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Phase Transformations of α-Alumina Made from Waste Aluminum via a Precipitation Technique

机译:沉淀法制得的废铝α-氧化铝的相变

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摘要

We report on a recycling project in which α-Al2O3 was produced from aluminum cans because no such work has been reported in literature. Heated aluminum cans were mixed with 8.0 M of H2SO4 solution to form an Al2(SO4)3 solution. The Al2(SO4)3 salt was contained in a white semi-liquid solution with excess H2SO4; some unreacted aluminum pieces were also present. The solution was filtered and mixed with ethanol in a ratio of 2:3, to form a white solid of Al2(SO4)3·18H2O. The Al2(SO4)3·18H2O was calcined in an electrical furnace for 3 h at temperatures of 400–1400 °C. The heating and cooling rates were 10 °C/min. XRD was used to investigate the phase changes at different temperatures and XRF was used to determine the elemental composition in the alumina produced. A series of different alumina compositions, made by repeated dehydration and desulfonation of the Al2(SO4)3·18H2O, is reported. All transitional alumina phases produced at low temperatures were converted to α-Al2O3 at high temperatures. The X-ray diffraction results indicated that the α-Al2O3 phase was realized when the calcination temperature was at 1200 °C or higher.
机译:我们报道了一个回收项目,其中用铝罐生产了α-Al2O3,因为文献中还没有报道过这种工作。将加热的铝罐与8.0 M的H2SO4溶液混合以形成Al2(SO4)3溶液。 Al2(SO4)3盐与过量的H2SO4一起包含在白色半液体溶液中;还存在一些未反应的铝块。将溶液过滤并与乙醇以2:3的比例混合,以形成Al 2(SO 4)3·18H 2 O的白色固体。 Al 2 (SO 4 3 ·18H 2 O在电炉中于200℃煅烧3小时。温度为400–1400°C。加热和冷却速率为10℃/ min。 XRD用于研究不同温度下的相变,XRF用于确定所生产氧化铝中的元素组成。 Al 2 (SO 4 3 ·18H 2 <>的反复脱水和脱硫制得的一系列不同的氧化铝组成/ sub> O。低温下产生的所有过渡氧化铝相均在高温下转化为α-Al 2 O 3 。 X射线衍射结果表明,煅烧温度为1200℃以上时,可以实现α-Al 2 O 3 相。

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