首页> 外文会议>132nd TMS Annual Meeting, Mar 2-6, 2003, San Diego, California >An Improved Method for Removing Light Metals from Molten Aluminum in a Reduction Plant
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An Improved Method for Removing Light Metals from Molten Aluminum in a Reduction Plant

机译:还原厂中铝液中轻金属去除的改进方法

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Both modern magnetically compensated and modernized cells using low ratio bath with quiet metal pads can produce aluminum with sodium content higher than preferred. Older potlines using LiF-modified bath as a means to enhance profitability, produce virgin Al with 10-20 PPM Li in addition to some Na. To improve both quality and efficiency in processing Al to obtain premium grades or meet specifications for certain products, the light metals should be removed before the tapping crucibles are loaded into the casthouse furnaces. Technologies ranging from a bed of (charcoal + AlF_3) to treatment-in-crucible (TAC) with powdered AlF_3 added to a vortex for dispersion are being used to lower the concentration of light metals. Here, an improved TAC method is described based upon the efficient dispersion of powdered NaAlF_4 introduced on a carrier gas stream down a hollow impeller, which further disperses the fluoride, which, because of its higher vapor pressure, vaporizes and improves the contact with molten Al. The system includes other advantageous features. This process has the expectation for removing light metals more efficiently and will reduce concentrations of Na and Li to 1 PPM within 10-12 minutes.
机译:使用低比例镀液和安静的金属垫的现代磁补偿电池和现代化电池都可以生产铝含量高于理想含量的铝。使用LiF改性镀液作为提高获利能力的老式电解槽,除了生产某些钠外,还可以生产含10-20 PPM锂的纯铝。为了提高加工Al的质量和效率,以获得优质等级或满足某些产品的规格,应在将出炉坩埚装入浇铸炉之前除去轻金属。从(木炭+ AlF_3)床到在坩埚中添加AlF_3粉末以进行分散的坩埚处理(TAC)等技术正在被用来降低轻金属的浓度。在此,基于在空心叶轮上沿载气流引入的载气NaAlF_4的有效分散,描述了一种改进的TAC方法,该粉末进一步分散了氟化物,氟化物由于其较高的蒸气压而蒸发并改善了与熔融铝的接触。该系统包括其他有利特征。该工艺有望更有效地去除轻金属,并将在10-12分钟内将Na和Li的浓度降低至1 PPM。

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