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Aluminum smelters in the energy transition: Optimal configuration and operation for renewable energy integration in high insolation regions

机译:铝冶炼能量转换:高缺位区域可再生能源集成的最佳配置和操作

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The aluminum industry consumes about 4% of global electricity but requires stable power supply as long power outages are catastrophic. We investigate how the aluminum industry can maximally integrate variable renewable energy resources while remaining competitive. This can be achieved by (i) modulating production and (ii) utilizing storage. We develop an hourly linear optimization system for integrating variable energy sources and apply it for identifying the optimal configuration and operational profile for UAE-located smelter. Operating with the optimal renewable energy and fossil mix and a novel power modulation scheme, consistently reduces costs between 2.2% and 5.3% for fuel prices ranging between $2.4-$8 per MMBtu and integrating more than 40% of power by solar PV without storage. This reduces process emissions intensity from 5.13 to 2.87 tCO(2)/tAl. In all cases of RE integration, modulation confers a significant cost advantage with savings ranging from 7.5% to 10% for the fuel price range. Operating the smelter with 100% renewable energy portfolio could be achieved by installing 5.4 GWp single-axis tracking PV, 0.2 GWp wind, 18 GWh of battery storage and 47 GWh of hydrogen storage but with a 26% premium for 2020 high gas-price system costs. (C) 2021 Elsevier Ltd. All rights reserved.
机译:铝业生产约占全球电力的4%,但需要稳定的电源,因为长期停电是灾难性的。我们调查铝业如何最大限度地集成可变可再生能源,同时持续竞争。这可以通过(i)调节生产和(ii)利用储存来实现。我们开发了一个小时线性优化系统,用于集成可变能源,并应用它来识别阿联酋定位的冶炼厂的最佳配置和操作简档。使用最佳可再生能源和化石混合和新型电力调制方案,始终如一地降低2.2%和5.3%的燃料价格之间的燃料价格在2.4-每MMBTU的价格之间,并通过无存储器整合超过40%的功率。这将过程排放强度从5.13降至2.87 TCO(2)/ tal。在所有重新整合的情况下,调制赋予了燃油价格范围的7.5%至10%的节省优势。通过安装5.4 GWP单轴跟踪PV,0.2 GWP风,18 GWH的电池储存和储氢,47 GWH的47 GWH,可以实现100%可再生能源组合的冶炼厂。成本。 (c)2021 elestvier有限公司保留所有权利。

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