Liquid Biofuels: Fluid Properties to Optimize Feedstock Selection, Processing, Refining/Blending, Storage/Transportation, and Combustion
暂无分享,去创建一个
[1] Tara M Lovestead,et al. Advanced Distillation Curve Analysis on Ethyl Levulinate as a Diesel Fuel Oxygenate and a Hybrid Biodiesel Fuel , 2011 .
[2] H. W. Elbersen,et al. Agronomic aspects of future energy crops in Europe , 2010 .
[3] Thomas J. Bruno,et al. Enthalpy of combustion of fuels as a function of distillate cut : Application of an advanced distillation curve method , 2006 .
[4] Tom N. Kalnes,et al. Green Diesel: A Second Generation Biofuel , 2007 .
[5] Carrie M. Hall,et al. Stock and Optimized Performance and Emissions with 5 and 20% Soy Biodiesel Blends in a Modern Common Rail Turbo-Diesel Engine , 2010 .
[6] Robert L. McCormick,et al. Properties and Performance of Levulinate Esters as Diesel Blend Components , 2011 .
[7] P. S. Mehta,et al. Predicting the Density of Straight and Processed Vegetable Oils from Fatty Acid Composition , 2010 .
[8] G. S. Mowry. A portable, automated and environmentally friendly biodiesel processing system , 2011 .
[9] J. Coutinho,et al. Prediction of Viscosities of Fatty Compounds and Biodiesel by Group Contribution , 2011 .
[10] C. Westbrook,et al. Detailed chemical kinetic mechanism for the oxidation of biodiesel fuels blend surrogate , 2009 .
[11] Timothy J. Jacobs,et al. Interesting Behavior of Biodiesel Ignition Delay and Combustion Duration , 2010 .
[12] J. Coutinho,et al. Measurement and Modeling of Biodiesel Cold-Flow Properties , 2010 .
[13] Dennis J. Miller,et al. Modeling the Auto-Ignition of Oxygenated Fuels using a Multistep Model , 2010 .
[14] M. M. Piñeiro,et al. High-Pressure Biodiesel Density: Experimental Measurements, Correlation, and Cubic-Plus-Association Equation of State (CPA EoS) Modeling , 2011 .
[15] Ole John Nielsen,et al. Vapor Pressures of Alcohol−Gasoline Blends , 2010 .
[16] Gerhard Knothe,et al. “Designer” Biodiesel: Optimizing Fatty Ester Composition to Improve Fuel Properties† , 2008 .
[17] Edwin Corporan,et al. Chemical, Thermal Stability, Seal Swell, and Emissions Studies of Alternative Jet Fuels , 2011 .
[18] D. Geanǎ,et al. Calculation of phase equilibrium in supercritical extraction of C54 triglyceride (rapeseed oil) , 1995 .
[19] P. Gray,et al. Optimization of steam explosion as a method for increasing susceptibility of sugarcane bagasse to enzymatic saccharification , 1987, Biotechnology and bioengineering.
[20] M. P. Dorado,et al. Physical and Chemical Properties of Ethanol−Biodiesel Blends for Diesel Engines , 2010 .
[21] T. Bruno,et al. Variability of Biodiesel Fuel and Comparison to Petroleum-Derived Diesel Fuel: Application of a Composition and Enthalpy Explicit Distillation Curve Method , 2008 .
[22] Bin Liang,et al. Solubility of Multicomponent Systems in the Biodiesel Production by Transesterification of Jatropha curcas L. Oil with Methanol , 2006 .
[23] Ralph E.H. Sims,et al. Direct and indirect land‐use competition issues for energy crops and their sustainable production – an overview , 2010 .
[24] M. Liberatore,et al. Viscosity of Biomass Pyrolysis Oils from Various Feedstocks , 2010 .
[25] Anja Oasmaa,et al. Characterization of Hydrotreated Fast Pyrolysis Liquids , 2010 .
[26] Dennis J. Miller,et al. Ignition characteristics of diesel and canola biodiesel sprays in the low-temperature combustion regime , 2011 .
[27] Robert O. Dunn,et al. Effect of antioxidants on the oxidative stability of methyl soyate (biodiesel) , 2005 .
[28] Breda Kegl,et al. Effects of biodiesel on emissions of a bus diesel engine. , 2008, Bioresource technology.
