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DOI10.1080/14693062.2019.1607716
Multilateral parametric climate risk insurance: a tool to facilitate agreement about deployment of solar geoengineering?
Horton J.B.; Keith D.W.
发表日期2019
ISSN14693062
起始页码820
结束页码826
卷号19期号:7
英文摘要States will disagree about deployment of solar geoengineering, technologies that would reflect a small portion of incoming sunlight to reduce risks of climate change, and most disagreements will be grounded in conflicting interests. States that object to deployment will have many options to oppose it, so states favouring deployment will have a powerful incentive to meet their objections. Objections rooted in opposition to the anticipated unequal consequences of deployment may be met through compensation, yet climate policy is inhospitable to compensation via liability. We propose that multilateral parametric climate risk insurance might be a useful tool to facilitate agreement on solar geoengineering deployment. With parametric insurance, predetermined payouts are triggered when climate indices deviate from set ranges. We suggest that states favouring deployment could underwrite reduced-rate parametric climate insurance. This mechanism would be particularly suited to resolving disagreements based on divergent judgments about the outcomes of proposed implementation. This would be especially relevant in cases where disagreements are rooted in varying levels of trust in climate model predictions of solar geoengineering effectiveness and risks. Negotiations over the pricing and terms of a parametric risk pool would make divergent judgments explicit and quantitative. Reduced-rate insurance would provide a way for states that favour implementation to demonstrate their confidence in solar geoengineering by underwriting risk transfer and ensuring compensation without the need for attribution. This would offer a powerful incentive for states opposing implementation to moderate their opposition. Key policy insights States favouring deployment of solar geoengineering will need to address other states’ objections—unilateralism is implausible in practice This might be partially achieved using parametric climate risk insurance based on objective indicators A sovereign risk pool offering reduced-rate parametric insurance underwritten by states backing deployment could facilitate cooperation on solar geoengineering deployment States favouring deployment would demonstrate their confidence in solar geoengineering by supporting the risk pool Opposing states would be insured against solar geoengineering risks and proposing states would be incentivized to guard against overconfidence. © 2019, © 2019 Informa UK Limited, trading as Taylor & Francis Group.
英文关键词insurance and risk; policy interactions / integration; Solar geoengineering
语种英语
scopus关键词climate modeling; climate prediction; environmental economics; environmental policy; insurance system; policy analysis; policy approach; risk factor; solar power
来源期刊Climate Policy
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/153383
作者单位John A. Paulson School of Engineering and Applied Sciences (SEAS), Harvard University, Cambridge, MA, United States; John A. Paulson School of Engineering and Applied Sciences (SEAS), Harvard Kennedy School, Harvard University, Cambridge, MA, United States
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Horton J.B.,Keith D.W.. Multilateral parametric climate risk insurance: a tool to facilitate agreement about deployment of solar geoengineering?[J],2019,19(7).
APA Horton J.B.,&Keith D.W..(2019).Multilateral parametric climate risk insurance: a tool to facilitate agreement about deployment of solar geoengineering?.Climate Policy,19(7).
MLA Horton J.B.,et al."Multilateral parametric climate risk insurance: a tool to facilitate agreement about deployment of solar geoengineering?".Climate Policy 19.7(2019).
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