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Ferrite materials prepared from two industrial wastes: Electroplating sludge and spent pickle liquor

机译:由两种工业废料制得的铁氧体材料:电镀污泥和废酸洗液

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摘要

Simultaneous treatment of two industrial wastes, i.e. the electroplating sludge and the spent pickling liquor, to produce valuable spinel ferrite with high crystallinity and high saturation magnetization through the hydrothermal process has been investigated. After the hydrothermal treatment, the electroplating sludge can only produce poorly crystallized ferrite with high content of impurities. However, co-hydrothermal treatment of the electroplating sludge and the spent pickle liquor in a suitable mixing ratio results in a well crystallized ferrite product, with all heavy metals being fixed into the ferrite lattice. In order for the ferrite product to have a maximum saturation magnetization (41.42 emu g~(-1) in this research), the response surface methodology (RSM) has been employed to derive the optimal experiment condition, e.g. hydrothermal treatment at 300 °C for 6 h with the initial pH adjusted to 10. This optimal experimental condition has been further proven valid when applied to a different kind of electroplating sludge. In addition, the magnetization of ferrite products can be further enhanced to 58.34 emu g~(-1) by acid washing to remove the impurity (calcite). This research thus shows an effective way to transfer two common industrial wastes into valuable ferrite materials.
机译:已经研究了通过水热法同时处理两种工业废料,即电镀污泥和废酸洗液,以生产具有高结晶度和高饱和磁化强度的尖晶石铁氧体的方法。经过水热处理后,电镀污泥只能产生结晶度差,杂质含量高的铁氧体。但是,以合适的混合比例对电镀污泥和废酸洗液进行共水热处理会产生良好结晶的铁素体产品,所有重金属都固定在铁素体晶格中。为了使铁氧体产品具有最大的饱和磁化强度(本研究中为41.42 emu g〜(-1)),已采用响应面方法(RSM)得出最佳实验条件,例如在300°C下进行水热处理6 h,并将初始pH值调整为10。当将这种最佳实验条件应用于其他类型的电镀污泥时,进一步证明是有效的。此外,通过酸洗去除杂质(方解石),铁氧体产品的磁化强度可进一步提高到58.34 emu g〜(-1)。因此,这项研究表明了将两种常见的工业废物转移到有价值的铁氧体材料中的有效方法。

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