References - MESSAGE-GLOBIOM
Corresponding documentation | |
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Previous versions | |
Model information | |
Model link | |
Institution | International Institute for Applied Systems Analysis (IIASA), Austria, http://data.ene.iiasa.ac.at. |
Solution concept | General equilibrium (closed economy) |
Solution method | Optimization |
Anticipation |
List
- | J -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 Vuuren (2010, aug). Historical (1850–2000) gridded anthropogenic and biomass burning emissions of reactive gases and aerosols: methodology and application. Atmos. Chem. Phys., 10 (15), 7017--7039. http://dx.doi.org/10.5194/acp-10-7017-2010
- | Detlef P van Vuuren, Jae Edmonds, Mikiko Kainuma, Keywan Riahi, Allison Thomson, Kathy Hibbard, George C Hurtt, Tom Kram, Volker Krey, Jean-Francois Lamarque, Toshihiko Masui, Malte Meinshausen, Nebojsa Nakicenovic, Steven J Smith, Steven K Rose (2011). The representative concentration pathways: an overview. Climatic Change, 109 (1), 5. http://dx.doi.org/10.1007/s10584-011-0148-z
- | Shilpa Rao, Zbigniew Klimont, Steven J Smith, Rita Van Dingenen, Frank Dentener, Lex Bouwman, Keywan Riahi, Markus Amann, Benjamin Leon Bodirsky, Detlef P van Vuuren (2016). Future air pollution in the Shared Socio-economic Pathways. Global Environmental Change, ().
- | Oliver Fricko, Simon C Parkinson, Nils Johnson, Manfred Strubegger, Michelle TH van Vliet, Keywan Riahi (2016). Energy sector water use implications of a 2° {C} climate policy. Environmental Research Letters, 11 (3), 034011.
- | Colin Cameron, Shonali Pachauri, Narasimha D Rao, David McCollum, Joeri Rogelj, Keywan Riahi (2016). Policy trade-offs between climate mitigation and clean cook-stove access in South Asia. Nature Energy, 1 (), 15010.
- | Ilkka Keppo, Manfred Strubegger (2010). Short term decisions for long term problems–The effect of foresight on model based energy systems analysis. Energy, 35 (5), 2033--2042.
- | Volker Krey, Keywan Riahi (2009). Implications of delayed participation and technology failure for the feasibility, costs, and likelihood of staying below temperature targets—Greenhouse gas mitigation scenarios for the 21st century. Energy Economics, 31 (), S94--S106.
- | Brian C O’Neill, Keywan Riahi, Ilkka Keppo (2010). Mitigation implications of midcentury targets that preserve long-term climate policy options. Proceedings of the National Academy of Sciences, 107 (3), 1011--1016.
- | Andreas Schäfer (2005). Structural change in energy use. Energy Policy, 33 (4), 429--437.
- | Sabine Messner (1997). Endogenized technological learning in an energy systems model. Journal of Evolutionary Economics, 7 (3), 291--313.
- | Tommi Ekholm, Volker Krey, Shonali Pachauri, Keywan Riahi (2010). Determinants of household energy consumption in India. Energy Policy, 38 (10), 5696--5707.
- | Shonali Pachauri, Bas J van Ruijven, Yu Nagai, Keywan Riahi, Detlef P van Vuuren, Abeeku Brew-Hammond, Nebojsa Nakicenovic (2013). Pathways to achieve universal household access to modern energy by 2030. Environmental Research Letters, 8 (2), 024015.
- | H Rogner, Roberto F Aguilera, Christina Archer, Ruggero Bertani, S Bhattacharya, M Dusseault, Luc Gagnon, H Harbel, Monique Hoogwijk, Arthur Johnson (2012). Chapter 7 - Energy resources and potentials. In Global Energy Assessment - Toward a Sustainable Future(pp. 423--512). Cambridge University Press, Cambridge, UK and New York, NY, USA and the International Institute for Applied Systems Analysis, Laxenburg, Austria.
- | Monique Maria Hoogwijk (2004). On the global and regional potential of renewable energy sources (PhD Thesis).Department of Science, Technology and Society. Utrecht University.
- | Monique Hoogwijk, Wina Graus (2008). Global potential of renewable energy sources: a literature assessment. Background report prepared by order of REN21. Ecofys, PECSNL072975, ().
