Samal Sneha
FZU-Institute of Physics of Czech Academy of Sciences, Na Slovance 1999/2, 182 21 Prague, Czech Republic.
Materials (Basel). 2021 Apr 25;14(9):2211. doi: 10.3390/ma14092211.
An overview is presented on the prospective use of red mud as a resource in this review. Various scopes are suggested for the utilization of red mud to maintain a sustainable environment. The potential use of red mud covers the valuable metal recovery that could emphasize the use of red mud as a resource. Red mud could act as reduced slag in the metallurgical field for the extraction of minerals and metals for upscale application. Although many studies have revealed the potential utilization of red mud, most of them are only limited to a lab-scale basis. Therefore, a large-scale investigation on recycling of red mud for the extraction in the area of the metal recovery section will draw attention to the extensive use of red mud. Metal ions of major elements Fe (44 wt.%), Al (18.2 wt.%), Si (14.3 wt.%), Ti (9.3 wt.%), Na (6.2 wt.%), Ca (4.4 wt.%) as major elements and of Mg, V, Mn, Cr, K as minor elements and rare earth elements such as Ce (102 mg/kg), La (56 mg/kg), Sc (47 mg/kg), Nd (45 mg/kg), Sm (9 mg/kg). Moreover, an appropriate in-house metal recovery facility with the alumina industry will come out as a cost-benefit analysis.
本综述介绍了赤泥作为一种资源的潜在用途。提出了赤泥利用的各种范围,以维持可持续环境。赤泥的潜在用途包括回收有价值的金属,这可以突出赤泥作为一种资源的用途。在冶金领域,赤泥可作为还原渣用于提取矿物和金属,以用于高端应用。尽管许多研究揭示了赤泥的潜在利用价值,但大多数研究仅局限于实验室规模。因此,在金属回收领域对赤泥回收利用进行大规模调查将引起人们对赤泥广泛应用的关注。主要元素铁(44重量%)、铝(18.2重量%)、硅(14.3重量%)、钛(9.3重量%)、钠(6.2重量%)、钙(4.4重量%)以及次要元素镁、钒、锰、铬、钾和稀土元素如铈(102毫克/千克)、镧(56毫克/千克)、钪(47毫克/千克)、钕(45毫克/千克)、钐(9毫克/千克)的金属离子。此外,氧化铝行业将建立一个合适的内部金属回收设施,并进行成本效益分析。