Chemical Looping Partial Oxidation
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Chemical Looping Partial Oxidation
Author | : Liang-Shih Fan |
Publsiher | : Cambridge University Press |
Total Pages | : 497 |
Release | : 2017-10-12 |
Genre | : Technology & Engineering |
ISBN | : 9781107194397 |
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The first comprehensive guide to chemical looping partial oxidation processes, covering key principles, techniques, and applications.
Handbook of Chemical Looping Technology
Author | : Ronald W. Breault |
Publsiher | : John Wiley & Sons |
Total Pages | : 488 |
Release | : 2019-01-22 |
Genre | : Business & Economics |
ISBN | : 9783527342020 |
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This comprehensive and up-to-date handbook on this highly topical field, covering everything from new process concepts to commercial applications. Describing novel developments as well as established methods, the authors start with the evaluation of different oxygen carriers and subsequently illuminate various technological concepts for the energy conversion process. They then go on to discuss the potential for commercial applications in gaseous, coal, and fuel combustion processes in industry. The result is an invaluable source for every scientist in the field, from inorganic chemists in academia to chemical engineers in industry.
Chemistry Physics of Carbon
Author | : Peter A. Thrower |
Publsiher | : CRC Press |
Total Pages | : 264 |
Release | : 2021-05-30 |
Genre | : Science |
ISBN | : 9781000444599 |
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This book provides insights into the mechanisms of primary carbonization and reviews the graphitization of various carbon materials under applied pressures. It discusses the changes in the thermal-mechanical properties of carbon/carbon composites due to stress effects.
Chemical Looping Systems for Fossil Energy Conversions
Author | : Liang-Shih Fan |
Publsiher | : John Wiley & Sons |
Total Pages | : 353 |
Release | : 2011-02-14 |
Genre | : Technology & Engineering |
ISBN | : 9781118063132 |
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This book presents the current carbonaceous fuel conversion technologies based on chemical looping concepts in the context of traditional or conventional technologies. The key features of the chemical looping processes, their ability to generate a sequestration-ready CO2 stream, are thoroughly discussed. Chapter 2 is devoted entirely to the performance of particles in chemical looping technology and covers the subjects of solid particle design, synthesis, properties, and reactive characteristics. The looping processes can be applied for combustion and/or gasification of carbon-based material such as coal, natural gas, petroleum coke, and biomass directly or indirectly for steam, syngas, hydrogen, chemicals, electricity, and liquid fuels production. Details of the energy conversion efficiency and the economics of these looping processes for combustion and gasification applications in contrast to those of the conventional processes are given in Chapters 3, 4, and 5.Finally, Chapter 6 presents additional chemical looping applications that are potentially beneficial, including those for H2 storage and onboard H2 production, CO2 capture in combustion flue gas, power generation using fuel cell, steam-methane reforming, tar sand digestion, and chemicals and liquid fuel production. A CD is appended to this book that contains the chemical looping simulation files and the simulation results based on the ASPEN Plus software for such reactors as gasifier, reducer, oxidizer and combustor, and for such processes as conventional gasification processes, Syngas Chemical Looping Process, Calcium Looping Process, and Carbonation-Calcination Reaction (CCR) Process. Note: CD-ROM/DVD and other supplementary materials are not included as part of eBook file.
Non Equilibrium Air Plasmas at Atmospheric Pressure
Author | : K.H. Becker,U. Kogelschatz,K.H. Schoenbach,R.J. Barker |
Publsiher | : CRC Press |
Total Pages | : 704 |
Release | : 2004-11-29 |
Genre | : Science |
ISBN | : 0750309628 |
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Atmospheric-pressure plasmas continue to attract considerable research interest due to their diverse applications, including high power lasers, opening switches, novel plasma processing applications and sputtering, EM absorbers and reflectors, remediation of gaseous pollutants, excimer lamps, and other noncoherent light sources. Atmospheric-pressure plasmas in air are of particular importance as they can be generated and maintained without vacuum enclosure and without any additional feed gases. Non-Equilibrium Air Plasmas at Atmospheric Pressure reviews recent advances and applications in the generation and maintenance of atmospheric-pressure plasmas. With contributions from leading international researchers, the coverage includes advances in atmospheric-pressure plasma source development, diagnostics and characterization, air plasma chemistry, modeling and computational techniques, and an assessment of the status and prospects of atmospheric-pressure air plasma applications. The extensive application sections make this book attractive for practitioners in many fields where technologies based on atmospheric-pressure air plasmas are emerging.
Direct Natural Gas Conversion to Value Added Chemicals
Author | : Jianli Hu,Dushyant Shekhawat |
Publsiher | : CRC Press |
Total Pages | : 368 |
Release | : 2020-09-25 |
Genre | : Science |
ISBN | : 9780429663246 |
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Direct Natural Gas Conversion to Value-Added Chemicals comprehensively discusses all major aspects of natural gas conversion and introduces a broad spectrum of recent technological developments. Specifically, the book describes heterogeneous and homogeneous catalysis, microwave-assisted conversion, non-thermal plasma conversion, electrochemical conversion, and novel chemical looping conversion approaches. Provides an excellent benchmark resource for the industry and academics Appeals to experienced researchers as well as newcomers to the field, despite the variety of contributing authors and the complexity of the material covered Includes all aspects of direct natural gas conversion: fundamental chemistry, different routes of conversion, catalysts, catalyst deactivation, reaction engineering, novel conversion concepts, thermodynamics, heat and mass transfer issues, system design, and recent research and development Discusses new developments in natural gas conversion and future challenges and opportunities This book is as an excellent resource for advanced students, technology developers, and researchers in chemical engineering, industrial chemistry, and others interested in the conversion of natural gas.
Multiphase Reactor Engineering for Clean and Low Carbon Energy Applications
Author | : Yi Cheng,Fei Wei,Yong Jin |
Publsiher | : John Wiley & Sons |
Total Pages | : 430 |
Release | : 2017-03-13 |
Genre | : Technology & Engineering |
ISBN | : 9781118454695 |
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Provides a comprehensive review on the brand-new development of several multiphase reactor techniques applied in energy-related processes Explains the fundamentals of multiphase reactors as well as the sophisticated applications Helps the reader to understand the key problems and solutions of clean coal conversion techniques Details the emerging processes for novel refining technology, clean coal conversion techniques, low-cost hydrogen productions and CO2 capture and storage Introduces current energy-related processes and links the basic principles of emerging processes to the features of multiphase reactors providing an overview of energy conversion in combination with multiphase reactor engineering Includes case studies of novel reactors to illustrate the special features of these reactors
Iron Catalysis
Author | : Bernd Plietker |
Publsiher | : Springer Science & Business Media |
Total Pages | : 227 |
Release | : 2011-01-05 |
Genre | : Science |
ISBN | : 9783642146695 |
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Juan I. Padrón and Víctor S. Martín: Catalysis by means of Fe-based Lewis acids; Hiroshi Nakazawa*, Masumi Itazaki: Fe–H Complexes in Catalysis; Kristin Schröder, Kathrin Junge, Bianca Bitterlich, and Matthias Beller: Fe-catalyzed Oxidation Reactions of Olefins, Alkanes and Alcohols: Involvement of Oxo- and Peroxo Complexes; Chi-Ming Che, Cong-Ying Zhou, Ella Lai-Ming Wong: Catalysis by Fe=X Complexes (X=NR, CR2); René Peters, Daniel F. Fischer and Sascha Jautze: Ferrocene and Half Sandwich Complexes as Catalysts with Iron Participation; Markus Jegelka, Bernd Plietker: Catalysis by Means of Complex Ferrates.