Decarbonising the EU Buildings|Model-Based Insights from European Countries

IF 3 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Climate Pub Date : 2024-06-07 DOI:10.3390/cli12060085
Theofano Fotiou, Panagiotis Fragkos, Eleftheria Zisarou
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Abstract

The European Union faces the pressing challenge of decarbonising the buildings sector to meet its climate neutrality goal by 2050. Buildings are significant contributors to greenhouse gas emissions, primarily through energy consumption for heating and cooling. This study uses the advanced PRIMES-BuiMo model to develop state-of-the-art innovative pathways and strategies to decarbonise the EU buildings sector, providing insights into energy consumption patterns, renovation rates and equipment replacement dynamics in the EU and in two representative Member States, Sweden and Greece. The model-based analysis shows that the EU’s transition towards climate neutrality requires significant investment in energy efficiency of buildings combined with decarbonisation of the fuel mix, mostly through the uptake of electric heat pumps replacing the use of fossil fuels. The Use Case also demonstrates that targeted policy interventions considering the national context and specificities are required to ensure an efficient and sustainable transition to zero-emission buildings. The analysis of transformational strategies in Greece and Sweden provides an improved understanding of the role of country-specific characteristics on policy effectiveness so as to inform more targeted and contextually appropriate approaches to decarbonise the buildings sector across the EU.
欧盟建筑脱碳|欧洲国家基于模型的见解
欧盟面临着建筑领域去碳化的紧迫挑战,以实现到 2050 年气候中和的目标。建筑是温室气体排放的重要来源,主要是通过供暖和制冷的能源消耗。本研究利用先进的 PRIMES-BuiMo 模型来开发最先进的创新路径和战略,以实现欧盟建筑行业的去碳化,深入了解欧盟以及瑞典和希腊这两个具有代表性的成员国的能源消耗模式、翻新率和设备更换动态。基于模型的分析表明,欧盟向气候中和的过渡需要对建筑能效进行大量投资,同时实现燃料组合的去碳化,主要是通过采用电热泵来取代化石燃料的使用。使用案例还表明,要确保高效、可持续地向零排放建筑过渡,需要考虑国情和具体情况,采取有针对性的政策干预措施。通过对希腊和瑞典转型战略的分析,我们可以更好地理解国家特性对政策有效性的作用,从而为欧盟建筑行业脱碳提供更有针对性、更符合国情的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Climate
Climate Earth and Planetary Sciences-Atmospheric Science
CiteScore
5.50
自引率
5.40%
发文量
172
审稿时长
11 weeks
期刊介绍: Climate is an independent, international and multi-disciplinary open access journal focusing on climate processes of the earth, covering all scales and involving modelling and observation methods. The scope of Climate includes: Global climate Regional climate Urban climate Multiscale climate Polar climate Tropical climate Climate downscaling Climate process and sensitivity studies Climate dynamics Climate variability (Interseasonal, interannual to decadal) Feedbacks between local, regional, and global climate change Anthropogenic climate change Climate and monsoon Cloud and precipitation predictions Past, present, and projected climate change Hydroclimate.
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