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首页> 外文期刊>Waste Management >Leaching optimization of municipal solid waste incineration ash for resource recovery: A case study of Cu, Zn, Pb and Cd
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Leaching optimization of municipal solid waste incineration ash for resource recovery: A case study of Cu, Zn, Pb and Cd

机译:城市垃圾焚烧灰渣资源化回收优化研究-以铜,锌,铅,镉为例

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Ash from municipal solid waste incineration (MSWI) may be quite cumbersome to handle. Some ash fractions contain organic pollutants, such as dioxins, as well as toxic metals. Additionally, some of the metals have a high value and are considered as critical to the industry. Recovery of copper, zinc and lead from MSWI ashes, for example, will not only provide valuable metals that would otherwise be landfilled but also give an ash residue with lower concentrations of toxic metals. In this work, fly ash and bottom ash from an MSWI facility was used for the study and optimization of metal leaching using different solutions (nitric acid, hydrochloric acid and sulfuric acid) and parameters (temperature, controlled pH value, leaching time, and liquid/solid ratio). It was found that hydrochloric acid is relatively efficient in solubilizing copper (68.2 ± 6.3%) and zinc (80.8 ± 53%) from the fly ash in less than 24 h at 20 ℃ Efficient leaching of cadmium and lead (over 92% and 90% respectively) was also achieved. Bottom ash from the same combustion unit was also characterized and leached using acid. The metal yields were moderate and the leachates had a tendency to form a gelatinous precipitate, which indicates that the solutions were actually over-saturated with respect to some components. This gel formation will cause problems for further metal purification processes, e.g. solvent extraction.
机译:市政固体废物焚烧(MSWI)产生的灰烬可能非常麻烦。一些灰分包含有机污染物,例如二恶英和有毒金属。另外,某些金属具有很高的价值,被认为对工业至关重要。例如,从MSWI灰中回收铜,锌和铅,不仅会提供有价值的金属,否则这些金属会被填埋,还会产生具有较低浓度的有毒金属的灰渣。在这项工作中,来自MSWI设施的粉煤灰和底灰被用于研究和优化使用不同溶液(硝酸,盐酸和硫酸)和参数(温度,受控pH值,浸出时间和液体)的金属浸出/固比)。研究发现,在20℃不到24小时的时间内,盐酸在溶解粉煤灰中的铜(68.2±6.3%)和锌(80.8±53%)方面相对有效。镉和铅的有效浸出(超过92%和90分别达到%)。来自同一燃烧单元的底灰也被表征并使用酸浸出。金属的产率是中等的,并且沥出液倾向于形成凝胶状沉淀,这表明溶液相对于某些组分实际上是过饱和的。这种凝胶的形成将对进一步的金属提纯工艺(例如,铝)造成问题。溶剂萃取。

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