The Role of R&D and Technology Diffusion in Climate Change Mitigation: New Perspectives Using the Witch Model

dc.creatorBosetti, Valentina
dc.creatorCarraro, Carlo
dc.creatorDuval, Romain
dc.creatorSgobbi, Alessandra
dc.creatorTavoni, Massimo
dc.date2017-04-01T15:32:22Z
dc.date.accessioned2026-07-09T04:46:46Z
dc.descriptionThis paper uses the WITCH model, a computable general equilibrium model with endogenous technological change, to explore the impact of various climate policies on energy technology choices and the costs of stabilising greenhouse gas concentrations. Current and future expected carbon prices appear to have powerful effects on R&D spending and clean technology diffusion. Their impact on stabilisation costs depends on the nature of R&D: R&D targeted at incremental energy efficiency improvements has only limited effects, but R&D focused on the emergence of major new low-carbon technologies could lower costs drastically if successful – especially in the non-electricity sector, where such low-carbon options are scarce today. With emissions coming from multiple sources, keeping a wide range of options available matters for stabilisation costs more than improving specific technologies. Due to international knowledge spillovers, stabilisation costs could be further reduced through a complementary, global R&D policy. However, a strong price signal is always required.
dc.identifierdoi:10.22004/ag.econ.50363
dc.identifierhttps://ageconsearch.umn.edu/record/50363/files/14-09.pdf
dc.identifierhttp://ageconsearch.umn.edu/record/50363
dc.identifier.urihttp://hdl.handle.net/123456789/554795
dc.languageeng
dc.publisher
dc.sourcehttp://ageconsearch.umn.edu/record/50363
dc.titleThe Role of R&D and Technology Diffusion in Climate Change Mitigation: New Perspectives Using the Witch Model
dc.typeText

Archivos