Tracking policy uncertainty under climate change

被引:21
|
作者
Lin, Boqiang [1 ]
Zhao, Hengsong [1 ]
机构
[1] Xiamen Univ, China Inst Studies Energy Policy, Sch Management, Xiamen 361005, Fujian, Peoples R China
基金
中国国家自然科学基金;
关键词
Climate policy; Uncertainty; Macroeconomic fluctuations; CO2; emissions; Energy market; POLITICAL UNCERTAINTY; CHINA; INVESTMENT; EMISSIONS; IMPACT;
D O I
10.1016/j.resourpol.2023.103699
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Currently, climate change is one of the world's most crucial challenges. Climate risks could have a substantial and inevitable influence on the economic sectors, financial markets, and households. Most countries have pledged to take more actions to combat climate change. However, a significant uncertainty appears in the design and implementation of climate policies, especially in the timetable, magnitude, and anticipated consequences. In other words, it is uncertain what trends in climate policy are changing. Using the textual method, we build a monthly Climate Policy Uncertainty index for China, India, the United States, and the United Kingdom from the period 2000 to 2020. To gain a better understanding of the index, we compare it with other economic and political uncertainty indexes. Considering the close relationship between climate policy and economic activity, we further conduct the Granger Causality test and explore the response of economic fluctuations to the shock from climate policy uncertainty using the Bayesian VAR model. Our empirical results indicate that the uncertainty of climate policy can lead to steady growth of the fossil fuel industry. Finally, some targeted policies are suggested based on the empirical results.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] Climate change policy under polar amplification
    Brock, W.
    Xepapadeas, A.
    EUROPEAN ECONOMIC REVIEW, 2017, 94 : 263 - 282
  • [22] Energy policy and economics under climate change
    Moriarty, Patrick
    Honnery, Damon
    AIMS ENERGY, 2018, 6 (02) : 272 - 290
  • [23] Climate change policy under polar amplification
    Brock, W.
    Xepapadeas, A.
    EUROPEAN ECONOMIC REVIEW, 2017, 99 : 93 - 112
  • [24] The nexus between climate change risk and financial policy uncertainty
    Hunjra, Ahmed Imran
    Azam, Muhammad
    Al-Faryan, Mamdouh Abdulaziz Saleh
    INTERNATIONAL JOURNAL OF FINANCE & ECONOMICS, 2024, 29 (02) : 1401 - 1416
  • [25] Cascading uncertainty in climate change models and its implications for policy
    Maslin, Mark
    GEOGRAPHICAL JOURNAL, 2013, 179 (03): : 264 - 271
  • [26] Climate change and Japanese economic policy uncertainty: Asymmetric analysis
    Zhang, Jiaming
    Zou, Yang
    Xiang, Yitian
    Guo, Songlin
    FINANCE RESEARCH LETTERS, 2023, 56
  • [27] Communicating Climate Change Uncertainty to Policy-Makers and the Public
    Mort Webster
    Climatic Change, 2003, 61 : 1 - 8
  • [28] Uncertainty in simulating wheat yields under climate change
    Asseng S.
    Ewert F.
    Rosenzweig C.
    Jones J.W.
    Hatfield J.L.
    Ruane A.C.
    Boote K.J.
    Thorburn P.J.
    Rötter R.P.
    Cammarano D.
    Brisson N.
    Basso B.
    Martre P.
    Aggarwal P.K.
    Angulo C.
    Bertuzzi P.
    Biernath C.
    Challinor A.J.
    Doltra J.
    Gayler S.
    Goldberg R.
    Grant R.
    Heng L.
    Hooker J.
    Hunt L.A.
    Ingwersen J.
    Izaurralde R.C.
    Kersebaum K.C.
    Müller C.
    Naresh Kumar S.
    Nendel C.
    O'Leary G.
    Olesen J.E.
    Osborne T.M.
    Palosuo T.
    Priesack E.
    Ripoche D.
    Semenov M.A.
    Shcherbak I.
    Steduto P.
    Stöckle C.
    Stratonovitch P.
    Streck T.
    Supit I.
    Tao F.
    Travasso M.
    Waha K.
    Wallach D.
    White J.W.
    Williams J.R.
    Nature Climate Change, 2013, 3 (9) : 827 - 832
  • [29] Climate Change and Decision-Making Under Uncertainty
    Rasoul Yousefpour
    Marc Hanewinkel
    Current Forestry Reports, 2016, 2 : 143 - 149
  • [30] Uncertainty in simulating wheat yields under climate change
    Asseng, S.
    Ewert, F.
    Rosenzweig, C.
    Jones, J. W.
    Hatfield, J. L.
    Ruane, A. C.
    Boote, K. J.
    Thorburn, P. J.
    Rotter, R. P.
    Cammarano, D.
    Brisson, N.
    Basso, B.
    Martre, P.
    Aggarwal, P. K.
    Angulo, C.
    Bertuzzi, P.
    Biernath, C.
    Challinor, A. J.
    Doltra, J.
    Gayler, S.
    Goldberg, R.
    Grant, R.
    Heng, L.
    Hooker, J.
    Hunt, L. A.
    Ingwersen, J.
    Izaurralde, R. C.
    Kersebaum, K. C.
    Mueller, C.
    Kumar, S. Naresh
    Nendel, C.
    O'Leary, G.
    Olesen, J. E.
    Osborne, T. M.
    Palosuo, T.
    Priesack, E.
    Ripoche, D.
    Semenov, M. A.
    Shcherbak, I.
    Steduto, P.
    Stoeckle, C.
    Stratonovitch, P.
    Streck, T.
    Supit, I.
    Tao, F.
    Travasso, M.
    Waha, K.
    Wallach, D.
    White, J. W.
    Williams, J. R.
    NATURE CLIMATE CHANGE, 2013, 3 (09) : 827 - 832