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Thermodynamic Analysis for the Refining Ability of Salt Flux for Aluminum Recycling

机译:铝回收盐通量精制能力的热力学分析

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摘要

The removability of impurities during the aluminum remelting process by oxidation was previously investigated by our research group. In the present work, alternative impurity removal with chlorination has been evaluated by thermodynamic analysis. For 43 different elements, equilibrium distribution ratios among metal, chloride flux and oxide slag phases in the aluminum remelting process were calculated by assuming the binary systems of aluminum and an impurity element. It was found that the removability of impurities isn’t significantly affected by process parameters such as chloride partial pressure, temperature and flux composition. It was shown that Ho, Dy, Li, La, Mg, Gd, Ce, Yb, Ca and Sr can be potentially eliminated into flux by chlorination from the remelted aluminum. Chlorination and oxidation are not effective to remove other impurities from the melting aluminum, due to the limited parameters which can be controlled during the remelting process. It follows that a proper management of aluminum scrap such as sorting based on the composition of the products is important for sustainable aluminum recycling.
机译:我们的研究小组先前曾研究过通过氧化在铝重熔过程中去除杂质的能力。在目前的工作中,已经通过热力学分析评估了用氯化法去除杂质的方法。对于43种不同的元素,通过假设铝和杂质元素的二元体系,计算了铝重熔过程中金属,氯化物通量和氧化物渣相之间的平衡分配比。发现杂质的可去除性不受诸如氯化物分压,温度和助熔剂组成等工艺参数的显着影响。结果表明,通过氯化可从重熔铝中将Ho,Dy,Li,La,Mg,Gd,Ce,Yb,Ca和Sr潜在地消除为助熔剂。由于在重熔过程中可以控制的参数有限,氯化和氧化不能有效地从熔融铝中除去其他杂质。随之而来的是,对铝屑进行适当的管理,例如根据产品的成分进行分类,对于可持续的铝回收非常重要。

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