Scenario analysis on co-benefits of air pollution control and carbon reduction in Yangtze River Delta based on STIRPAT model

Author:

Feng Peijiong,Gu YanORCID,Yu YaguaiORCID,Bao Yinzi,Gao Ruiyan,Ni Taohan

Abstract

In a changing climate, it is vital to focus on the co-benefits of the pollution control and carbon emission reduction. Based on calculation of emission equivalent, the synergy coefficient is further calculated to quantitatively analyze the co-benefits of air pollution control and carbon reduction in the Yangtze River Delta; Scenario analysis in co-benefits in the Yangtze River Delta from 2026–2035 is thoroughly proposed after STIRPAT model is designed based on influencing factors confirmation including population size, economic scale, industrialization level, urbanization rate and energy intensity from measuring dimensions of synergy coefficient. The results show that the Yangtze River Delta region can partially achieve synergistic emission reduction by 2026 and realize comprehensive synergistic emission reduction of air pollution and carbon emissions not late than 2030, which provides a reference for promoting the decision-making of the new stage of long-term carbon and pollution reduction, and further, realizing carbon peak regulation and carbon neutrality.

Funder

Zhejiang Office of Philosophy and Social Science

Advanced Humanities and Social Sciences Cultivation Project in Ningbo University in 2022

Ningbo Institute of Urban Civilization

Publisher

Public Library of Science (PLoS)

Reference32 articles.

1. Reflections on Several Issues of Global Climate Governance;H B. Zhang;Journal of Huazhong University of Science and Technology(Social Science Edition),2022

2. The greenhouse effect: Damages, costs, and abatement;R U Ayres;Environmental and Resource Economics,1991

3. IPCC Third Assessment Report Climate Change 2001;IPCC;The Scientific Basis-WG I SPM,2001

4. From concept to action: a review of research on co-benefits and co-control of greenhouse gases and local air pollution reductions;X Q Mao;Climate Change Research,2021

5. Assessing the economic implications of national climate change mitigation policies on cities: A CGE analysis of Auckland, New Zealand;Juan J. Monge;Journal of Cleaner Production,2023

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