- | Lena Christiansson (1995). Diffusion and learning curves of renewable-energy technologies. IIASA Report, ().
- | Francesco N Tubiello, Günther Fischer (2007). Reducing climate change impacts on agriculture: Global and regional effects of mitigation, 2000–2080. Technological Forecasting and Social Change, 74 (7), 1030--1056.
- | Detlef P Van Vuuren, Jasper van Vliet, Elke Stehfest (2009). Future bio-energy potential under various natural constraints. Energy Policy, 37 (11), 4220--4230.
- | Eric D Larson, Zheng Li, Robert H Williams (2012). Chapter 12 - Fossil Energy. In Global Energy Assessment - Toward a Sustainable Future(pp. 901--992). Cambridge University Press, Cambridge, UK and New York, NY, USA and the International Institute for Applied Systems Analysis, Laxenburg, Austria: .
- | Keywan Riahi, Alexander R Roehrl (2000). Greenhouse gas emissions in a dynamics-as-usual scenario of economic and energy development. Technological Forecasting and Social Change, 63 (2), 175--205.
- | Keywan Riahi, Edward S Rubin, Leo Schrattenholzer (2004). Prospects for carbon capture and sequestration technologies assuming their technological learning. Energy, 29 (9), 1309--1318.
- | Shilpa Rao, Keywan Riahi (2006). The Role of Non-CO₃ Greenhouse Gases in Climate Change Mitigation: Long-term Scenarios for the 21st Century. The Energy Journal, (), 177--200.
- | Markus Amann, Imrich Bertok, Jens Borken-Kleefeld, Janusz Cofala, Chris Heyes, Lena Höglund-Isaksson, Zbigniew Klimont, Binh Nguyen, Maximilian Posch, Peter Rafaj, Robert Sandler, Wolfgang Schöpp, Fabian Wagner, Wilfried Winiwarter (2011, dec). RCP} 8.5—{A} scenario of comparatively high greenhouse gas emissions. Environmental Modelling \& Software, 109 (12), 1489--1501. http://dx.doi.org/10.1016/j.envsoft.2011.07.012
- | Keywan Riahi, Arnulf Grübler, Nebojsa Nakicenovic (2007). Scenarios of long-term socio-economic and environmental development under climate stabilization. Technological Forecasting and Social Change, 74 (7), 887--935.
- | Malte Meinshausen, Nicolai Meinshausen, William Hare, Sarah CB Raper, Katja Frieler, Reto Knutti, David J Frame, Myles R Allen (2009). MAGICC}/{SCENGEN} 5.3: {User} manual (version 2). Nature, 458 (7242), 1158--1162.
- | Ilkka Keppo, Brian C O'Neill, Keywan Riahi (2007). Probabilistic temperature change projections and energy system implications of greenhouse gas emission scenarios. Technological Forecasting and Social Change, 74 (7), 936--961.
- | (). {Greenhouse-gas emission targets for limiting global warming to 2 {C. '.
- | Malte Meinshausen (2006). What does a 2 {C} target mean for greenhouse gas concentrations? {A} brief analysis based on multi-gas emission pathways and several climate sensitivity uncertainty estimates. Avoiding dangerous climate change, 270 ().
- | Chris E Forest, Peter H Stone, Andrei P Sokolov, Myles R Allen, Mort D Webster (2002). Quantifying uncertainties in climate system properties with the use of recent climate observations. Science, 295 (5552), 113--117.
- | (). Cost-effective control of air quality and greenhouse gases in {Europe}: {Modeling} and policy applications. '.
- | Markus Amann, Rafal Cabala, Janusz Cofala, Chris Heyes, Zbigniew Klimont, Wolfgang Schöpp, Leonor Tarrason, David Simpson, Peter Wind, Jan-Eiof Jonson (2004). Current {Legislation}” and the “{Maximum} {Technically} {Feasible} {Reduction}” cases for the {CAFE} baseline emission projections. IIASA, Vienna, ().
