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Risks on global financial stability induced by climate change: the case of flood risks

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Abstract

There is increasing concern among financial regulators that changes in the distribution and frequency of extreme weather events induced by climate change could pose a threat to global financial stability. We assess this risk, for the case of floods, by developing a simple model of the propagation of climate-induced shocks through financial networks. We show that the magnitude of global risks is determined by the interplay between the exposure of countries to climate-related natural hazards and their financial leverage. Climate change induces a shift in the distribution of impacts towards high-income countries and thus larger amplification of impacts as the financial sectors of high-income countries are more leveraged. Conversely, high-income countries are more exposed to financial shocks. In high-end climate scenarios, this could lead to the emergence of systemic risk as total impacts become commensurate with the capital of the banking sectors of countries that are hubs of the global financial network. Adaptation policy, or the lack thereof, appears to be one of the key risk drivers as it determines the future exposure of high-income countries. This implies in particular that the avoided costs in terms of financial stability should be weighted in as benefits of adaptation policy.

Original languageEnglish
Article number4
Pages (from-to)1-24
Number of pages24
JournalClimatic Change
Volume166
Issue number1-2
Early online date4 May 2021
DOIs
Publication statusPublished - May 2021

Bibliographical note

Funding Information:
Antoine Mandel acknowledges the support from EU H2020 project grants TIPPING+ 884565, CLIMEX 851876 , and EPOC 956107. Elke Koks was supported by the Netherlands Organisation for Scientific Research (NWO; grant no. VI.Veni.194.033). Philip J. Ward received funding from the Dutch Research Council (NWO) in the form of a VIDI grant (grant no. 016.161.324). Jochen Hinkel and Daniel Lincke have been partially supported by the European Union Horizon 2020 Programme under the COACCH project (grant 776479) and the German Federal Ministry of Education and Research through the ERA4CS projects ISIPEDIA (grant 01LS1711C) and INSEAPTION (grant 01LS1703A).

Publisher Copyright:
© 2021, The Author(s), under exclusive licence to Springer Nature B.V.

Copyright:
Copyright 2021 Elsevier B.V., All rights reserved.

Funding

Antoine Mandel acknowledges the support from EU H2020 project grants TIPPING+ 884565, CLIMEX 851876 , and EPOC 956107. Elke Koks was supported by the Netherlands Organisation for Scientific Research (NWO; grant no. VI.Veni.194.033). Philip J. Ward received funding from the Dutch Research Council (NWO) in the form of a VIDI grant (grant no. 016.161.324). Jochen Hinkel and Daniel Lincke have been partially supported by the European Union Horizon 2020 Programme under the COACCH project (grant 776479) and the German Federal Ministry of Education and Research through the ERA4CS projects ISIPEDIA (grant 01LS1711C) and INSEAPTION (grant 01LS1703A).

FundersFunder number
Horizon 2020 Framework Programme851876, 956107, 776479, 884565
Bundesministerium für Bildung und Forschung01LS1711C, 01LS1703A
Nederlandse Organisatie voor Wetenschappelijk Onderzoek016.161.134
Aard- en Levenswetenschappen, Nederlandse Organisatie voor Wetenschappelijk OnderzoekVI.Veni.194.033

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 13 - Climate Action
      SDG 13 Climate Action

    Keywords

    • Climate impacts
    • Financial stability
    • Flood risks

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