[29] M. Sam Mannan,et al. Sustainability evaluation of biodiesel production using multicriteria decision‐making , 2009 .
[30] A. Marchese,et al. Measurement of Gaseous and Particulate Emissions from Algae-Based Fatty Acid Methyl Esters , 2010 .
[31] Robert D. Chirico,et al. ThermoData Engine (TDE): Software Implementation of the Dynamic Data Evaluation Concept. 3. Binary Mixtures , 2009, J. Chem. Inf. Model..
[32] C. Lee,et al. Lean Combustion and Emission Characteristics of Bioethanol and Its Blends in a Spark Ignition (SI) Engine , 2011 .
[33] J. Yanowitz,et al. Effect of Saturated Monoglyceride Polymorphism on Low-Temperature Performance of Biodiesel , 2011 .
[34] Mark A. White,et al. Environmental life cycle comparison of algae to other bioenergy feedstocks. , 2010, Environmental science & technology.
[35] Alan Christopher Hansen,et al. Predicting the temperature dependent viscosity of biodiesel fuels , 2009 .
[36] S. Polasky,et al. Environmental, economic, and energetic costs and benefits of biodiesel and ethanol biofuels. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[37] M. Frenkel,et al. Standard Reference Data for the Thermophysical Properties of Biofuels , 2010 .
[38] Andrew D. Jones,et al. Supporting Online Material for: Ethanol Can Contribute To Energy and Environmental Goals , 2006 .
[39] M. Kubo,et al. Simple Continuous Production Process of Biodiesel Fuel from Oil with High Content of Free Fatty Acid Using Ion-Exchange Resin Catalysts , 2010 .
[40] L. F. Bautista,et al. Direct Transformation of Fungal Biomass from Submerged Cultures into Biodiesel , 2010 .
[41] John M. Simmie,et al. Bio-butanol: Combustion properties and detailed chemical kinetic model , 2010 .
[42] Kuang C. Lin,et al. Biodiesel combustion: Advances in chemical kinetic modeling , 2011 .
[43] M. Thomson,et al. Spray Combustion and Particulate Matter Emissions of a Wood Derived Fast Pyrolysis Liquid-Ethanol Blend in a Pilot Stabilized Swirl Burner , 2011 .
[44] John E. Dec,et al. Advanced compression-ignition engines—understanding the in-cylinder processes , 2009 .
[45] Arno Laesecke,et al. Density and Speed of Sound Measurements of Jet A and S-8 Aviation Turbine Fuels , 2009 .
[46] B. Singh,et al. Advancements in solid acid catalysts for ecofriendly and economically viable synthesis of biodiesel , 2012 .
[47] George M. Church,et al. A new dawn for industrial photosynthesis , 2011, Photosynthesis Research.
[48] Eric D. Larson,et al. Making Fischer-Tropsch fuels and electricity from coal and biomass: Performance and cost analysis , 2011 .
[49] C. Howe,et al. Life-Cycle Assessment of Potential Algal Biodiesel Production in the United Kingdom: A Comparison of Raceways and Air-Lift Tubular Bioreactors , 2010 .
[50] A. Moutsoglou,et al. Fischer–Tropsch Synthesis in a Fixed Bed Reactor , 2011 .
[51] Lawrence L. Tavlarides,et al. Biodiesel Fuels through a Continuous Flow Process of Chicken Fat Supercritical Transesterification , 2010 .
[52] M. Frenkel,et al. Predictive correlations based on large experimental datasets: Critical constants for pure compounds , 2010 .
[53] D. Dixon,et al. Prediction of the Thermodynamic Properties of Key Products and Intermediates from Biomass , 2011 .
[54] Phillip E. Savage,et al. Biodiesel Production from Wet Algal Biomass through in Situ Lipid Hydrolysis and Supercritical Transesterification , 2010 .
[55] Ludivine Pidol,et al. Flash Point and Cetane Number Predictions for Fuel Compounds Using Quantitative Structure Property Relationship (QSPR) Methods , 2011 .
[56] Rolf D. Reitz,et al. Surrogate Model Development for Fuels for Advanced Combustion Engines , 2011 .
[57] Haiying Tang,et al. Effect of Antioxidants on the Storage Stability of Soybean-Oil-Based Biodiesel , 2010 .