- | Göran Berndes, Monique Hoogwijk, Richard van den Broek (2003, jul). The contribution of biomass in the future global energy supply: a review of 17 studies. Biomass and Bioenergy, 25 (1), 1--28. http://dx.doi.org/10.1016/S0961-9534(02)00185-X
- | Stefan Bringezu, Helmut Schütz, Meghan O’Brien, Lea Kauppi, Robert W Howarth, Jeff McNeely (2009). Assessing biofuels: towards sustainable production and use of resources. United Nations Environment Programme.
- | Veronika Dornburg, APC Faaij, PA Verweij, Martin Banse, Kees van Diepen, Herman van Keulen, Hans Langeveld, Marieke Meeusen, Gerrie van de Ven, Flip Wester (2008). Biomass assessment: assessment of global biomass potentials and their links to food, water, biodiversity, energy demand and economy: inventory and analysis of existing studies: supporting document. Report/WAB, (500102 014).
- | Bas Eickhout, Gert Jan van den Born, Jos Notenboom, M van Oorschot, JPM Ros, DP Van Vuuren, HJ Westhoek (2008). Local and global consequences of the {EU} renewable directive for biofuels: {Testing} the sustainability criteria. Local and global consequences of the EU renewable directive for biofuels: testing the sustainability criteria, ().
- | RA Fischer, Derek Byerlee, Gregory O Edmeades (2009). Can technology deliver on the yield challenge to 2050?.Expert Meeting on How to feed the World in 2050. Food and Agriculture Organization of the United Nations.
- | Claire Granier, Bertrand Bessagnet, Tami Bond, Ariela D’Angiola, Hugo Denier van Der Gon, Gregory J Frost, Angelika Heil, Johannes W Kaiser, Stefan Kinne, Zbigniew Klimont (2011). Evolution of anthropogenic and biomass burning emissions of air pollutants at global and regional scales during the 1980–2010 period. Climatic Change, 109 (1-2), 163--190.
- | Alan Sussmann Manne, Richard G Richels (1992). Buying greenhouse insurance: the economic costs of carbon dioxide emission limits. MIT press.
- | Sabine Messner, Leo Schrattenholzer (2000). MESSAGE–MACRO: linking an energy supply model with a macroeconomic module and solving it iteratively. Energy, 25 (3), 267--282.
- | Sanderine Nonhebel (2007). Energy from agricultural residues and consequences for land requirements for food production. Agricultural Systems, 94 (2), 586--592.
- | Andrew J Plantinga, Thomas Mauldin, Douglas J Miller (1999). An econometric analysis of the costs of sequestering carbon in forests. American Journal of Agricultural Economics, 81 (4), 812--824.
- | Shilpa Rao, Vadim Chirkov, Frank Dentener, Rita Van Dingenen, Shonali Pachauri, Pallav Purohit, Markus Amann, Chris Heyes, Patrick Kinney, Peter Kolp (2012). Environmental modeling and methods for estimation of the global health impacts of air pollution. Environmental Modeling \& Assessment, 17 (6), 613--622.
- | Shilpa Rao, Shonali Pachauri, Frank Dentener, Patrick Kinney, Zbigniew Klimont, Keywan Riahi, Wolfgang Schoepp (2013). Better air for better health: {Forging} synergies in policies for energy access, climate change and air pollution. Global environmental change, 23 (5), 1122--1130.
- | Keywan Riahi, Frank Dentener, Dolf Gielen, Arnulf Grubler, Jessica Jewell, Zbigniew Klimont, Volker Krey, David McCollum, Shonali Pachauri, Shilpa Rao, Bas van Ruijven, Detlef P van Vuuren, Charlie Wilson (2012). Chapter 17 - Energy Pathways for Sustainable Development. In Global Energy Assessment - Toward a Sustainable Future(pp. 1203--1306). Cambridge University Press, Cambridge, UK and New York, NY, USA and the International Institute for Applied Systems Analysis, Laxenburg, Austria: .
- | Dmitry Rokityanskiy, Pablo C Benítez, Florian Kraxner, Ian McCallum, Michael Obersteiner, Ewald Rametsteiner, Yoshiki Yamagata (2007). Geographically explicit global modeling of land-use change, carbon sequestration, and biomass supply. Technological Forecasting and Social Change, 74 (7), 1057--1082.
- | Jayant Sathaye, Peter Chan, Larry Dale, Willy Makundi, Ken Andrasko (2003). A summary note estimating global forestry {GHG} mitigation potential and costs: {A} dynamic partial equilibrium approach. working draft, August, 10 (), 448--457.
