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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Review of measures for improved energy efficiency in production-related processes in the aluminium industry - From electrolysis to recycling
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Review of measures for improved energy efficiency in production-related processes in the aluminium industry - From electrolysis to recycling

机译:审查铝工业中与生产相关的过程中提高能源效率的措施-从电解到回收

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摘要

The aluminium industry is facing a challenge in meeting the goal of halved greenhouse gas emissions by 2050, while the demand for aluminium is estimated to increase 2-3 times by the same year. Energy efficiency will play an important part in achieving the goal. The paper's aim was to investigate possible production-related energy efficiency measures in the aluminium industry. Mining of bauxite and production of alumina from bauxite are not included in the study. In total, 52 measures were identified through a literature review. Electrolysis in primary aluminium production, recycling and general measures constituted the majority of the 52 measures. This can be explained by the high energy intensity of electrolysis, the relatively wide applicability of the general measures and the fact that all aluminium passes through either electrolysis or recycling. Electrolysis shows a higher number of emergingovel measures compared to the other processes, which can also be explained by its high energy intensity. Processing aluminium with extrusion, rolling, casting (shape-casting and casting of ingots, slabs and billets), heat treatment and anodising will also benefit from energy efficiency. However, these processes showed relatively fewer measures, which might be explained by the fact that to some extent, these processes are not as energy demanding compared, for example, to electrolysis. In many cases, the presented measures can be combined, which implies that the best practice should be to combine the measures. There may also be a future prospect of achieving carbon-neutral and coal-independent electrolysis. Secondary aluminium production will be increasingly important for meeting the increasing demand for aluminium with respect to environmental and economic concerns and strengthened competitiveness. Focusing on increased production capacity, recovery yields and energy efficiency in secondary production will be pivotal. Further research and development will be required for those measures designated as novel or emerging.
机译:铝行业在实现到2050年将温室气体排放量减少一半的目标方面面临着挑战,而同年对铝的需求估计将增长2-3倍。能源效率将在实现该目标中发挥重要作用。本文的目的是研究铝工业中可能的与生产相关的能源效率措施。该研究不包括铝土矿的开采和由铝土矿生产氧化铝。通过文献综述,总共确定了52种措施。在52项措施中,电解铝生产,回收和一般措施中的大部分构成。可以通过电解的高能量强度,一般措施的相对广泛的适用性以及所有铝都通过电解或循环的事实来解释。与其他过程相比,电解显示出更多的新兴/新颖措施,这也可以通过其高能量强度来解释。通过挤压,轧制,铸造(铸锭,铸坯和方坯的形状铸造和铸造),热处理和阳极氧化处理铝也将受益于能源效率。然而,这些过程显示出相对较少的措施,这可以通过以下事实来解释:在某种程度上,这些过程与例如电解相比没有能量需求。在许多情况下,可以组合提出的措施,这意味着最佳实践应该是合并措施。实现碳中性和不依赖煤的电解也可能有未来的前景。对于满足铝在环境和经济问题以及增强竞争力方面的需求,二次铝的生产将变得越来越重要。着眼于提高生产能力,二次生产的回收率和能源效率将至关重要。对于那些被指定为新颖或新兴的措施,将需要进一步的研究和开发。

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