Hydrocarbon liquefaction: viability as a peak oil mitigation strategy
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Dean Fantazzini | Mikael Höök | Simon Snowden | André Angelantoni | Dean Fantazzini | M. Höök | S. Snowden | André Angelantoni
[1] M. Diack,et al. Development and evaluation of iron based catalysts for the hydroliquefaction of coal , 1994 .
[2] Russell Smyth,et al. Inter-fuel substitution in the Chinese iron and steel sector , 2012 .
[3] M. El‐Halwagi,et al. Simulation, integration, and economic analysis of gas-to-liquid processes , 2010 .
[4] R. Chedid,et al. The potential of gas-to-liquid technology in the energy market: The case of Qatar , 2007 .
[5] Eric D. Larson,et al. A comparison of direct and indirect liquefaction technologies for making fluid fuels from coal , 2003 .
[6] Eric D. Larson,et al. Synthetic fuel production by indirect coal liquefaction , 2003 .
[7] R. Levary. Ranking foreign suppliers based on supply risk , 2007 .
[8] J. Bartis,et al. Federal Financial Incentives to Induce Early Experience Producing Unconventional Liquid Fuels , 2008 .
[9] Christopher Cooper,et al. From a hard place to a rock: Questioning the energy security of a coal-based economy , 2011 .
[10] Yannick Frein,et al. Supply chain design in the delocalization context: Relevant features and new modeling tendencies , 2008 .
[11] M J Economides,et al. THE ECONOMICS OF GAS TO LIQUIDS COMPARED TO LIQUEFIED NATURAL GAS , 2005 .
[12] Shengwei Zhu,et al. Analysis of coal tar derived from pyrolysis at different atmospheres , 2013 .
[13] Laura Diaz Anadon,et al. Water Consumption of Energy Resource Extraction, Processing, and Conversion , 2010 .
[14] M. Thring. World Energy Outlook , 1977 .
[15] Aie. World Energy Outlook 2011 , 2011 .
[16] M. Dry. Fischer‐Tropsch Synthesis ‐ Industrial , 2010 .
[17] R. Hirsch,et al. Giant oil field decline rates and their influence on world oil production , 2009 .
[18] Linda Hendry,et al. Supply-chain uncertainty: a review and theoretical foundation for future research , 2012 .
[19] Alexandre Szklo,et al. Co2e emissions abatement costs of reducing natural gas flaring in Brazil by investing in offshore GTL plants producing premium diesel , 2010 .
[20] Amanda J. Schmitt,et al. A Quantitative Analysis of Disruption Risk in a Multi-Echelon Supply Chain , 2011 .
[21] N. Coville,et al. Deactivation of a precipitated iron Fischer-Tropsch catalyst : A pilot plant study , 2006 .
[22] Alain Martel,et al. The CAT metaheuristic for the solution of multi-period activity-based supply chain network design problems , 2012 .
[23] Sigurd Skogestad,et al. A Natural Gas to Liquids Process Model for Optimal Operation , 2012 .
[24] Yannick Frein,et al. A strategic-tactical model for the supply chain design in the delocalization context: Mathematical formulation and a case study , 2009 .
[25] Ijaz Hossain,et al. Lifecycle analysis of different urban transport options for Bangladesh , 2007 .
[26] Robert C. Milici. Coal-to-Liquids: Potential Impact on U.S. Coal Reserves , 2009 .
[27] J. Barney. Firm Resources and Sustained Competitive Advantage , 1991 .
[28] A. Kargari,et al. Application of Anderson–Schulz–Flory (ASF) equation in the product distribution of slurry phase FT synthesis with nanosized iron catalysts , 2007 .
[29] Michael J. Gradassi,et al. Gas-to-Liquids R&D: Setting Cost Reduction Targets , 2001 .
[30] D. M. D'Addona,et al. Norwegian University of Science and Technology, Gjøvik, Norvegia , 2016 .
[31] Adam R. Brandt,et al. Global oil depletion - an assessment of the evidence for a near-term peak in global oil production , 2009 .
[32] Frank Spellman,et al. Chemicals Used in Hydraulic Fracturing , 2012 .
[33] Hari C. Mantripragada,et al. Techno-economic evaluation of coal-to-liquids (CTL) plants with carbon capture and sequestration , 2011 .
