Energy Efficiency and Directed Technical Change: Implications for Climate Change Mitigation

Author:

Casey Gregory1

Affiliation:

1. Department of Economics, Williams College

Abstract

Abstract I develop a directed technical change model of economic growth and energy efficiency in order to study the impact of climate change mitigation policies on energy use. I show that the standard Cobb–Douglas production function used in the environmental macroeconomics literature overstates the reduction in cumulative energy use that can be achieved with a given path of energy taxes. I also show that, in the model, the government combines energy taxes with research and development (R&D) policy that favors output-increasing technology—rather than energy efficiency technology—to maximize welfare subject to a constraint on cumulative energy use. In addition, I study energy use dynamics following sudden improvements in energy efficiency. Exogenous shocks that increase energy efficiency also decrease the incentive for subsequent energy efficiency R&D and increase long-run energy use relative to a world without the original shock. Subsidies for energy efficiency R&D, however, permanently alter R&D incentives and decrease long-run energy use.

Publisher

Oxford University Press (OUP)

Subject

Economics and Econometrics

Reference74 articles.

1. Directed Technical Change;Acemoglu;Review of Economic Studies,2002

2. Labor- and Capital-Augmenting Technical Change;Acemoglu;Journal of the European Economic Association,2003

3. The Environment and Directed Technical Change;Acemoglu;American Economic Review,2012

4. Innovation, Reallocation, and Growth;Acemoglu;American Economic Review,2018

5. Transition to Clean Technology;Acemoglu;Journal of Political Economy,2016

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