Estimating the European CO2 emissions change due to COVID-19 restrictions

被引:55
作者
Andreoni, Valeria [1 ]
机构
[1] Univ Liverpool, Management Sch, Chatham St, Liverpool L69 7ZH, Merseyside, England
基金
英国科研创新办公室;
关键词
Lockdown; Economic sectors; Carbon intensity; GDP variation; Europe;
D O I
10.1016/j.scitotenv.2021.145115
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The carbon dioxide variations generated by the socio-economic restrictions imposed by the management of the COVID-19 crisis are analysed in this paper for 23 European countries and 10 economic sectors. By considering the most up to date information on GDP and carbon intensity of production, this paper represents one of the first attempts to estimate the CO2 emissions change that have taken place in Europe during the first six months of 2020. Results show that more than 195,600 thousand tons of CO2 have been avoided between January and June 2020, compared to the same period of the previous year, representing a -12.1% emissions change. The largest reductions have taken place in the Manufacturing, Wholesale, Retail Trade, Transport, Accommodation and Food Service sectors, accounting for more than 93.7% of total CO2 change. Spain, Italy and France have been the most affected areas with -106,600 thousand tons emissions drop. In line with the results provided by previous studies, this paper highlights that the geographical and the sectoral distribution of the CO2 emissions change has been largely influenced by the magnitude of the COVID-19 impacts. In addition, the carbon intensity of production, characterizing the most affected economic activities, has been the main element of differentiation compared to the previous 2008 crisis. By providing preliminary estimation of the CO2 emissions change that have taken place across geographical and sectoral activities, this paper contributes to the existing dimate policy debate and can support future estimation of CO2 variations both in a context of confinement release as well as in a context of reintroduced COVID-19 restrictions. (C) 2021 Elsevier B.V. All rights reserved.
引用
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页数:8
相关论文
共 39 条
[11]   Global Carbon Budget 2019 [J].
Friedlingstein, Pierre ;
Jones, Matthew W. ;
O'Sullivan, Michael ;
Andrew, Robbie M. ;
Hauck, Judith ;
Peters, Glen P. ;
Peters, Wouter ;
Pongratz, Julia ;
Sitch, Stephen ;
Le Quere, Corinne ;
Bakker, Dorothee C. E. ;
Canadell, Josep G. ;
Ciais, Philippe ;
Jackson, Robert B. ;
Anthoni, Peter ;
Barbero, Leticia ;
Bastos, Ana ;
Bastrikov, Vladislav ;
Becker, Meike ;
Bopp, Laurent ;
Buitenhuis, Erik ;
Chandra, Naveen ;
Chevallier, Frederic ;
Chini, Louise P. ;
Currie, Kim I. ;
Feely, Richard A. ;
Gehlen, Marion ;
Gilfillan, Dennis ;
Gkritzalis, Thanos ;
Goll, Daniel S. ;
Gruber, Nicolas ;
Gutekunst, Soeren ;
Harris, Ian ;
Haverd, Vanessa ;
Houghton, Richard A. ;
Hurtt, George ;
Ilyina, Tatiana ;
Jain, Atul K. ;
Joetzjer, Emilie ;
Kaplan, Jed O. ;
Kato, Etsushi ;
Goldewijk, Kees Klein ;
Korsbakken, Jan Ivar ;
Landschuetzer, Peter ;
Lauvset, Siv K. ;
Lefevre, Nathalie ;
Lenton, Andrew ;
Lienert, Sebastian ;
Lombardozzi, Danica ;
Marland, Gregg .
EARTH SYSTEM SCIENCE DATA, 2019, 11 (04) :1783-1838
[12]   Lessons learnt from easing COVID-19 restrictions: an analysis of countries and regions in Asia Pacific and Europe [J].
Han, Emeline ;
Tan, Melisa Mei Jin ;
Turk, Eva ;
Sridhar, Devi ;
Leung, Gabriel M. ;
Shibuya, Kenji ;
Asgari, Nima ;
Oh, Juhwan ;
Garcia-Basteiro, Alberto L. ;
Hanefeld, Johanna ;
Cook, Alex R. ;
Hsu, Li Yang ;
Teo, Yik Ying ;
Heymann, David ;
Clark, Helen ;
McKee, Martin ;
Legido-Quigley, Helena .
LANCET, 2020, 396 (10261) :1525-1534
[13]   Assessing the recent impact of COVID-19 on carbon emissions from China using domestic economic data [J].
Han, Pengfei ;
Cai, Qixiang ;
Oda, Tomohiro ;
Zeng, Ning ;
Shan, Yuli ;
Lin, Xiaohui ;
Liu, Di .
SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 750 (750)
[14]  
He W., 2020, INT J INFORM MANAGE
[15]   A critical analysis of the impacts of COVID-19 on the global economy and ecosystems and opportunities for circular economy strategies [J].
Ibn-Mohammed, T. ;
Mustapha, K. B. ;
Godsell, J. ;
Adamu, Z. ;
Babatunde, K. A. ;
Akintade, D. D. ;
Acquaye, A. ;
Fujii, H. ;
Ndiaye, M. M. ;
Yamoah, F. A. ;
Koh, S. C. L. .
RESOURCES CONSERVATION AND RECYCLING, 2021, 164
[16]   The dramatic impact of Coronavirus outbreak on air quality: Has it saved as much as it has killed so far? [J].
Isaifan, R. J. .
GLOBAL JOURNAL OF ENVIRONMENTAL SCIENCE AND MANAGEMENT-GJESM, 2020, 6 (03) :275-288
[17]   Social and Travel Lockdown Impact Considering Coronavirus Disease (COVID-19) on Air Quality in Megacities of India: Present Benefits, Future Challenges and Way Forward [J].
Jain, Suresh ;
Sharma, Tanya .
AEROSOL AND AIR QUALITY RESEARCH, 2020, 20 (06) :1222-1236
[18]   Predicting social distancing and compulsive buying behaviours in response to COVID-19 in a United Kingdom sample [J].
Jaspal, Rusi ;
Lopes, Barbara ;
Lopes, Pedro .
COGENT PSYCHOLOGY, 2020, 7 (01)
[19]   The energy and environmental footprints of COVID-19 fighting measures - PPE, disinfection, supply chains [J].
Klemes, Jiri Jaromir ;
Van Fan, Yee ;
Jiang, Peng .
ENERGY, 2020, 211
[20]   COVID-19 pandemic: Impacts on the air quality during the partial lockdown in Sao Paulo state, Brazil [J].
Kondo Nakada, Liane Yuri ;
Urban, Rodrigo Custodio .
SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 730