[58] Phillip E. Savage,et al. Hydrothermal Liquefaction and Gasification of Nannochloropsis sp. , 2010 .
[59] Charles J. Mueller,et al. Recent progress in the development of diesel surrogate fuels , 2009 .
[60] Cun-wen Wang,et al. Continuous Production of Biodiesel via Supercritical Methanol Transesterification in a Tubular Reactor. Part 1: Thermophysical and Transitive Properties of Supercritical Methanol , 2009 .
[61] Sambhu Radhakrishnan,et al. Factors Influencing the Kinetics of Esterification of Fatty Acids over Solid Acid Catalysts , 2011 .
[62] G. Knothe,et al. Biodiesel: the use of vegetable oils and their derivatives as alternative diesel fuels. , 1997 .
[63] Aleksandar M. Orlović,et al. Vapor-liquid equilibria of triglycerides-methanol mixtures and their influence on the biodiesel synthesis under supercritical conditions of methanol , 2007 .
[64] A. Darzins,et al. The promise and challenges of microalgal‐derived biofuels , 2009 .
[65] Anders Hammer Strømman,et al. Production of Biofuels and Biochemicals from Lignocellulosic Biomass: Estimation of Maximum Theoretical Yields and Efficiencies Using Matrix Algebra , 2010 .
[66] G. Knothe,et al. A Comprehensive Evaluation of the Melting Points of Fatty Acids and Esters Determined by Differential Scanning Calorimetry , 2009 .
[67] M. Mascal,et al. Co-processing of Carbohydrates and Lipids in Oil Crops To Produce a Hybrid Biodiesel , 2010 .
[68] G. Schaub,et al. Fischer−Tropsch Synfuels from Biomass: Maximizing Carbon Efficiency and Hydrocarbon Yield , 2010 .
[69] T. Barth,et al. Towards a Lignincellulosic Biorefinery: Direct One-Step Conversion of Lignin to Hydrogen-Enriched Biofuel , 2008 .
[70] Amit Deshpande,et al. Integrated Technology for Supercritical Biodiesel Production and Power Cogeneration , 2008 .
[71] Carl J. Schaschke,et al. Combined high pressure and low temperature viscosity measurement of biodiesel , 2010 .
[72] Ruengwit Sawangkeaw,et al. A review of laboratory-scale research on lipid conversion to biodiesel with supercritical methanol (2001-2009) , 2010 .
[73] G. Knothe. Dependence of biodiesel fuel properties on the structure of fatty acid alkyl esters , 2005 .
[74] D. Peng,et al. A New Two-Constant Equation of State , 1976 .
[75] J. Murphy,et al. Can Rape Seed Biodiesel Meet the European Union Sustainability Criteria for Biofuels , 2010 .
[76] M. Eberlin,et al. A Highly Effective Antioxidant and Artificial Marker for Biodiesel , 2010 .
[77] Ruengwit Sawangkeaw,et al. Continuous Production of Biodiesel via Transesterification from Vegetable Oils in Supercritical Methanol , 2006 .
[78] P. Ratnasamy,et al. Estimation of Free Fatty Acid Content in Oils, Fats, and Biodiesel by 1H NMR Spectroscopy , 2009 .
[79] Gerhard Knothe,et al. Biodiesel and renewable diesel: A comparison , 2010 .
[80] S. Westbrook,et al. Storage Stability of Biodiesel and Biodiesel Blends , 2010 .
[81] Edward N. Coppola,et al. Catalytic Hydrothermal Conversion of Triglycerides to Non-ester Biofuels , 2010 .
[82] T. Bruno,et al. Composition-Explicit Distillation Curves of Commercial Biodiesel Fuels: Comparison of Petroleum-Derived Fuel with B20 and B100† , 2008 .
[83] T. Bruno,et al. Stabilization of Biodiesel Fuel at Elevated Temperature with Hydrogen Donors: Evaluation with the Advanced Distillation Curve Method† † Contribution of the United States government; not subject to copyright in the United States. , 2009 .
[84] Christopher Depcik,et al. High-Pressure Viscosity of Biodiesel from Soybean, Canola, and Coconut Oils , 2010 .
[85] André L. Boehman,et al. Investigation of the Impact of Engine Injection Strategy on the Biodiesel NOx Effect with a Common-Rail Turbocharged Direct Injection Diesel Engine , 2010 .
