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Decarbonizing operational emissions in urban neighborhoods with the integration of rooftop photovoltaics and green infrastructure under current and future climate conditions
Energy and Buildings ( IF 6.6 ) Pub Date : 2025-01-13 , DOI: 10.1016/j.enbuild.2025.115306
N. Skandalos, D. Karamanis
Energy and Buildings ( IF 6.6 ) Pub Date : 2025-01-13 , DOI: 10.1016/j.enbuild.2025.115306
N. Skandalos, D. Karamanis
Since the time to achieve the sustainable urban transformation to carbon neutrality and mitigate climate change is limited, rapid and deep actions are needed in a feasible pathway based on existing, scalable, and adaptable technological and natural solutions to be deployed within this decade. In this work, we explore, for the first time to the best of our knowledge, the feasibility of achieving carbon neutrality at representative building blocks of two neighborhoods at different climatic conditions and local climate zones in Europe by combining the already available cost-effective resources of greenery as trees, on-site clean electricity generation with well-developed photovoltaics and grid decarbonization with the current transition rate.
中文翻译:
在当前和未来的气候条件下,通过整合屋顶光伏和绿色基础设施,使城市社区的运营排放脱碳
由于实现可持续城市转型至碳中和和减缓气候变化的时间有限,因此需要基于现有、可扩展且适应性强的技术和自然解决方案,在这十年内采取快速而深入的行动。在这项工作中,我们首次尽我们所知,通过将现有的绿色植物(如树木)、现场清洁发电与发达的光伏和电网脱碳相结合,将欧洲不同气候条件和当地气候区的两个社区的代表性建筑块实现碳中和的可行性当前的过渡率。
更新日期:2025-01-13
中文翻译:
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在当前和未来的气候条件下,通过整合屋顶光伏和绿色基础设施,使城市社区的运营排放脱碳
由于实现可持续城市转型至碳中和和减缓气候变化的时间有限,因此需要基于现有、可扩展且适应性强的技术和自然解决方案,在这十年内采取快速而深入的行动。在这项工作中,我们首次尽我们所知,通过将现有的绿色植物(如树木)、现场清洁发电与发达的光伏和电网脱碳相结合,将欧洲不同气候条件和当地气候区的两个社区的代表性建筑块实现碳中和的可行性当前的过渡率。