Cited By
2022Climate Dynamics: Vol. 59, Issue 1-2Elevation dependent precipitation and temperature changes over Indian Himalayan regionA. P. Dimri, E. Palazzi, A. S. Dalozhttp://dx.doi.org/10.3390/en10050602
2021Energies: Vol. 14, Issue 3Attitudes on Carbon Capture and Storage (CCS) as a Mitigation Technology within the UNFCCCKatherine Romanak, Mathias Fridahl, Tim Dixonhttp://dx.doi.org/10.5194/acp-10-7017-2010
2019Applied Energy: Vol. 233-234Climate change impacts and adaptation strategies for a hydro-dominated power system via stochastic optimizationOmar J. Guerra, Diego A. Tejada, Gintaras V. Reklaitishttp://dx.doi.org/10.3390/en14030629
2018Atmospheric Chemistry and Physics: Vol. 18, Issue 13Future changes in surface ozone over the Mediterranean Basin in the framework of the Chemistry-Aerosol Mediterranean Experiment (ChArMEx)Nizar Jaidan, Laaziz El Amraoui, Jean-Luc Attié, Philippe Ricaud, François Dulachttp://dx.doi.org/10.3280/EFE2013-001006
2017Energies: Vol. 10, Issue 5The Contribution of Non-CO2 Greenhouse Gas Mitigation to Achieving Long-Term Temperature GoalsAjay Gambhir, Tamaryn Napp, Adam Hawkes, Lena Höglund-Isaksson, Wilfried Winiwarter, Pallav Purohit, Fabian Wagner, Dan Bernie, Jason Lowehttp://dx.doi.org/10.1038/nature10322
2016Climate Dynamics: Vol. 46, Issue 9-10Detection of anthropogenic influence on the evolution of record-breaking temperatures over EuropeMargot Bador, Laurent Terray, Julien Boéhttp://dx.doi.org/10.1007/s00382-021-06113-z
2015Regional Environmental Change: Vol. 15, Issue 6Quantifying biodiversity impacts of climate change and bioenergy: the role of integrated global scenariosLaura Meller, Detlef P. van Vuuren, Mar Cabezahttp://dx.doi.org/10.2183/pjab.88.385
2014Atmospheric Chemistry and Physics: Vol. 14, Issue 11Global emission projections for the transportation sector using dynamic technology modelingF. Yan, E. Winijkul, D. G. Streets, Z. Lu, T. C. Bond, Y. Zhanghttp://dx.doi.org/10.1007/s10584-006-9172-9
2014Atmospheric Chemistry and Physics: Vol. 14, Issue 19Model-simulated trend of surface carbon monoxide for the 2001–2010 decadeJ. Yoon, A. Pozzerhttp://dx.doi.org/10.5194/acp-18-9351-2018
2013Climate Dynamics: Vol. 40, Issue 11-12Linear response functions to project contributions to future sea levelRicarda Winkelmann, Anders Levermannhttp://dx.doi.org/10.1007/s10113-013-0504-9
2013Energy Procedia: Vol. 37Estimating the Supply and Demand for Deep Geologic CO2 Storage Capacity over the Course of the 21st Century: A Meta-analysis of the LiteratureJames J. Dooleyhttp://dx.doi.org/10.1007/s00382-012-1471-4
2013ECONOMICS AND POLICY OF ENERGY AND THE ENVIRONMENT, Issue 1Non-CO2 greenhouse gas mitigation modeling with marginal abatement cost curv es: technical change, emission scenarios and policy costsSamuel Carrara, Giacomo Marangonihttp://dx.doi.org/10.2139/ssrn.960746
2012SSRN Electronic JournalSynthesis of a Complete Land Use/Land Cover Dataset for the Conterminous United StatesNeil Best, Joshua Elliott, Ian Fosterhttp://dx.doi.org/10.1016/j.reseneeco.2009.04.007
2012SSRN Electronic JournalModelling Land Use, Land-Use Change, and Forestry in Climate Change: A Review of Major ApproachesMelania Michettihttp://dx.doi.org/10.1007/978-3-642-54876-5_2
2012Proceedings of the Japan Academy, Series B: Vol. 88, Issue 7Stabilization of atmospheric carbon dioxide via zero emissions—An alternative way to a stable global environment. Part 2: A practical zero-emissions scenarioTaroh MATSUNO, Koki MARUYAMA, Junichi TSUTSUIhttp://dx.doi.org/10.2139/ssrn.2051158
2011Geoscientific Model Development: Vol. 4, Issue 3The HadGEM2-ES implementation of CMIP5 centennial simulationsC. D. Jones, J. K. Hughes, N. Bellouin, S. C. Hardiman, G. S. Jones, J. Knight, S. Liddicoat, F. M. O'Connor, R. J. Andres, C. Bell, K.-O. Boo, A. Bozzo, N. Butchart, P. Cadule, K. D. Corbin, M. Doutriaux-Boucher, P. Friedlingstein, J. Gornall, L. Gray, P. R. Halloran, G. Hurtt, W. J. Ingram, J.-F. Lamarque, R. M. Law, M. Meinshausen, S. Osprey, E. J. Palin, L. Parsons Chini, T. Raddatz, M. G. Sanderson, A. A. Sellar, A. Schurer, P. Valdes, N. Wood, S. Woodward, M. Yoshioka, M. Zerroukathttp://dx.doi.org/10.5194/acp-14-10465-2014
2011Nature: Vol. 476, Issue 7358Non-CO2 greenhouse gases and climate changeS. A. Montzka, E. J. Dlugokencky, J. H. Butlerhttp://dx.doi.org/10.1007/978-3-030-29684-1_9
2010Atmospheric Chemistry and Physics: Vol. 10, Issue 15Historical (1850–2000) gridded anthropogenic and biomass burning emissions of reactive gases and aerosols: methodology and applicationJ.-F. Lamarque, T. C. Bond, V. Eyring, C. Granier, A. Heil, Z. Klimont, D. Lee, C. Liousse, A. Mieville, B. Owen, M. G. Schultz, D. Shindell, S. J. Smith, E. Stehfest, J. Van Aardenne, O. R. Cooper, M. Kainuma, N. Mahowald, J. R. McConnell, V. Naik, K. Riahi, D. P. van Vuurenhttp://dx.doi.org/10.1016/j.eneco.2005.10.003
2009Resource and Energy Economics: Vol. 31, Issue 4The opportunity cost of land use and the global potential for greenhouse gas mitigation in agriculture and forestryAlla Golub, Thomas Hertel, Huey-Lin Lee, Steven Rose, Brent Sohngenhttp://dx.doi.org/10.1007/s00382-015-2725-8
2007SSRN Electronic JournalThe WITCH Model: Structure, Baseline, SolutionsValentina Bosetti, Emanuele Massetti, Massimo Tavonihttp://dx.doi.org/10.1016/j.egypro.2013.06.429
2007Climatic Change: Vol. 81, Issue 2Stabilizing greenhouse gas concentrations at low levels: an assessment of reduction strategies and costsDetlef P. van Vuuren, Michel G. J. den Elzen, Paul L. Lucas, Bas Eickhout, Bart J. Strengers, Bas van Ruijven, Steven Wonink, Roy van Houdthttp://dx.doi.org/10.5194/gmd-4-543-2011
2006Energy Economics: Vol. 28, Issue 1Multi-gas scenarios to stabilize radiative forcingDetlef P. van Vuuren, John Weyant, Francisco de la Chesnayehttp://dx.doi.org/10.2139/ssrn.2122298

 

© 2023 International Association for Energy Economics | Privacy Policy | Return Policy