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Synthesis of Hercynite from Aluminium Dross at 1550°C: Implication for Industrial Waste Recycling

机译:从1550°C的铝渣合成Hercynite:工业废物回收的含义

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Aluminium dross is a waste from aluminium melting process, containing approximately 70 wt% of AI_2O_3. Disposal of dross in landfill causes soil and ground water pollutions, leading to the difficulty of waste management. This work aims to utilize aluminium dross as a source of AI_2O_3 for the synthesis of hercynite (FeAl_2O_4). Aluminium dross was heated at 1200°C for 1 hour in air and then compacted into a substrate using a hydraulic press. The substrate was brought into contact with two different types of iron chip at 1550°C in air for 6 hours. Pure iron chip and iron chips containing 0.8 wt% carbon were employed in this experiment in order to investigate the effect of carbon content in the iron chip on the formation of hercynite. The samples after reactions were characterized using XRD, SEM and EDS techniques. It was found that the final product is hercynite having a dark grey solid phase. The formation of hercynite was due to the interaction of AI_2O_3 in the dross with Fe and/or FeO in the system. FeO came from the oxidization of iron chip due to the excess of oxygen in the system. Carbon content in the iron was found to effect the formation of FeO in the system, which in turn effect the formation of hercynite. This research is one of the possible way to recycling aluminium dross instead of bury in a landfill.
机译:铝渣是铝熔化过程的废物,含有约70wt%的AI_2O_3。处理垃圾填埋场渣滓导致土壤和地下水污染,导致废物管理的难度。这项工作旨在利用铝渣作为AI_2O_3的来源,用于合成Hercynite(FEAL_2O_4)。铝渣在空气中在1200℃下加热1小时,然后使用液压机压实到基板中。将基板在1550℃的空气中与两种不同类型的铁芯片接触6小时。本实验中使用纯铁芯片和含有0.8wt%碳的铁芯片,以研究碳含量在铁芯片上形成Hercynite的影响。使用XRD,SEM和EDS技术表征后反应后的样品。发现最终产物是Hercynite具有深灰色固相。 Hercynite的形成是由于Ai_2O_3在系统中的Fe和/或Feo在渣滓中的相互作用。由于系统中的过量氧气,Feo来自铁芯的氧化。发现铁中的碳含量有效地影响了系统中的FEO,这反过来效果形成肝炎。该研究是回收铝渣而不是埋在垃圾填埋场中可能的方法之一。

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