OPTIMAL CLIMATE POLICY IN 3D: MITIGATION, CARBON REMOVAL, AND SOLAR GEOENGINEERING

Author:

BELAIA MARIIA12,MORENO-CRUZ JUAN B.3,KEITH DAVID W.12ORCID

Affiliation:

1. The John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02140, USA

2. The John F. Kennedy School of Government, Harvard University, Cambridge, MA 02140, USA

3. School of Environment, Enterprise and Development, University of Waterloo Waterloo, ON, Canada N2L 3G1, Canada

Abstract

We introduce solar geoengineering (SG) and carbon dioxide removal (CDR) into an integrated assessment model to analyze the trade-offs between mitigation, SG, and CDR. We propose a novel empirical parameterization of SG that disentangles its efficacy, calibrated with climate model results, from its direct impacts. We use a simple parameterization of CDR that decouples it from the scale of baseline emissions. We find that (a) SG optimally delays mitigation and lowers the use of CDR, which is distinct from moral hazard; (b) SG is deployed prior to CDR while CDR drives the phasing out of SG in the far future; (c) SG deployment in the short term is relatively independent of discounting and of the long-term trade-off between SG and CDR over time; (d) small amounts of SG sharply reduce the cost of meeting a [Formula: see text]C target and the costs of climate change, even with a conservative calibration for the efficacy of SG.

Funder

National Science Foundation

Publisher

World Scientific Pub Co Pte Ltd

Subject

Management, Monitoring, Policy and Law,Economics and Econometrics,Global and Planetary Change

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