- | Detlef van Vuuren, Washington Ochola, Susan Riha, Mario Giampietro, Hector Ginzo, Thomas Henrichs, Sajidin Hussain Hussain, Kaspar Kok, Moraka Makhura Makhura, Monirul Mirza (2009). GHG} mitigation potential, costs and benefits in global forests: a dynamic partial equilibrium approach. The Energy Journal, (), 127--162} }.
- | Timothy Searchinger, Ralph Heimlich, Richard A Houghton, Fengxia Dong, Amani Elobeid, Jacinto Fabiosa, Simla Tokgoz, Dermot Hayes, Tun-Hsiang Yu (2008). Use of {US} croplands for biofuels increases greenhouse gases through emissions from land-use change. Science, 319 (5867), 1238--1240.
- | Edward MW Smeets, André PC Faaij, Iris M Lewandowski, Wim C Turkenburg (2007). A bottom-up assessment and review of global bio-energy potentials to 2050. Progress in Energy and combustion science, 33 (1), 56--106.
- | Pete Smith, Peter J Gregory, Detlef Van Vuuren, Michael Obersteiner, Petr Havlík, Mark Rounsevell, Jeremy Woods, Elke Stehfest, Jessica Bellarby (2010). Competition for land. Philosophical Transactions of the Royal Society of London B: Biological Sciences, 365 (1554), 2941--2957.
- | Robert N Stavins (1999). The costs of carbon sequestration: a revealed-preference approach. The American Economic Review, 89 (4), 994--1009.
- | Elke Stehfest, Lex Bouwman, Detlef P Van Vuuren, Michel GJ Den Elzen, Bas Eickhout, Pavel Kabat (2009). Climate benefits of changing diet. Climatic change, 95 (1-2), 83--102.
- | (). Outlook on agricultural changes and its drivers. In {Agriculture at a {Crossroads}-the {Global} {Report} of the {International} {Assessment} of {Agricultural} {Knowledge}, {Science}, and {Technology. .
- | Detlef P Van Vuuren, Elie Bellevrat, Alban Kitous, Morna Isaac (2010). Bio-energy use and low stabilization scenarios. The Energy Journal, (), 193--221.
- | Jasper van Vliet, Maarten van den Berg, Michiel Schaeffer, Detlef P van Vuuren, Michel Den Elzen, Andries F Hof, Angelica Mendoza Beltran, Malte Meinshausen (2012). Copenhagen accord pledges imply higher costs for staying below 2 {C} warming. Climatic Change, 113 (2), 551--561.
- | Sabine Messner, Manfred Strubegger (1995). User's Guide for MESSAGE III.International Institute for Applied Systems Analysis (IIASA).
- | IPCC (2007). Climate Change 2007: Synthesis Report. Contribution of Working Groups I, II and III to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change. IPCC, Geneva, Switzerland.
- | IPCC (1996). Revised 1996 {IPCC} Guidelines for National Greenhouse Gas Inventories: The Workbook (Volume 2). IPCC, Geneva, Switzerland.
- | Erich A Schneider, William C Sailor (2008). Long-term uranium supply estimates. Nuclear Technology, 162 (3), 379--387.
- | Richard Loulou, Gary Goldstein, Ken Noble (2004, October). Documentation for the MARKAL Family of Models - Part II: MARKAL-MACRO. IEA Energy Technology Systems Analysis Programme (ETSAP).
- | Brian C O’Neill, Elmar Kriegler, Kristie L Ebi, Eric Kemp-Benedict, Keywan Riahi, Dale S Rothman, Bas J van Ruijven, Detlef P van Vuuren, Joern Birkmann, Kasper Kok (2015). The roads ahead: narratives for shared socioeconomic pathways describing world futures in the 21st century. Global Environmental Change, ().
- | Petr Havlík, Uwe A Schneider, Erwin Schmid, Hannes Böttcher, Steffen Fritz, Rastislav Skalský, Kentaro Aoki, Stephane De Cara, Georg Kindermann, Florian Kraxner (2011). Global land-use implications of first and second generation biofuel targets. Energy Policy, 39 (10), 5690--5702.