[86] E. G. Perkins,et al. Composition of Soybeans and Soybean Products , 1995 .
[87] Mark O. McLinden,et al. Automated Densimeter for the Rapid Characterization of Industrial Fluids , 2007 .
[88] D. Geanǎ,et al. Thermodynamic properties of pure fluids using the GEOS3C equation of state , 2000 .
[89] B. Little,et al. Anaerobic Metabolism of Biodiesel and Its Impact on Metal Corrosion , 2010 .
[90] Phillip E. Savage,et al. Assessment of Noncatalytic Biodiesel Synthesis Using Supercritical Reaction Conditions , 2008 .
[91] Carlos A Cardona,et al. Fuel ethanol production: process design trends and integration opportunities. , 2007, Bioresource technology.
[92] H. Guerrero,et al. PρT Behavior of Several Chemicals from Biomass , 2011 .
[93] Transonic Combustion - A Novel Injection-Ignition System for Improved Gasoline Engine Efficiency , 2010 .
[94] Sungwook Park,et al. Numerical Study on Combustion and Emission Characteristics of Homogeneous Charge Compression Ignition Engines Fueled with Biodiesel , 2010 .
[95] Electo Eduardo Silva Lora,et al. Biofuels: Environment, technology and food security , 2009 .
[96] A. Dalai,et al. Bioenergy and Green Engineering , 2010 .
[97] Jenny M. Jones,et al. Kinetics of the thermal decomposition of biomass , 2010 .
[98] Thomas J. Bruno,et al. Improvements in the measurement of distillation curves. 1. A composition-explicit approach , 2006 .
[99] P. Ratnasamy,et al. Influence of Surface Hydrophobicity on the Esterification of Fatty Acids over Solid Catalysts , 2010 .
[100] Thomas J. Bruno,et al. Comparison of Biomass-Derived Turbine Fuels with the Composition-Explicit Distillation Curve Method , 2011 .
[101] Mustafa Ertunc Tat,et al. The kinematic viscosity of biodiesel and its blends with diesel fuel , 1999 .
[102] Bret C. Windom,et al. Investigating the Unique Properties of Cuphea-Derived Biodiesel Fuel with the Advanced Distillation Curve Method , 2010 .
[103] Kunio Arai,et al. Decentralized chemical processes with supercritical fluid technology for sustainable society , 2009 .
[104] M. Zakrzewska,et al. Ionic Liquid Mediated Formation of 5-Hydroxymethylfurfural — A Promising Biomass-Derived Building Block , 2011 .
[105] Thomas J. Bruno,et al. Model for the Thermodynamic Properties of a Biodiesel Fuel , 2009 .
[106] A. Corma,et al. Synthesis of transportation fuels from biomass: chemistry, catalysts, and engineering. , 2006, Chemical reviews.
[107] Ping Chen,et al. Etherification of Biodiesel-Based Glycerol with Bioethanol over Tungstophosphoric Acid To Synthesize Glyceryl Ethers , 2011 .
[108] Martin Mittelbach,et al. Simulated Distillation for Biofuel Analysis , 2010 .
[109] P. A. Rice,et al. Supercritical biodiesel production and power cogeneration: technical and economic feasibilities. , 2010, Bioresource technology.
[110] Esteban A. Brignole,et al. Phase Transitions in a Biodiesel Reactor Using Supercritical Methanol , 2007 .
[111] R. McCormick,et al. Biodiesel Fuel Property Effects on Particulate Matter Reactivity , 2010 .
[112] D. Skala,et al. Phase transition at subcritical and supercritical conditions of triglycerides methanolysis , 2010 .
[113] Craig L. Glennie,et al. Synthesis of Transportation Applications of Mobile LIDAR , 2013, Remote. Sens..
[114] Elio Santacesaria,et al. New Process for the Production of Glycerol tert-Butyl Ethers† , 2010 .
[115] Andrés Agudelo,et al. Effect of the Degree of Unsaturation of Biodiesel Fuels on Engine Performance, Combustion Characteristics, and Emissions , 2011 .
[116] M. Huber,et al. Measurement and Correlation of the Thermal Conductivities of Biodiesel Constituent Fluids: Methyl Oleate and Methyl Linoleate , 2011 .
