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The energy efficiency rebound effect in general equilibrium

Christoph Boehringer () and Nicholas Rivers
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Christoph Boehringer: University of Oldenburg, Department of Economics

Authors registered in the RePEc Author Service: Christoph Böhringer

No V-410-18, Working Papers from University of Oldenburg, Department of Economics

Abstract: We develop a stylized general equilibrium model to decompose the rebound effect of energy efficiency improvements into its partial and general equilibrium components. In our theoretical analysis, we identify key drivers of the general equilibrium rebound effect, including a composition channel, an energy price channel, a labor supply channel, and a growth channel. Based on numerical simulations with both the stylized model as well as a large-scale computable general equilibrium model of the global economy, we show that both general and partial equilibrium components of the rebound effect can be substantial. Our benchmark parameterization suggests a total rebound effect due to an exogenous energy efficiency improvement in the US manufacturing sector of 67% with roughly two-thirds occurring through the partial equilibrium rebound channel and the remaining one-third occurring through the general equilibrium rebound channel

Keywords: energy efficiency; climate change; rebound effect; general equilibrium (search for similar items in EconPapers)
Date: 2018-06, Revised 2018-06
New Economics Papers: this item is included in nep-cmp and nep-ene
References: View references in EconPapers View complete reference list from CitEc
Citations: View citations in EconPapers (6)

Published in Oldenburg Working Papers V-410-18

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http://www.uni-oldenburg.de/fileadmin/user_upload/ ... ete/vwl/V-410-18.pdf First version, 2018 (application/pdf)

Related works:
Journal Article: The energy efficiency rebound effect in general equilibrium (2021) Downloads
Working Paper: The Energy Efficiency Rebound Effect in General Equilibrium (2018) Downloads
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Persistent link: https://EconPapers.repec.org/RePEc:old:dpaper:410

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