- | Petr Havlík, Hugo Valin, Mario Herrero, Michael Obersteiner, Erwin Schmid, Mariana C Rufino, Aline Mosnier, Philip K Thornton, Hannes Böttcher, Richard T Conant (2014). Climate change mitigation through livestock system transitions. Proceedings of the National Academy of Sciences, 111 (10), 3709--3714.
- | Georg E Kindermann, Michael Obersteiner, Ewald Rametsteiner, Ian McCallum (2006). Predicting the deforestation-trend under different carbon-prices. Carbon Balance and management, 1 (1), 15.
- | MI Gusti (2010). An algorithm for simulation of forest management decisions in the global forest model. Штучний інтелект, ().
- | Malte Meinshausen, SCB Raper, TML Wigley (2011). Emulating coupled atmosphere-ocean and carbon cycle models with a simpler model, {MAGICC}6–{Part} 1: {Model} description and calibration. Atmospheric Chemistry and Physics, 11 (4), 1417--1456.
- | Malte Meinshausen, Steven J Smith, K Calvin, John S Daniel, MLT Kainuma, JF Lamarque, K Matsumoto, SA Montzka, SCB Raper, K Riahi (2011). The {RCP} greenhouse gas concentrations and their extensions from 1765 to 2300. Climatic change, 109 (1-2), 213--241.
- | Joeri Rogelj, David L McCollum, Brian C O’Neill, Keywan Riahi (2013). 2020 emissions levels required to limit warming to below 2°C. Nature Climate Change, 3 (4), 405--412.
- | Joeri Rogelj, David L McCollum, Andy Reisinger, Malte Meinshausen, Keywan Riahi (2013). Probabilistic cost estimates for climate change mitigation. Nature, 493 (7430), 79--83.
- | Patrick Sullivan, Volker Krey, Keywan Riahi (2013). Impacts of considering electric sector variability and reliability in the MESSAGE model. Energy Strategy Reviews, 1 (3), 157-163.
- | Joeri Rogelj, Andy Reisinger, David L McCollum, Reto Knutti, Keywan Riahi, Malte Meinshausen (2015). Mitigation choices impact carbon budget size compatible with low temperature goals. Environmental Research Letters, 10 (7), 075003.
- | Janusz Cofala, Markus Amann, Zbigniew Klimont, Kaarle Kupiainen, Lena Höglund-Isaksson (2007). Scenarios of global anthropogenic emissions of air pollutants and methane until 2030. Atmospheric Environment, 41 (38), 8486--8499.
- | Markus Amann, Zbigniew Klimont, Fabian Wagner (2013). Regional and global emissions of air pollutants: {Recent} trends and future scenarios. Annual Review of Environment and Resources, 38 (), 31--55.
- MSG-GLB_environmental_protection_agency_epa_global_2013
- | Global Emissions Joint Research Centre(2011). Emission {Database} for {Global} {Atmospheric} {Research} {EDGAR} v4.2. Retrieved from http://edgar.jrc.ec.europa.eu/overview.php?v=42
- | Hans-Holger Rogner (1997). An assessment of world hydrocarbon resources. Annual review of energy and the environment, 22 (1), 217--262.
- | Brian C O’Neill, Elmar Kriegler, Keywan Riahi, Kristie L Ebi, Stephane Hallegatte, Timothy R Carter, Ritu Mathur, Detlef P van Vuuren (2014). A new scenario framework for climate change research: the concept of shared socioeconomic pathways. Climatic Change, 122 (3), 387--400.
- | Samir KC, Wolfgang Lutz (2014). The human core of the shared socioeconomic pathways: {Population} scenarios by age, sex and level of education for all countries to 2100. Global Environmental Change, ().
- | Rob Dellink, Jean Chateau, Elisa Lanzi, Bertrand Magné (2015). Long-term economic growth projections in the Shared Socioeconomic Pathways. Global Environmental Change, ().
- | Nils Johnson, Manfred Strubegger, Madleine McPherson, Simon Parkinson, Volker Krey, Patrick Sullivan (2016). A reduced-form approach for representing the impacts of wind and solar PV deployment on the structure and operation of the electricity system. Energy Economics, In Review ().
