Urban emissions and land use efficiency scenarios for avoiding increments of global warming

被引:5
作者
Kilkis, Siir [1 ,2 ]
机构
[1] Sci & Technol Res Council Turkiye, Ataturk Bulvari 221, TR-06100 Kavaklidere, Ankara, Turkiye
[2] Middle East Tech Univ, Dumlupinar Bulvari 1, TR-06800 Cankaya, Ankara, Turkiye
关键词
Urban areas; Mitigation; Emissions; Land use efficiency; Global warming; Climate change; 100-PERCENT RENEWABLE ENERGY; HEAT ROADMAP EUROPE; CLIMATE-CHANGE; CARBON EMISSIONS; ANNUAL UPDATE; SYSTEM; INDICATORS; STATE;
D O I
10.1016/j.energy.2024.132174
中图分类号
O414.1 [热力学];
学科分类号
摘要
Urban areas have key roles in climate mitigation, including increasing renewable energy penetration in smart energy systems. The potential of urban areas in limiting global warming, however, is not quantified. This research work develops a new framework to analyse urban emissions and land use efficiency scenarios with coupling to the transient climate response to cumulative carbon dioxide emissions. Two new parameters that quantify contributions to and avoidance of increments of global warming from urban areas are formulated and applied to twelve scenario combinations. The results for 465 urban areas indicate that a green-growth scenario with lower ambition in reducing urban emissions can lead up to a 0.13 degrees C additional increment of global warming in 2050 based on the best estimate of the transient climate response to cumulative carbon dioxide emissions. Those of the most ambitious urban emissions scenario with green-growth and renewable energy are limited to 0.06 degrees C. When combined with the most ambitious land use efficiency scenario for 135 urban areas, it is possible to avoid more than double or 2.09 times additional increments of global warming in comparison to other integrated urban scenarios. The mean and 5-95th percentile range of the results are compared based on 10,000 Monte Carlo simulations. Informing on the urgency to ensure ambitious mitigation action in urban areas can support a climate future that remains within critical thresholds and tipping elements of the planet.
引用
收藏
页数:18
相关论文
共 106 条
[1]   Energy storage integration with solar PV for increased electricity access: A case study of Burkina Faso [J].
Abid, Hamza ;
Thakur, Jagruti ;
Khatiwada, Dilip ;
Bauner, David .
ENERGY, 2021, 230
[2]   Net-zero exergoeconomic and exergoenvironmental building as new concepts for developing sustainable built environments [J].
Ahmadi, Mohammad Mahdi ;
Keyhani, Alireza ;
Kalogirou, Soteris A. ;
Lam, Su Shiung ;
Peng, Wanxi ;
Tabatabaei, Meisam ;
Aghbashlo, Mortaza .
ENERGY CONVERSION AND MANAGEMENT, 2021, 244
[3]   Warming caused by cumulative carbon emissions towards the trillionth tonne [J].
Allen, Myles R. ;
Frame, David J. ;
Huntingford, Chris ;
Jones, Chris D. ;
Lowe, Jason A. ;
Meinshausen, Malte ;
Meinshausen, Nicolai .
NATURE, 2009, 458 (7242) :1163-1166
[4]  
Amer S.B., 2019, INT J SUSTAIN ENG, V24, P21, DOI [10.5278/ijsepm.3356, DOI 10.5278/IJSEPM.3356]
[5]   Carbon-concentration and carbon-climate feedbacks in CMIP6 models and their comparison to CMIP5 models [J].
Arora, Vivek K. ;
Katavouta, Anna ;
Williams, Richard G. ;
Jones, Chris D. ;
Brovkin, Victor ;
Friedlingstein, Pierre ;
Schwinger, Jorg ;
Bopp, Laurent ;
Boucher, Olivier ;
Cadule, Patricia ;
Chamberlain, Matthew A. ;
Christian, James R. ;
Delire, Christine ;
Fisher, Rosie A. ;
Hajima, Tomohiro ;
Ilyina, Tatiana ;
Joetzjer, Emilie ;
Kawamiya, Michio ;
Koven, Charles D. ;
Krasting, John P. ;
Law, Rachel M. ;
Lawrence, David M. ;
Lenton, Andrew ;
Lindsay, Keith ;
Pongratz, Julia ;
Raddatz, Thomas ;
Seferian, Roland ;
Tachiiri, Kaoru ;
Tjiputra, Jerry F. ;
Wiltshire, Andy ;
Wu, Tongwen ;
Ziehn, Tilo .
BIOGEOSCIENCES, 2020, 17 (16) :4173-4222
[6]   A smart energy system approach vs a non-integrated renewable energy system approach to designing a future energy system in Zagreb [J].
Bacekovic, Ivan ;
Ostergaard, Poul Alberg .
ENERGY, 2018, 155 :824-837
[7]   Local smart energy systems and cross-system integration [J].
Bacekovic, Ivan ;
Ostergaard, Poul Alberg .
ENERGY, 2018, 151 :812-825
[8]   Integrated energy planning to meet 2050 European targets: A Southern Italian region case study [J].
Battaglia, V. ;
De Luca, G. ;
Fabozzi, S. ;
Lund, H. ;
Vanoli, L. .
ENERGY STRATEGY REVIEWS, 2022, 41
[9]   Low-cost renewable electricity as the key driver of the global energy transition towards sustainability [J].
Bogdanov, Dmitrii ;
Ram, Manish ;
Aghahosseini, Arman ;
Gulagi, Ashish ;
Oyewo, Ayobami Solomon ;
Child, Michael ;
Caldera, Upeksha ;
Sadovskaia, Kristina ;
Farfan, Javier ;
Noel Simas Barbosa, Larissa De Souza ;
Fasihi, Mahdi ;
Khalili, Siavash ;
Traber, Thure ;
Breyer, Christian .
ENERGY, 2021, 227
[10]   Radical transformation pathway towards sustainable electricity via evolutionary steps [J].
Bogdanov, Dmitrii ;
Farfan, Javier ;
Sadovskaia, Kristina ;
Aghahosseini, Arman ;
Child, Michael ;
Gulagi, Ashish ;
Oyewo, Ayobami Solomon ;
Noel Simas Barbosa, Larissa de Souza ;
Breyer, Christian .
NATURE COMMUNICATIONS, 2019, 10 (1)