[34] Signe Kjelstrup,et al. Exergy Analysis of a GTL Process Based on Low-Temperature Slurry F-T Reactor Technology with a Cobalt Catalyst , 2007 .
[35] Jürgen Haid,et al. Lurgi’s Mega-Methanol technology opens the door for a new era in down-stream applications , 2001 .
[36] Ravi Shankar,et al. Information risks management in supply chains: an assessment and mitigation framework , 2007, J. Enterp. Inf. Manag..
[37] Magali Boutonnet,et al. Gas to liquids: A technology for natural gas industrialization in Bolivia , 2010 .
[38] Dean Fantazzini,et al. Global Oil Risks in the Early 21st Century , 2011 .
[39] Jingxin Wang,et al. Assessment of coal and biomass to liquid fuels in central Appalachia, USA , 2012 .
[40] S. Yurchak,et al. Development of Mobil's Fixed-Bed Methanul-to-Gasoline (MTG) Process , 1988 .
[41] Per K. Bakkerud. Update on synthesis gas production for GTL , 2005 .
[42] David L. McCollum,et al. Future Impacts of Coal Distribution Constraints on Coal Cost , 2007 .
[43] M. K. Mann,et al. Life Cycle Assessment of Coal-fired Power Production , 1999 .
[44] P. L. Zuideveld,et al. The Shell Middle Distillate Synthesis Process , 1991 .
[45] Judith Gurney. BP Statistical Review of World Energy , 1985 .
[46] Santanu Khataniar,et al. Economics of GTL Technology for Gas Utilization , 2007 .
[47] S. T. Sie,et al. The shell middle distillate synthesis process (SMDS) , 1988 .
[48] E. Robertson,et al. Options for gas-to-liquids technology in Alaska , 1999 .
[49] P. Bunce,et al. From lean to agile manufacturing , 1996 .
[50] Gerald Ondrey,et al. Coal to liquids , 2005 .
[51] A. Oke,et al. Managing disruptions in supply chains: A case study of a retail supply chain , 2009 .
[52] John B. Loomis,et al. Expanding Institutional Arrangements for Acquiring Water for Environmental Purposes: Transactions Evidence for the Western United States , 2003 .
[53] Christodoulos A. Floudas,et al. Hybrid and single feedstock energy processes for liquid transportation fuels: A critical review , 2012, Comput. Chem. Eng..
[54] Edward S. Rubin,et al. Coal: Energy for the Future , 1995 .
[55] A. R. Singh,et al. Design of global supply chain network with operational risks , 2012 .
[56] K. Chew,et al. The future of oil: unconventional fossil fuels , 2014, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[57] Bernard Delmon,et al. Studies in Surface Science and Catalysis , 1988 .
[58] Adam R. Brandt,et al. Scraping the bottom of the barrel: greenhouse gas emission consequences of a transition to low-quality and synthetic petroleum resources , 2007 .
[59] Efstratios N. Pistikopoulos,et al. A mixed-integer programming approach to strategic planning of chemical centres: A case study in the UK , 2011, Comput. Chem. Eng..
[60] M. Christopher,et al. The Supply Chain Strategy Conundrum: To be Lean Or Agile or To be Lean And Agile? , 2002 .
[61] R. Krishnamurthy,et al. Leagile manufacturing: a proposed corporate infrastructure , 2007 .
[62] Alexei G. Sankovski,et al. Special report on emissions scenarios , 2000 .
[64] Robert H. Williams,et al. Co-production of synfuels and electricity from coal + biomass with zero net carbon emissions: an Illinois case study , 2009 .
[65] R. Jackson,et al. Methane contamination of drinking water accompanying gas-well drilling and hydraulic fracturing , 2011, Proceedings of the National Academy of Sciences.
[66] Stefan Baisch,et al. Geomechanical Study of Bowland Shale Seismicity , 2011 .
[67] Aeo,et al. Annual Energy Outlook 2008: With Projections to 2030 , 2008 .
[68] Andre Peter Steynberg,et al. Clean coal conversion options using Fischer–Tropsch technology , 2004 .
[69] N. Petrov,et al. Characterization of liquid products from pyrolysis of subbituminous coals , 2002 .