[117] T. Chakrabarti,et al. Commercializing lignocellulosic bioethanol: technology bottlenecks and possible remedies , 2010 .
[118] J. V. Beilen,et al. Why microalgal biofuels won't save the internal combustion machine , 2010 .
[119] Thomas J. Bruno,et al. Fluid properties needed in supercritical transesterification of triglyceride feedstocks to biodiesel fuels for efficient and clean combustion – A review , 2012 .
[120] P. Archawa-umroong,et al. [Direct observation]. , 1975, Thai journal of nursing.
[121] Avelino Corma,et al. Chemical Routes for the Transformation of Biomass into Chemicals , 2007 .
[122] D. Elliott,et al. Acidity of biomass fast pyrolysis bio-oils , 2010 .
[123] Hongwei Wu,et al. Bioslurry as a Fuel. 2. Life-Cycle Energy and Carbon Footprints of Bioslurry Fuels from Mallee Biomass in Western Australia , 2010 .
[124] Timothy J. Callahan,et al. Homogeneous Charge Compression Ignition of Diesel Fuel , 1996 .
[125] T. Bruno,et al. Density and Speed of Sound Measurements on Five Fatty Acid Methyl Esters at 83 kPa and Temperatures from (278.15 to 338.15) K , 2008 .
[126] G. Devaradjane,et al. Vegetable Oils And Their Derivatives As Fuels For CI Engines: An Overview , 2003 .
[127] D. Kargbo. Biodiesel Production from Municipal Sewage Sludges , 2010 .
[128] Ignition Delay of Bio-Ester Fuel Droplets , 2006 .
[129] M. Galvão,et al. Fuel for the Future: Biodiesel - A Case study , 2010 .
[130] G. M. Acosta,et al. High-Pressure PVT Behavior of Natural Fats and Oils, Trilaurin, Triolein, and n-Tridecane from 303 K to 353 K from Atmospheric Pressure to 150 MPa , 1996 .
[131] C. Wilke,et al. Rapid ethanol fermentations using vacuum and cell recycle , 1977 .
[132] Bruce E. Dale,et al. Thinking clearly about biofuels: ending the irrelevant ‘net energy’ debate and developing better performance metrics for alternative fuels , 2007 .
[133] Honggang Chen,et al. Thermogravimetric Study of Biomass Pyrolysis Kinetics. A Distributed Activation Energy Model with Prediction Tests , 2011 .
[134] Thomas Ingram,et al. Hydrolysis of lignocellulosic biomass in water under elevated temperatures and pressures , 2008 .
[135] Lawrence L. Tavlarides,et al. Investigations on supercritical transesterification of chicken fat for biodiesel production from low-cost lipid feedstocks , 2010 .
[136] J. Abedi,et al. Bio-oil from Sawdust: Effect of Operating Parameters on the Yield and Quality of Pyrolysis Products , 2011 .
[137] Naoko Ellis,et al. Assessment of four biodiesel production processes using HYSYS.Plant. , 2008, Bioresource technology.
[138] Naoko Ellis,et al. Perspectives on biodiesel as a sustainable fuel , 2010 .
[139] João A. P. Coutinho,et al. Evaluation of Predictive Models for the Viscosity of Biodiesel , 2011 .
[140] Robert L. McCormick,et al. Analysis of Oxygenated Compounds in Hydrotreated Biomass Fast Pyrolysis Oil Distillate Fractions , 2011 .
[141] Birgit Kamm,et al. Green biorefinery demonstration plant in Havelland (Germany) , 2010 .
[142] G. Soave. Equilibrium constants from a modified Redlich-Kwong equation of state , 1972 .
[143] M. L. Huber,et al. A Predictive Extended Corresponding States Model for Pure and Mixed Refrigerants , 1990 .
[144] Flora T. T. Ng,et al. A Single-Step Solid Acid-Catalyzed Process for the Production of Biodiesel from High Free Fatty Acid Feedstocks† , 2010 .
[145] William H. Green,et al. PREDICTION OF PERFORMANCE MAPS FOR HOMOGENEOUS-CHARGE COMPRESSION-IGNITION ENGINES , 2004 .
[146] D. Longman,et al. Numerical Study Comparing the Combustion and Emission Characteristics of Biodiesel to Petrodiesel , 2011 .
