Methanol Science and Engineering by Angelo Basile
Free Download Methanol Science and Engineering by Angelo Basile
Authors of: Methanol Science and Engineering by Angelo Basile
Angelo Basile
Francesco Dalena
Table of Contents in Methanol Science and Engineering by Angelo Basile
List of Contributors
Preface
PART 1 SCIENCE AND PRODUCTION
Chapter 1: Methanol Production and Applications: An Overview
1 Introduction
2 Methanol Production
2.1 Methanol From Natural Gas
2.2 Methanol From Coal and Biomass
2.3 Methanol From Catalytic Hydrogenation of CO2
3 Methanol Application
3.1 Methanol to DiMethylEther
3.2 Hydrogen Production
3.3 Methanol Fuel Cells
Conclusions and Future Trends
References
Further Reading
Chapter 2: State of the Art of Conventional Reactors for Methanol Production
1 Introduction
2 Catalysts for Methanol Synthesis
3 Reactors for Methanol Synthesis
3.1 BASF High Pressure Process
3.2 ICI’s 100 atm Methanol Synthesis Process
3.3 Haldor Topsoe A/S Low-Pressure Methanol Synthesis Process
3.4 Kvaerner Methanol Synthesis Process
3.5 Krupp Uhde’s Methanol Synthesis Technology
3.6 Lurgi €
Ol-Gas-Chemie GmbH Process
3.7 Synetix LPM Process
3.8 Liquid-Phase Methanol Process
4 Methanol Reactors
4.1 Multiple Bed Reactors
4.2 Single Bed Reactors
5 Conclusions and Future Trends
References
Further Reading
Chapter 3: Fossil or Renewable Sources for Methanol Production?
1 Introduction
2 Why Methanol From Biomass?
3 Different Kinds of Biomass
4 Traditional Process for Methanol Production
4.1 Chemistry
4.2 Catalytic Systems
4.3 Kinetic Modeling
4.4 Transport Phenomena Around and Inside the Catalyst
5 Biomass-Based Processes
5.1 Thermal Treatment of Biomasses
5.2 CO2 Conversion
6 Biomass-to-Methanol Process Design
7 Current Problems With Biomethanol Production and Conclusions
References
Further Reading
Chapter 4: Waste as a Source of Carbon for Methanol Production
Chapter 5: Direct Synthesis of Methanol and Dimethyl Ether From a CO2-Rich
Chapter 6: Direct Methane to Methanol: Historical and Kinetics Aspects
Chapter 7: Direct Methane to Methanol: Reaction Products and Effect of Gas Composition
Chapter 8: Direct Methane to Methanol: Promising Technologies Based on the DMTM Process
PART 2 APPLICATION AND INNOVATION
Chapter 10: Methanol to Dimethyl Ether
Chapter 11: Methanol As An Internal Combustion on Engine Fuel
Chapter 12: From Methanol to Electricity and Hydrogen
Through Bioelectrochemical Systems
Chapter 13: Methanol Separation From Liquid Mixtures
Via Pervaporation Using Membranes
Chapter 14: Direct Methanol Fuel Cell
Chapter 15: Coproduction of Electrical Energy and Methanol
Chapter 16: Which Future Route in the Methanol Synthesis? Photocatalytic Reduction of CO2, the New Challenge in the Solar Energy Exploitation
PART 3 MODELING AND TECHNOLOGY
Chapter 17: Modeling in Methanol Synthesis
Chapter 18: Inorganic Membrane Reactors for Methanol Synthesis
Chapter 19: Highly Conductive Structured Catalysts for the Intensification
of Methanol Synthesis in Multitubular Reactors
Chapter 20: Methanol Production in Thermally Coupled, Fluidized-Bed, Bubble-Column and Membrane Reactors
Chapter 21: Modeling of the Di Methyl Ether Production Reactors
PART 4 ENVIRONMENT AND ECONOMY
Chapter 22: Methanol Economy: Environment, Demand, and Marketing With a Focus on the Waste-to-Methanol Process
Chapter 23: Economic Assessment of Methanol Production
Chapter 24: Cost Estimation of an Integrated System for Co-production of Electricity and Methanol
Chapter 25: Methanol Economy Versus Hydrogen Economy
Conclusion
References
Index
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