- | R C Pietzcker, D Stetter, S Manger, G Luderer (2014). Using the sun to decarbonize the power sector: The economic potential of photovoltaics and concentrating solar power. Applied Energy, 135 (), 704-720.
- | K Eurek, P Sullivan, M Gleason, D Hettinger, D M Heimiller, A Lopez (2016). An improved global wind resource estimate for integrated assessment models. Energy Economics, In Review ().
- | Oliver Fricko, Petr Havlik, Joeri Rogelj, Zbigniew Klimont, Mykola Gusti, Nils Johnson, Peter Kolp, Manfred Strubegger, Hugo Valin, Markus Amann, Tatiana Ermolieva, Nicklas Forsell, Mario Herrero, Chris Heyes, Georg Kindermann, Volker Krey, David L McCollum, Michael Obersteiner, Shonali Pachauri, Shilpa Rao, Erwin Schmid, Wolfgang Schoepp, Keywan Riahi (2016). The marker quantification of the shared socioeconomic pathway 2: a middle-of-the-road scenario for the 21st century. Global Environmental Change, In press ().
- | Template:World Bank Group (2012). World {Development} {Indicators} 2012. World Bank Publications.
- | UN Population Division (2010). World Population Projection.UN.
- | International Energy Agency (2012). Energy Balances.International Energy Agency.
- | International Energy Agency (2014). World {Energy} {Outlook} 2014.International Energy Agency.
- | OECD}, {NEA (2003, June). Uranium 2003: Resources, Production and Demand (Publication No. NEA-05291) .Template:OECD/NEA.
- | Benjamin D Leibowicz (2015). Growth and competition in renewable energy industries: Insights from an integrated assessment model with strategic firms. Energy Economics, 52, Part A (), 13 - 25. http://dx.doi.org/http://dx.doi.org/10.1016/j.eneco.2015.09.010
- | Nikos Alexandratos, Jelle Bruinsma (2012, June). World agriculture towards 2030/2050: the 2012 revision (Publication No. 12-03) .FAO.
- | A F Bouwman, Van K W der Hoek, B Eickhout, I Soenario (2005). Exploring changes in world ruminant production systems. Agricultural Systems, 84 (2), 121 - 153.
- | Richard T Conant, Keith Paustian (2004). Grassland Management Activity Data: Current Sources and Future Needs. Environmental Management, 33 (4), 467-473.
- | EPA (2012). US Environmental Protection Agency Global Emissions Database.US Environmental Protection Agency.
- | FAO (2010). Global Forest Resources Assessment.Food and Agriculture Organization of the United Nations.
- | Steffen Fritz, Linda See, Ian McCallum, Christian Schill, Michael Obersteiner, Marijn van der Velde, Hannes Boettcher, Petr Havlík, Frédéric Achard (2011). Highlighting continued uncertainty in global land cover maps for the user community. Environmental Research Letters, 6 (4), 044005.
- | M Herrero, P Havlik, H Valin, M C Rufino, A M O Notenbaert, P K Thornton, M Blummel, F Weiss, M Obertsteiner (2013). Global livestock systems: biomass use, production, feed efficiencies and greenhouse gas emissions. Proceedings of the National Academy of Sciences, 110 (52), 20888--20893.
- | M Herrero, P K Thornton, R Kruska, R S Reid (2008). Systems dynamics and the spatial distribution of methane emissions from African domestic ruminants to 2030. Agriculture, Ecosystems \& Environment, 126 (1-2), 122 - 137.
- | M A Keyzer, M D Merbis, I F P W Pavel, C F A van Wesenbeeck (2005). Diet shifts towards meat and the effects on cereal use: can we feed the animals in 2030?. Ecological Economics, 55 (2), 187-202.
- | G Kindermann, M Obersteiner, B Sohngen, J Sathaye, K Andrasko, E Rametsteiner, B Schlamadinger, S Wunder, R Beach (2008). Global cost estimates of reducing carbon emissions through avoided deforestation. Proceedings of the National Academy of Sciences, 105 (30), 10302.
- | Bruce A McCarl, Thomas H Spreen (1980). Price Endogenous Mathematical Programming as a Tool for Sector Analysis. American Journal of Agricultural Economics, 62 (1), 87-102.
