Providing adequate economic incentives for bioenergies with CO2 capture and geological storage
Tài liệu tham khảo
Arrow, 1954, Existence of an equilibrium for a competitive economy, Econometrica, 22, 265, 10.2307/1907353
Azar, 2010, The feasibility of low CO2 concentration targets and the role of bio-energy with carbon capture and storage (BECCS), Climatic Change, 100, 195, 10.1007/s10584-010-9832-7
Azar, 2006, Carbon capture and storage from fossil fuels and biomass-costs and potential role in stabilizing the atmosphere, Climatic Change, 74, 47, 10.1007/s10584-005-3484-7
Baumol, 1972, On taxation and the control of externalities, American Economic Review, 62, 307
Beaumais, 1996, Les modèles d'équilibre général appliqués à l'environnement: développements récents, Revue d'Economie Politique, 106
Carpentieri, 2005, Life cycle assessment (LCA) of an integrated biomass gasification combined cycle (IBGCC) with CO2 removal, Energy Conversion and Management, 46, 1790, 10.1016/j.enconman.2004.08.010
Edenhofer, 2005, The impact of technological change on climate protection and welfare: insights from the model MIND, Ecological Economics, 54, 277, 10.1016/j.ecolecon.2004.12.030
Finon, D., 2009. Efficiency of policy choices for the deployment of large scale low carbon technologies: the case or Carbon Capture and Sequestration (CCS). Working Paper Larsen.
Gerlagh, 2006, ITC in a global growth-climate model with CCS: the value of induced technical change for climate stabilisation, The Energy Journal, Special Issues, 223
Gerlagh, 2006, Options and instruments for a deep cut in CO2 emissions: Carbon capture or renewables, taxes or subsidies?, The Energy Journal, 27, 25, 10.5547/ISSN0195-6574-EJ-Vol27-No3-3
Gerlagh, 2003, A sensitivity analysis of timing and costs of greenhouse gas emission reductions, Climatic Change, 65, 1
Goulder, L., Parry, I.W., Burtraw, D., 1998. The cost-effectiveness of alternative instruments for environmental protection in a second-best setting. Discussion Paper 98–22, Resources for the future.
Goulder, 2008, Instrument choice in environmental policy, Review of Environmental Economics and Policy, 2, 152, 10.1093/reep/ren005
Grimaud, A., Lafforgue, G., Magné, B., 2009. Climate change mitigation options and directed technical change: a decentralized equilibrium analysis. IDEI Working Paper, no. 510, Institut d'Economie Industrielle de Toulouse.
Grönkvist, 2006, Equal opportunity for avoided CO2 emissions: a step towards more cost-effective climate change mitigation regimes, Mitigation and Adaptation Strategies for Global Change, 11, 1083, 10.1007/s11027-006-9034-9
IPCC (Intergovernmental Panel on Climate Change), 2005
IEA (International Energy Agency), 2009
IEA (International Energy Agency), 2008
IEA (International Energy Agency), 2008
Katofsky, 2010, Achieving climate stabilization in an insecure world: does renewable energy hold the key?, Report International Energy Agency—Renewable Energy Technology Development
Keller, 2008, Carbon dioxide sequestration: how much and when?, Climatic Change, 88, 267, 10.1007/s10584-008-9417-x
Kheshgi, 2005, Sequestration of fermentation CO2 from ethanol production, Energy, 30, 1865, 10.1016/j.energy.2004.11.004
Kolstad, 1993, Natural resource use and the environment, vol 3, 1219
Laude, 2011, CO2 capture and storage from a bioethanol plant: Carbon and energy footprint and economic assessment, International Journal of Greenhouse Gas Control, 5, 1220, 10.1016/j.ijggc.2011.06.004
Lindfeldt, 2008, System study of carbon dioxide (CO2) capture in bio-based motor fuel production, Energy, 33, 352, 10.1016/j.energy.2007.09.005
Lindfeldt, 2009, Biofuel production with CCS as a strategy for creating a CO2-neutral road transport sector, Energy Procedia, 1, 4111, 10.1016/j.egypro.2009.02.219
Luckow, 2010, Large-scale utilization of biomass energy and carbon dioxide capture and storage in the transport and electricity sectors under stringent CO2 concentration limit scenarios, International Journal of Greenhouse Gas Control, 4, 865, 10.1016/j.ijggc.2010.06.002
McFarland, 2006, Incorporating carbon capture and storage technologies in integrated assessment models, Energy Economics, 28, 632, 10.1016/j.eneco.2006.05.016
Mathews, 2008, Carbon-negative biofuels, Energy Policy, 36, 940, 10.1016/j.enpol.2007.11.029
MIT, 2007
Möllersten, 2003, Potential market niches for biomass energy with CO2 capture and storage-opportunities for energy supply with negative CO2 emissions, Biomass and Bioenergy, 25, 273, 10.1016/S0961-9534(03)00013-8
Nordhaus, 2008
Nordhaus, W.D., 2007. The challenge of global warming: Economic models and environmental policy. Available at 〈http://nordhaus.econ.yale.edu/〉.
Obersteiner, 2001, Managing climate risk, Science, 294, 786, 10.1126/science.294.5543.786b
Otto, 2008, Directed technical change and the adoption of CO2 abatement technology: the case of CO2 capture and storage, Energy Economics, 30, 2879, 10.1016/j.eneco.2007.07.001
Parry, 1995, Pollution taxes and revenue recycling, Journal of Environmental Economics and Management, 29, 64, 10.1006/jeem.1995.1061
Rhodes, J., 2007. Carbon mitigation of biomass: an engineering, economic and policy assessment of opportunities and implications. PhD Dissertation.
Ricci, O., 2011. Capture et stockage du CO2 à partir de biomasse: quelles perspectives économiques. PhD Thesis Université d'Orléans.
Uddin, 2007, Biomass-fired cogeneration systems with CO2 capture and storage, Renewable Energy, 32, 1006, 10.1016/j.renene.2006.04.009
van den Broek, 2011, Impact of international climate policies on CO2 capture and storage deployment, Illustrated in the Dutch Energy System Energy Policy, 39, 2000
van Vuuren, 2007, Stabilizing greenhouse gas concentrations at low levels: an assessment of reduction strategies and costs, Climatic Change, 81, 119, 10.1007/s10584-006-9172-9
World Bank Database, 2008. World Development Indicators (WDI). Available at 〈http://data.worldbank.org/data-catalog/world-development-indicators〉
