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首页> 外文期刊>Hydrometallurgy >Thermochemical processing of a South African ultrafine coal fly ash using ammonium sulphate as extracting agent for aluminium extraction
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Thermochemical processing of a South African ultrafine coal fly ash using ammonium sulphate as extracting agent for aluminium extraction

机译:以硫酸铵为萃取剂的南非超细粉煤灰的热化学处理

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摘要

South African coal fly ash represents an untapped secondary resource of aluminium. Continuous research is conducted to develop suitable chemical and/or geometallurgical processes for aluminium extraction, preferably accompanied by minimal silicon extraction. The thermochemical treatment of a South African ultrafine coal fly ash was investigated to test the feasibility of recovering aluminium using ammonium sulphate, a widely available, low-cost, recyclable chemical agent. The optimum processing conditions were determined to be a temperature of 500 degrees C and a fly ash to ammonium sulphate weight ratio of 2:6 when a reaction time of 1 h was used. Water leaching of the reaction product obtained under these conditions resulted in the selective recovery of 95.0% aluminium from the amorphous phase, with <0.6% Si extracted. Mullite was unlikely to have reacted with the extracting agent. Except for Si, the process was not element-selective, but the extraction of iron could be minimized by increasing the treatment temperature to 600 degrees C without compromising Al extraction. Thermochemical treatment using ammonium sulphate may therefore represent a promising technology for extracting aluminium from coal fly ash, which could be subsequently converted to value-added products such as alumina. (C) 2016 Elsevier B.V. All rights reserved.
机译:南非的粉煤灰是铝的未开发二次资源。进行了持续的研究以开发用于铝提取的合适的化学和/或地质冶金工艺,优选伴随最少的硅提取。研究了南非超细粉煤灰的热化学处理,以测试使用硫酸铵(一种广泛使用的低成本可回收化学剂)回收铝的可行性。当使用1小时的反应时间时,确定最佳的加工条件为温度为500摄氏度,粉煤灰与硫酸铵的重量比为2:6。在这些条件下获得的反应产物的水浸出导致从非晶相中选择性回收95.0%的铝,并提取了<0.6%的Si。莫来石不太可能与萃取剂反应。除Si外,该工艺不是元素选择性的,但是可以通过将处理温度提高到600摄氏度而不损害Al的萃取来最小化铁的萃取。因此,使用硫酸铵进行热化学处理可能代表了一种从粉煤灰中提取铝的有前途的技术,然后可以将其转化为增值产品,例如氧化铝。 (C)2016 Elsevier B.V.保留所有权利。

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