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等离子体辅助废铝渣合成γ-氧化铝。

Plasma assisted synthesis of γ-alumina from waste aluminium dross.

机构信息

Department of Physics, Bharathiar University, Coimbatore, TN, India.

Department of Physics, Bharathiar University, Coimbatore, TN, India.

出版信息

Waste Manag. 2018 Jul;77:565-575. doi: 10.1016/j.wasman.2018.05.005. Epub 2018 May 31.

DOI:10.1016/j.wasman.2018.05.005
PMID:29778404
Abstract

Aluminium dross, a waste generated from aluminium melting process, contains aluminium metal, aluminium oxide, aluminium oxy-nitride and impurities such as sodium chloride and potassium chloride. Since aluminium dross is land filled without treatment, it is hazardous to the environment. Conventional methods for the metal recovery from the recycling of aluminium dross involve chemicals and are time consuming. In this study, an attempt was made to treat aluminium dross using plasma arc melting process. The aluminium dross was melted and evaporated by the plasma arc established between a crucible anode and a rod type hollow cathode made of graphite. Raw dross and products of plasma treated dross such as slag and fine powder were characterized. The generation of ultrafine alumina powder and slag are explained using simulation of the plasma arc inside the crucible and free energy minimization calculations. High temperature and air entrainment into the plasma inside the crucible converted the dross into alumina slag and fine powder. The amount of fine alumina powder produced increased substantially with plasma power initially as seen from the results of alumina obtained at 5 kW and 10 kW. However, further increase in plasma power resulted only in marginal increase in the conversion of Al dross to alumina. Results of this study indicate that arc plasma technology can be effectively applied to convert Al dross into value added fine alumina powder.

摘要

铝渣是铝熔炼过程中产生的一种废物,含有铝金属、氧化铝、铝氧氮化物以及氯化钠和氯化钾等杂质。由于铝渣未经处理直接填埋,对环境造成危害。传统的从铝渣回收金属的方法涉及化学物质,且耗时较长。在本研究中,尝试使用等离子弧熔炼工艺处理铝渣。等离子弧在坩埚阳极和石墨制成的棒型空心阴极之间建立,使铝渣熔化和蒸发。对原始铝渣和经过等离子处理的铝渣(如炉渣和细粉)的产物进行了表征。通过坩埚内等离子体的模拟和自由能最小化计算,解释了超细氧化铝粉末和炉渣的生成。高温和空气进入坩埚内的等离子体,将铝渣转化为氧化铝炉渣和细粉。从在 5kW 和 10kW 时获得的氧化铝的结果可以看出,最初等离子功率的增加会导致细氧化铝粉末的产量大幅增加。然而,进一步增加等离子功率只会使铝渣向氧化铝的转化率略有增加。本研究结果表明,电弧等离子体技术可有效地应用于将铝渣转化为附加值高的细氧化铝粉末。

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