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首页> 外文期刊>Waste Management >Solvent extraction separation of copper and zinc from MSWI fly ash leachates
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Solvent extraction separation of copper and zinc from MSWI fly ash leachates

机译:从MSWI粉煤灰渗滤液中溶剂萃取分离铜和锌

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摘要

Fly ash from combustion of municipal solid waste (MSW) contains significant amounts of metals, some of which are valuable and some of which are potentially toxic. This type of ash is most often stabilized and landfilled which means that the metals will be difficult to reclaim at a later stage. In recent years efforts have been made to develop feasible methods to recover selected metals, such as Zn, from MSW fly ash. If this would be possible, a significant amount of valuable metals could be re-inserted in the industrial material loops. This paper describes the development and evaluation of a process for recovery of Cu and Zn from MSW combustion fly ash based on hydrochloric acid leaching followed by two solvent extraction processes, one for each metal. The separation of Cu from the acid leachate was done using an aldoxime extractant, LIX860N-Ⅰ, in kerosene and a mixture of phosphine oxides, Cyanex 923, also in kerosene, was used for extraction of Zn from the Cu-depleted aqueous phase. The extraction of Cu was selective, but a significant amount of other metals, such as Fe and Pb, were co-extracted together with Zn. It was shown that it is possible to decrease the contamination of Fe by using a suitable concentration of nitric acid solution for stripping or by removing the contaminating metals through cementation. The suggested process was tested for two MSW combustion fly ashes in laboratory scale experiments and gave Cu yields of 69-87% and Zn yields of 75-80% based on the contents in the ash.
机译:燃烧城市固体废物(MSW)产生的粉煤灰包含大量金属,其中一些有价值,而某些则有潜在毒性。这种类型的灰烬最常被稳定和掩埋,这意味着这些金属将在以后的阶段难以回收。近年来,人们努力开发可行的方法,以从城市生活垃圾粉煤灰中回收选定的金属,例如锌。如果可能的话,可以将大量有价值的金属重新插入工业材料回路中。本文描述了一种基于盐酸浸出的生活垃圾从燃烧垃圾飞灰中回收铜和锌的方法的开发和评估,随后采用两种溶剂萃取工艺,每种金属萃取一种。使用醛肟萃取剂LIX860N-Ⅰ在煤油中从酸性浸出液中分离Cu,并使用也在煤油中的氧化膦混合物Cyanex 923从贫铜的水相中萃取Zn。铜的提取是选择性的,但大量其他金属(如Fe和Pb)与Zn一起共萃取。结果表明,通过使用适当浓度的硝酸溶液进行汽提或通过胶结去除污染金属,可以减少铁的污染。在实验室规模的实验中,对所建议的过程进行了两次MSW燃烧飞灰的测试,基于灰分的含量,得出的铜产率为69-87%,锌产率为75-80%。

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