- | Timothy D Mitchell, Philip D Jones (2005). An improved method of constructing a database of monthly climate observations and associated high-resolution grids. International Journal of Climatology, 25 (6), 693-712.
- | A Muhammad, J Seale, B Meade, A Regmi (2011). International Evidence on Food Consumption Patterns: An Update Using 2005 International Comparison Program Data (Publication No. 1929) .USDA-ERS.
- | B C O’Neill, T R Carter, K L Ebi, J Edmonds, S Hallegatte, E Kemp-Benedict, E Kriegler, L Mearns, R Moss, K Riahi, B van Ruijven, D van Vuuren (2012, November 2-4, 2011). Meeting Report of the Workshop on The Nature and Use of New Socioeconomic Pathways for Climate Change Research.NCAR.
- | WJ Parton, DS Schimel, DS Ojima, CV Cole (1987). Analysis of factors controlling soil organic matter levels in Great Plains grasslands. Soil Science Society of America Journal, 51 (5), 1173-1179.
- | W J Parton, J M O Scurlock, D S Ojima, T G Gilmanov, R J Scholes, D S Schimel, T Kirchner, J C Menaut, T Seastedt, E G Moya, A Kamnalrut, J I Kinyamario (1993). Observations and modeling of biomass and soil organic-matter dynamics for the grassland biome worldwide. Global Biogeochemical Cycles, 7 (), 785-809.
- | N Ramankutty, A T Evan, C Monfreda, J A Foley (2008). Farming the planet: 1. Geographic distribution of global agricultural lands in the year 2000. Global Biogeochemical Cycles, 22 (1), 1-19.
- | CA Reynolds, TJ Jackson, WJ Rawls (2000). Estimating soil water-holding capacities by linking the Food and Agriculture Organization soil map of the world with global pedon databases and continuous pedotransfer functions. Water Resources Research, 36 (12), 3653-3662.
- | Aaron Ruesch, Holly K Gibbs (2008). New IPCC Tier-1 Global Biomass Carbon Map For the Year 2000.Oak Ridge National Laboratory.
- | P Russ, T Wiesenthal, D van Regemorter, J C Ciscar (2007). Global Climate Policy Scenarios for 2030 and beyond: Analysis of Greenhouse Gas Emission Reduction Pathway Scenarios with the POLES and GEME3 Models. Institute for Prospective technological Studies, October, ().
- | A L Schloss, D W Kicklighter, J Kaduk, U Wittenberg, (The Participants Potsdam NPP Model of the Comparison) (1999). Comparing global models of terrestrial net primary productivity (NPP): comparison of NPP to climate and the Normalized Difference Vegetation Index (NDVI). Global Change Biology, 5 (S1), 25-34.
- | Uwe A Schneider, Bruce A McCarl, Erwin Schmid (2007). Agricultural sector analysis on greenhouse gas mitigation in US agriculture and forestry. Agricultural Systems, 94 (2), 128 - 140.
- | James Seale, Anita Regmi, Jason Bernstein (2003, October). International Evidence on Food Consumption Patterns (Publication No. 1904) .USDA-ERS.
- | C Seré, H Steinfeld (1996). World livestock production systems: current status, issues and trends (Publication No. 127) .Food and Agriculture Organisation.
- | R Skalsky, Z Tarasovicova, J Balkovic, E Schmid, M Fuchs, E Moltchanova, G Kindermann, P Scholtz (2008, accessed 13.03.09). Geo-bene global database for bio-physical modeling v.1.0. Concepts, methodologies and data.Technical Report.IIASA.
- | T Takayama, G G Judge (1971). Spatial and temporal price and allocation models. North-Holland Amsterdam.
- | Francesco N Tubiello, Mirella Salvatore, Simone Rossi, Alessandro Ferrara, Nuala Fitton, Pete Smith (2013). The FAOSTAT database of greenhouse gas emissions from agriculture. Environmental Research Letters, 8 (1), 015009.
- | J R Williams, VP Singh (1995). The EPIC model. Computer models of watershed hydrology, (), 909-1000.
- | W Wint, T Robinson (2007). Gridded livestock of the world 2007. FAO.
- | Liangzhi You, Stanley Wood (2006). An entropy approach to spatial disaggregation of agricultural production. Agricultural Systems, 90 (1-3), 329 - 347.
