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Retrofitting strategies for improving the energy and environmental efficiency in industrial furnaces: A case study in the aluminium sector

机译:改善工业炉的能源和环境效率的改造策略:以铝行业为例

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摘要

This study aims to analyse some of the most relevant issues that the energy intensive industry needs to face in order to improve its energy and environmental performance based on innovative retrofitting strategies. To this end, a case study based on the aluminium industry, as one of the most relevant within the European energy intensive industry has been thoroughly discussed. In particular, great efforts must be addressed to reduce its environmental impact; specifically focusing on the main stages concerning the manufacturing of an aluminium billet, namely alloy production, heating, extrusion and finishing. Hence, an innovative DC ( direct current) induction technology with an expected 50% energy efficiency increase is used for retrofitting conventional techniques traditionally based on natural gas and AC (alternating current) induction. A life cycle assessment was applied to analyse three different scenarios within four representative European electricity mixes. The results reported reductions up to 8% of Green House Gases emissions in every country. France presented the best-case scenario applying only DC induction; unlike Greece, which showed around 150% increment. However, the suitability of the new DC induction technology depends on the electricity mix, the technological scenario and the environmental impact indicators. Finally, environmental external costs were assessed with comparison purposes to evaluate the increase of energy and environmental efficiency in existing preheating and melting industrial furnaces currently fed with natural gas.
机译:这项研究旨在分析基于创新改造策略的能源密集型行业,以提高其能源和环境绩效所需面对的一些最相关的问题。为此,已经对基于铝工业的案例研究进行了详尽的讨论,该案例是欧洲能源密集型行业中最重要的案例之一。特别是,必须努力减少其对环境的影响;特别着重于铝坯制造的主要阶段,即合金生产,加热,挤压和精加工。因此,可以将预期能效提高50%的创新型DC(直流)感应技术用于改造传统上基于天然气和AC(交流)感应的传统技术。进行了生命周期评估,以分析四种具有代表性的欧洲电力组合中的三种不同情况。结果显示,每个国家的温室气体排放量最多减少了8%。法国提出了仅使用直流感应的最佳情况。与希腊不同,希腊的增长率约为150%。但是,新的直流感应技术的适用性取决于电力结构,技术方案和环境影响指标。最后,评估了外部环境成本,以进行比较,以评估目前使用天然气的现有预热和熔融工业炉中能源和环境效率的提高。

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