Energy-saving technology for processing of exhausted etching solutions with obtaining of ferromagnetic compounds

D. Samchenko, Gennadii М. Kochetov, A. Vasiliev, D. Derecha, Yurii B. Skirta, O. Lastivka
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Abstract

Exhausted etching solutions are the waste of industrial enterprises and contain toxic pollutants that have a detrimental effect on the environment. Currently, the processing of these solutions to obtain marketable products is important. The paper presents the results of research on the application of the ferritization method for processing of exhausted etching solutions of steel surfaces. Energy-saving activation of the process by alternating magnetic fields was used, which has undeniable advantages compared to traditional thermal activation. The influence of the initial concentration of iron ions in the reaction mixture of ferritization process and the methods of its activation on the treatment quality of exhausted etching solutions was studied. It was established that the best degree of extraction of heavy metal ions from exhausted etching solutions by ferritization is achieved when the reaction mixture is activated by alternating magnetic fields at an initial concentration of iron ions of 6.6 g/dm3 . At the same time, the residual concentration of iron ions in purified solutions does not exceed 0.03 mg/dm3 , that corresponds to degree of purification of solutions of 99.999%. Those solutions can be reused in situ. The qualitative and quantitative composition of ferritization sediments was studied. Phases of ferroxygite δ-FeOОН, magnetite Fe3O4 and maghemite ɣ-Fe2O3 were detected by X-ray phase analysis in the sediments. It was established that at the initial concentration of iron ions of 26.6 g/dm3 with thermal activation of the reaction mixture and 16.6 g/dm3 with alternating magnetic fields activation, the sediment exclusively contains the magnetite phase. The results of the study indicate the possibility of further use of sediments for the production of important industrial products and materials containing ferromagnetic compounds. The implamitation of improved ferritization process in industrial enterprises will allow to achieve decrease of energy consumption compared to known technologies of exhausted etching solutions processing.
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废蚀刻液获得铁磁性化合物的节能处理技术
耗尽的蚀刻液是工业企业的废物,含有对环境有害的有毒污染物。目前,这些解决方案的处理,以获得适销对路的产品是很重要的。本文介绍了铁素化法处理钢表面腐蚀液的研究结果。采用交变磁场节能活化工艺,与传统的热活化相比具有不可否认的优势。研究了铁化反应混合物中初始铁离子浓度及其活化方法对蚀刻废液处理质量的影响。结果表明,当初始铁离子浓度为6.6 g/dm3时,交变磁场激活反应混合物,铁化对废蚀刻液中重金属离子的萃取效果最佳。同时,纯化后的溶液中铁离子残留浓度不超过0.03 mg/dm3,对应的溶液纯化度为99.999%。这些解决方案可以就地重复使用。对铁化沉积物的定性和定量组成进行了研究。通过x射线物相分析检测了沉积物中氧化亚铁矿δ-FeOОН、磁铁矿Fe3O4和磁赤铁矿_ -Fe2O3的物相。结果表明,在反应混合物热活化铁离子初始浓度为26.6 g/dm3,交变磁场活化铁离子初始浓度为16.6 g/dm3时,沉积物中只含有磁铁矿相。研究结果表明,进一步利用沉积物生产含有铁磁性化合物的重要工业产品和材料的可能性。在工业企业中实施改进的铁化工艺,与已知的耗尽蚀刻液加工技术相比,可以实现能耗的降低。
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