溶解度

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Stainless steel pickling waste bath is one of the most important environmental problems in stainless steel mills because of its high toxicity and economic losses due to conventional neutralization treatment of this waste.Nitric and hydrofluoric acids reclamation solves only a part of the problem while metals still are considered as a waste and the whole content of hydrofluoric acid is not recovered because fluoride forms very stable complexes with metals.In this work metal-fluoride complexes solubility is determined in order to design a process for metals recovery,consisting of separating iron and chromium,precipitated as K2FeF5(s) and CrF3(s),from nickel that remains in solution.Iron and chromium would be further hydrolyzed for oxides recovery,while fluoride release to solution and is recycled to selective precipitation stage.Results are obtained by the application of a novel equilibrium model for spent pickling liquors (SPL) called in this work "UCM-Model".Its applicability is evaluated by comparison with other literature models and it is used in the determination of thermodynamic solubility products.Obtained values are K_s,K2FeF5(s) = exp(-4.1 ± 0.5 - (1400 ± 200)/T (K)) and K_s,CrF3(s) = exp(-7.8 ± 1.0 - (5800 ± 500)/T (K)).
机译:不锈钢酸洗废液是不锈钢厂最重要的环境问题之一,因为常规的中和处理会造成高毒性和经济损失,而硝酸和氢氟酸的回收只能解决部分问题,而金属仍是氟化物与金属形成非常稳定的配合物,因此无法回收氢氟酸的全部含量。在这项工作中,确定金属-氟化物配合物的溶解度是为了设计一种金属回收方法,包括铁和铬的分离,从残留在溶液中的镍中析出为K2FeF5和CrF3。铁和铬将被进一步水解以回收氧化物,同时氟化物释放到溶液中并循环至选择性沉淀阶段。一种新的酸洗液平衡模型(SPL),在本文中称为“ UCM模型”。其适用性是评估通过与其他文献模型进行比较,将其用于确定热力学溶解度产物。得到的值为K_s,K2FeF5(s)= exp(-4.1±0.5-(1400±200)/ T(K))和K_s, CrF 3(s)= exp(-7.8±1.0-(5800±500)/ T(K))。

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