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A Method for Assessment of Recyclability of Aluminum from Incinerated Household Waste

机译:一种评估焚烧家用废物铝可回收性的方法

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Aluminum is widely used in daily household consumable goods such as food and drink packaging materials, storage containers, etc. The disposal of such goods into household waste means that this waste stream contains a significant amount of aluminum. Domestic waste is commonly sent to incinerator plants where the organics are combusted while the metallic content stays in the bottom ash, which is subsequently separated into various metal streams. Because of the importance of aluminium in the circular economy, there is a need for efficient recovery procedures for this metal source. This paper discusses the recyclability and the recovery rate of aluminum from the bottom ash through remelting with a molten salt. The remelting experiments were performed under a 50-50 wt% NaCl: KC1 mixture with a 2 wt% CaF_2 addition to promote metal coalescence. The oxide thickness and trace element content of the starting metal and the composition of the resulting metal were characterized as these parameters largely determine the recovery rate and recyclability of these secondary metal streams. The laboratory results showed the coalescence efficiency up to 99.5% and the material yield up to 92%. High deviation in oxide content based on the oxide layer thickness measurements was observed which crucially affects the metal losses in recycling.
机译:铝广泛应用于日常家庭消耗品,如食品和饮料包装材料,储物容器等。将这些商品的处理进入家用废物意味着该废物流含有大量的铝。国内废物通常送到焚烧炉植物,其中有机物燃烧,而金属含量保持在底灰,随后将其分成各种金属流。由于铝在循环经济中的重要性,需要有效的这种金属来源的有效恢复程序。本文通过用熔盐重熔,讨论了从底部灰分中的铝的回收性和回收率。重熔实验在50-50wt%NaCl:KCl混合物中进行,用2wt%CAF_2加入以促进金属聚结。起始金属的氧化物厚度和痕量元素含量和所得金属的组成的特征在于这些参数在很大程度上决定了这些二级金属流的回收率和可回收性。实验室结果显示聚结效率高达99.5%,材料产量高达92%。观察到基于氧化物层厚度测量的氧化物含量高偏差,这大致影响了回收中的金属损失。

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