[70] David S. Ortiz,et al. Producing Liquid Fuels from Coal: Prospects and Policy Issues , 2008 .
[71] M. Hitzman,et al. Induced Seismicity Potential of Energy Technologies , 2013 .
[72] R. Hirsch. Mitigation of maximum world oil production: Shortage scenarios , 2008 .
[73] H. Schobert,et al. Comparison of Temperature Conditions in Direct Liquefaction of Selected Low-Rank Coals , 2005 .
[74] G. Likens,et al. Mountaintop Mining Consequences , 2010, Science.
[75] Hong Wang,et al. Effect of magnesium promoter on iron-based catalyst for Fischer–Tropsch synthesis , 2006 .
[76] Fang Rong,et al. COAL LIQUEFACTION POLICY IN CHINA: EXPLAINING THE POLICY REVERSAL SINCE 2006 , 2011 .
[77] Glada Lahn,et al. Sustainable Energy Security: Strategic Risks and Opportunities for Business , 2010 .
[78] D. Tatterson,et al. Economics on Fisher-Tropsch coal-to-liquids method updated , 2008 .
[79] A. G. Comolli,et al. Direct liquefaction proof-of-concept program , 1997 .
[80] H. Cohen,et al. Potential Contaminant Pathways from Hydraulically Fractured Shale to Aquifers , 2013, Ground water.
[81] Mehmet Erturk,et al. Economic analysis of unconventional liquid fuel sources , 2011 .
[82] Chikezie Nwaoha,et al. Gas-to-liquids (GTL): A review of an industry offering several routes for monetizing natural gas , 2012 .
[83] Daniel Vallentin,et al. Policy drivers and barriers for coal-to-liquids (CtL) technologies in the United States , 2008 .
[84] B. Black. Monetizing stranded gas : economic valuation of GTL and LNG projects , 2010 .
[85] A. Faaij,et al. Exploration of the possibilities for production of Fischer Tropsch liquids and power via biomass gasification , 2002 .
[86] Robert H. Williams,et al. Fischer-Tropsch Fuels from Coal and Biomass , 2008 .
[87] Zhenyu Liu,et al. Coal liquefaction technologies—Development in China and challenges in chemical reaction engineering , 2010 .
[88] R. Hirsch,et al. Peaking of world oil production: Impacts, mitigation, & risk management , 2005 .
[89] M. Onyekonwu,et al. Economic Viability of Gas-to-Liquids in Nigeria , 2009 .
[90] Aie. World Energy Outlook 2011 , 2001 .
[91] Anne-Gaëlle Collot,et al. Matching gasification technologies to coal properties , 2006 .
[92] Sergey Paltsev,et al. The Prospects for Coal-To-Liquid Conversion: A General Equilibrium Analysis , 2011 .
[93] Mikael Höök,et al. A review on coal‐to‐liquid fuels and its coal consumption , 2010 .
[94] Carlo Stagnaro. US can learn from European experience with cap and trade , 2008 .
[95] Wei Chu,et al. Advances in the Development of Novel Cobalt Fischer—Tropsch Catalysts for Synthesis of Long‐Chain Hydrocarbons and Clean Fuels , 2007 .
[96] Anthony V. Bridgwater,et al. Production costs of liquid fuels by indirect coal liquefaction , 1994 .
[97] Richard Heinberg,et al. Full cost accounting for the life cycle of coal , 2011, Annals of the New York Academy of Sciences.
[98] Guangjian Liu,et al. Fischer–Tropsch fuels from coal and biomass: Strategic advantages of once-through (“polygeneration”) configurations , 2009 .
[99] Kimberly Horn,et al. Lung cancer mortality is elevated in coal-mining areas of Appalachia. , 2008, Lung cancer.
[100] Eric D. Larson,et al. Making Fischer-Tropsch fuels and electricity from coal and biomass: Performance and cost analysis , 2011 .
[101] Hari C. Mantripragada,et al. CO2 reduction potential of coal-to-liquids (CTL) plants , 2009 .
[102] T. H. Fleisch,et al. 2002—Emergence of the Gas—to—Liquids Industry: a Review of Global GTL Developments , 2002 .
[103] M. Dry,et al. The Fischer–Tropsch process: 1950–2000 , 2002 .