[147] C. Cardona,et al. Trends in biotechnological production of fuel ethanol from different feedstocks. , 2008, Bioresource technology.
[148] A. Hansen,et al. Vapor pressure and normal boiling point predictions for pure methyl esters and biodiesel fuels , 2005 .
[149] J. Bartle,et al. Toward Sustainable Production of Second Generation Bioenergy Feedstocks , 2010 .
[150] Amyn S. Teja,et al. A NEW CUBIC EQUATION OF STATE FOR FLUIDS AND FLUID MIXTURES , 1982 .
[151] M. McLinden,et al. NIST Standard Reference Database 23: Reference Fluid Thermodynamic and Transport Properties-REFPROP, Version 8.0 , 2007 .
[152] Yanyong Liu,et al. Production of Synthetic Diesel by Hydrotreatment of Jatropha Oils Using Pt−Re/H-ZSM-5 Catalyst , 2010 .
[153] Getting biofuels on the green and narrow path: why we must get advanced biofuels started and started in the right way , 2011 .
[154] Morgan Fröling,et al. Thermochemical biofuel production in hydrothermal media: A review of sub- and supercritical water technologies , 2008 .
[155] Robert L. McCormick,et al. Compendium of Experimental Cetane Number Data , 2004 .
[156] R. Smith,et al. Direct observation of cellulose dissolution in subcritical and supercritical water over a wide range of water densities (550–1000 kg/m3) , 2005 .
[157] Jeffrey S. Tolan,et al. Iogen's process for producing ethanol from cellulosic biomass , 2002 .
[158] C. Field,et al. Greater Transportation Energy and GHG Offsets from Bioelectricity Than Ethanol , 2009, Science.
[159] Charles J. Mueller,et al. Effects of Fuel Volatility on Early Direct-Injection, Low-Temperature Combustion in an Optical Diesel Engine , 2010 .
[160] Thermodynamic Properties of Pure Fluids , 1993 .
[161] L. Fouts. Analysis of Biodiesel Blend Samples Collected in the United States in 2008 , 2010 .
[162] Ole John Nielsen,et al. Distillation Curves for Alcohol−Gasoline Blends , 2010 .
[163] B. P. Nandwana,et al. Comparative Evaluation of Combustion, Performance, and Emissions of Jatropha Methyl Ester and Karanj Methyl Ester in a Direct Injection Diesel Engine , 2010 .
[164] Thomas H. Fletcher,et al. Improved Method for the Determination of Kinetic Parameters from Non-isothermal Thermogravimetric Analysis (TGA) Data , 2010 .
[165] Shenlin Zhu,et al. Transesterification Kinetics of Soybean Oil for Production of Biodiesel in Supercritical Methanol , 2007 .
[166] Gerhard Knothe,et al. SOME ASPECTS OF BIODIESEL OXIDATIVE STABILITY , 2007 .
[167] Thomas J Bruno,et al. Complex fluid analysis with the advanced distillation curve approach. , 2010, Analytical chemistry.
[168] R. Bogel-Łukasik,et al. Solubility of Carbohydrates in Ionic Liquids , 2010 .
[169] Jin-Suk Lee,et al. Biodiesel production by heterogeneous catalysts and supercritical technologies. , 2010, Bioresource technology.
[170] R. Reitz,et al. Development and Validation of a Reduced Reaction Mechanism for HCCI Engine Simulations , 2004 .
[171] Thomas J. Bruno,et al. Relating Complex Fluid Composition and Thermophysical Properties with the Advanced Distillation Curve Approach , 2010 .
[172] L. Tavlarides,et al. Phase Transitions and Thermal Behavior of Fuel−Diluent Mixtures , 2009 .
[173] Charles J. Mueller,et al. Liquid-Phase Penetration under Unsteady In-Cylinder Conditions: Soy- and Cuphea-Derived Biodiesel Fuels Versus Conventional Diesel , 2010 .
[174] Rolf D. Reitz,et al. Development of a Hybrid, Auto-Ignition/Flame-Propagation Model and Validation Against Engine Experiments and Flame Liftoff , 2007 .
[175] Gerhard Knothe,et al. Biodiesel Derived from a Model Oil Enriched in Palmitoleic Acid, Macadamia Nut Oil , 2010 .