- | R C Izaurralde, J R Williams, W B McGill, N J Rosenberg, M C Q Jakas (2006). Simulating soil C dynamics with EPIC: Model description and testing against long-term data. Ecological Modelling, 192 (3-4), 362-384.
- | FAO (2006). Global Forest Resources Assessment 2005. Progress towards sustainable forest management..Food and Agriculture Organization of the United Nations.
- | G E Kindermann, I McCallum, S Fritz, M Obersteiner (2008). A global forest growing stock, biomass and carbon map based on FAO statistics. Silva Fennica, 42 (3), 387-396.
- | Biomass Technology Group (2005). Handbook Biomass Gasification. H.A.M. Knoef. ISBN: 90-810068-1-9.
- | E Rametsteiner, S Nilsson, H Böttcher, P Havlik, F Kraxner, S Leduc, M Obersteiner, F Rydzak, U Schneider, D Schwab, L Willmore (2007). Study of the Effects of Globalization on the Economic Viability of EU Forestry. Final Report of the AGRI Tender Project: AGRI-G4-2006-06 [2007]. EC Contract Number 30-CE-0097579/00-89.EC/IIASA.
- | C N Hamelinck, A P C Faaij (2001). Future Prospects for Production of Methanol and Hydrogen from Biomass.Utrecht University, Copernicus Institute, Science Technology and Society.
- | S Leduc, D Schwab, E Dotzauer, E Schmid, M Obersteiner (2008). Optimal location of wood gasification plants for methanol production with heat recovery. International Journal of Energy Research, 32 (), 1080--1091 [2008].
- | A L Sørensen (2005). Economies of Scale in Biomass Gasification Systems (Publication No. Interim Report IR-05-030) .IIASA.
- | A E Carpentieri, E D Larson, J Woods (1993). Future biomass-based electricity supply in Northeast Brazil. Biomass and Bioenergy, 4 (3), 149-173.
- | GmbH Herzogbaum (2008). Forstpflanzen-Preisliste 2008. HERZOG.BAUM Samen & Pflanzen GmbH. Koaserbauerstr. 10, A - 4810 Gmunden. Austria (also available at www.energiehoelzer.at).Herzogbaum GmbH.
- | Mike Jurvélius (1997). Labor-intensive harvesting of tree plantations in the southern Philippines. Forest harvesting case -study 9. RAP Publication: 1997/41.Food and Agriculture Organization of the United Nations.
- | ILO (2007). Occupational Wages and Hours of Work and Retail Food Prices, Statistics from the ILO October Inquiry.International Labor Organisation.
- | FPP (1999). Holzernte in der Durchforstung; Leistungszahlen Kosten - OeBF Seiltabelle Sortimentverfahren (SKM-TAB).Kooperationsabkommen Forst-Platte-Papier.
- | R Jiroušek, R Klvač, A Skoupý (2007). Productivity and costs of the mechanised cut-to-length wood harvesting system in clear-felling operations. Journal of Forest Science, 53 (10), 476-482.
- | B J Stokes, D J Frederick, D T Curtin (1986). Field trials of a short-rotation biomass feller buncher and selected harvesting systems. Biomass, 11 (3), 185-204.
- | J Wang, C Long, J McNeel, J Baumgras (2004). Productivity and cost of manual felling and cable skidding in central Appalachian hardwood forests. Forest Products Journal, 54 (12), 45-51.
- | B R Hartsough, X Zhang, R D Fight (2001). Harvesting cost model for small trees in natural stands in the Interior Northwest. Forest Products Journal, 51 (4), 54-61.
- | A Heston, R Summers, B Aten (2006). Penn World Table Version 6.2.Center for International Comparisons of Production, Income and Prices at the University of Pennsylvania. September 2006. http://pwt.econ.upenn.edu/php_site/pwt62/pwt62_form.php.
{{#scite:
|bibtex=
@webpage{MSG-GLB_environmental_protection_agency_epa_global_2013,
Type = webpage
title = {Global {Mitigation} of {Non}-{CO}2 {Greenhouse} {Gases}: 2010-2030},
url = {https://www3.epa.gov/climatechange/Downloads/EPAactivities/MAC_Report_2013.pdf},
author = {Environmental Protection Agency (EPA)},
year = {2013}
}
}}