Investigation of Solid Fuel Conversion in the Chemical Looping Process

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ISBN 13 :
Total Pages : 44 pages
Book Rating : 4.:/5 (643 download)

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Book Synopsis Investigation of Solid Fuel Conversion in the Chemical Looping Process by : Dennis Wayne McOwen

Download or read book Investigation of Solid Fuel Conversion in the Chemical Looping Process written by Dennis Wayne McOwen and published by . This book was released on 2010 with total page 44 pages. Available in PDF, EPUB and Kindle. Book excerpt: Abstract: The high energy density and abundance of coal along with the sustainability of biomass make them favorable fuels for energy production. However, the combustion of carbon-based fuels inevitably results in the production of the greenhouse gas carbon dioxide (CO2). To avert climate change and comply with likely future regulations for greenhouse gas emissions, the CO2 byproduct must be efficiently captured. Unfortunately, existing carbon capture methods result in significant decreases in plant efficiency and significant increases in capital and operating costs. The Coal-Direct Chemical Looping (CDCL) is an energy conversion process for coal/biomass that can separate the CO2 stream in-situ by utilizing iron oxide composite particles as oxygen carriers. Using this method, the iron oxide particles provide crucial oxygen to the coal instead of air, which is the key strategy to the process. The cycling of the iron oxide particles allows for efficient and total carbon capture, therefore ensuring the sustainability and economic viability of carbon-fueled power. Although biomass also produces CO2 upon combustion, it also absorbs CO2 as it is grown. Therefore, biomass can be utilized as a replacement for coal and further improve the sustainability of the process by making it carbon negative. The objective of this study is to investigate the enhancement of char and iron particle conversion with CO2, design a mechanism for particle transfer from the reducer to the combustor, and perform a preliminary assessment of the potential of biomass in the CDCL process. The main obstacle for CDCL is the conversion of coal char because the reaction between the metal oxide and the char is a slow solid-solid reaction. CO2 was found to help gasify the char and significantly increase the rate of reaction. In fact, in the experiments performed in this study, the addition of CO2 increased the amount of char reacted twofold. Furthermore, mixtures between 50% and 70% metal oxide with char were found to increase the char conversion the most compared to other mixtures. These mixtures increased the amount of char reacted 2-5 times, depending on the type of coal used. Ease of coal fluidization was found to be independent of the amount of metal oxide particles; however addition of 80-100% by mass of an inert particle was required in order to fluidize the biomass. A cold model of the reactor was constructed in order to study the gas-solid hydrodynamics and to design the most controllable method of handling solid fuels and oxygen carriers in the system. A design with high resistance and constant flow was selected based on experiments performed on the cold model. The results obtained by this study prove the capabilities of the CDCL process and will allow it to continue towards the scale up to a sub-pilot demonstration.

Chemical Looping Systems for Fossil Energy Conversions

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Publisher : John Wiley & Sons
ISBN 13 : 1118063139
Total Pages : 353 pages
Book Rating : 4.1/5 (18 download)

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Book Synopsis Chemical Looping Systems for Fossil Energy Conversions by : Liang-Shih Fan

Download or read book Chemical Looping Systems for Fossil Energy Conversions written by Liang-Shih Fan and published by John Wiley & Sons. This book was released on 2011-02-14 with total page 353 pages. Available in PDF, EPUB and Kindle. Book excerpt: 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.

Development of Chemical Looping Combustion Technology for Energy Application - Process Modeling, Experimental Aspect, and Exergy Analysis

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (131 download)

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Book Synopsis Development of Chemical Looping Combustion Technology for Energy Application - Process Modeling, Experimental Aspect, and Exergy Analysis by : Yitao Zhang

