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Measuring the vulnerability of an energy intensive sector to the EU ETS under a life cycle approach: The case of the chlor-alkali industry

机译:在生命周期方法下衡量能源密集型行业对EU ETS的脆弱性:氯碱行业的案例

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摘要

The EU Emissions Trading System (EU ETS), which is a cornerstone of the EU?s policy to combat climate change, has been criticised by its effects on the competitiveness of intensive energy demanding industries, and in particular, of the chlor-alkali sector. The main chlorine application in Europe is the production of polyvinyl chloride (PVC) from ethylene dichloride (EDC) as intermediate. Since chlorine is mainly traded in terms of derivatives, the aim of this work is to assess the vulnerability of the European chlor-alkali industry to chlorine replacement by imported EDC. An Energetic, Economic and Environmental Sustainability Assessment (EEESA) methodology is proposed based on the main variables affecting EDC production. Moreover, the influence of the EU ETS compensation measures and the emission allowance price in the current (mercury, diaphragm and membrane) and emergent (oxygen-depolarized cathodes (ODC)) technologies is studied. The most vulnerable scenarios become mercury and diaphragm technologies due to energy consumption. However, the salt price dependency on the quality requirements substantially influences the EEESA results. This analysis also shows the importance of hydrogen valorisation, whose major impact is observed in ODC scenario.
机译:欧盟排放交易系统(EU ETS)是欧盟应对气候变化政策的基石,但因其对高耗能行业特别是氯碱行业竞争力的影响而受到批评。 。在欧洲,主要的氯气应用是由二氯乙烷(EDC)作为中间体生产聚氯乙烯(PVC)。由于氯主要以衍生物形式交易,因此,这项工作的目的是评估欧洲氯碱工业对进口EDC替代氯的脆弱性。基于影响EDC生产​​的主要变量,提出了一种能源,经济和环境可持续性评估(EEESA)方法。此外,研究了欧盟ETS补偿措施和排放许可价格对当前(汞,隔膜和膜)和紧急情况(氧去极化阴极(ODC))技术的影响。由于能耗,最易受伤害的场景是汞和隔膜技术。但是,盐价对质量要求的依赖性极大地影响了EEESA的结果。该分析还显示了氢价平衡的重要性,在ODC情景中观察到了其主要影响。

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