Download or read book Development of Chemical Looping Combustion Technology for Energy Application - Process Modeling, Experimental Aspect, and Exergy Analysis written by Yitao Zhang and published by . This book was released on 2020 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: With the rising concern of climate change, extensive research has been conducted in recent years on the mitigation of global warming. Greenhouse gas emissions are considered as the key driver of global warming. Among the various greenhouse gases, CO2 is the major contributor to the greenhouse effect. Therefore, mitigation of CO2 emission is the key to address global warming. Chemical looping is an energy conversion technology that can directly produce a concentrated CO2 stream, ready for sequestration and utilization, without the need for an individual CO2 separation step, and thus, has the potential to drastically reduce the energy consumption and cost associated with CO2 capture in carbonaceous fuel energy conversion systems. In this dissertation, process modeling and analysis are conducted on solid fuel power production processes to quantify the energy penalty and exergy losses associated with CO2 capture technologies, including state-of-the-art solvent-based CO2 absorption, oxy-combustion using high purity oxygen, and chemical looping combustion technology. Following the comparison of various power production processes using solid fuel with and without CO2 capture, a comprehensive analysis is performed to investigate the effect of varying operation conditions on the performance of chemical looping combustion reactor system. The coal-direct chemical looping process is a chemical looping combustion technology using moving bed reducer configuration that can directly use coal as the feedstock without requiring upstream gasification steps. An integrated 250 kWth coal-direct chemical looping pilot unit using iron-based oxygen carriers has been constructed and demonstrated for long-term continuous operations. The principles for the design and operation of the primary reactor system are discussed in this dissertation. The results of a successful 288-hour continuous demonstration with pulverized bituminous coal are reported. The results from the pilot unit highlight the concept of the chemical looping combustion process as a promising solid fuel combustion technology with CO2 capture. To investigate chemical looping technology for hydrogen production, process simulation and analysis is performed on two distinct configurations for chemical looping H2 generation process. The simulation results of two chemical looping H2 generation configurations are compared with the conventional steam-methane reforming system to underscore the attractiveness of the chemical looping configurations.

Oxygen-Carrier-Aided Combustion Technology for Solid-Fuel Conversion in Fluidized Bed

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Publisher : Springer Nature
ISBN 13 : 9811991278
Total Pages : 126 pages
Book Rating : 4.8/5 (119 download)

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Book Synopsis Oxygen-Carrier-Aided Combustion Technology for Solid-Fuel Conversion in Fluidized Bed by : Lunbo Duan

Download or read book Oxygen-Carrier-Aided Combustion Technology for Solid-Fuel Conversion in Fluidized Bed written by Lunbo Duan and published by Springer Nature. This book was released on 2023-03-11 with total page 126 pages. Available in PDF, EPUB and Kindle. Book excerpt: This open access book surveys the development of OCAC technology in the last decade for solid fuel conversion in fluidized beds. The scientific concerns, including combustion and emission characteristics, ash-related problems, OC aging, and so on, are summarized and analyzed. Beyond this, new concepts like OCAC with Oxy-PFBC, OCAC coupled with staged fuel conversion, OCAC in rotatory kilns and multi-functional OCAC are proposed, so as to promote the applications of OCAC to various fields in the future. Moreover, this book also outlines the perspectives for future research and development of OCAC. As an emerging technology, extensive studies and investigations are still necessary to fill in the gap from the fundamental understanding of the technology to its industrial demonstrations. Nevertheless, we believe that this book provides novel insights for the readership of energy and combustion and stimulate meaningful follow-on research on OCAC technology.

Dynamic Simulation of the Chemical Looping Combustion Process

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Publisher : Cuvillier Verlag
ISBN 13 : 3736963351
Total Pages : 140 pages
Book Rating : 4.7/5 (369 download)

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Book Synopsis Dynamic Simulation of the Chemical Looping Combustion Process by : Johannes Haus

Download or read book Dynamic Simulation of the Chemical Looping Combustion Process written by Johannes Haus and published by Cuvillier Verlag. This book was released on 2020-12-09 with total page 140 pages. Available in PDF, EPUB and Kindle. Book excerpt: In this Ph.D. thesis a system of coupled fluidized bed reactors is modelled and simulated dynamically. Chemical Looping Combustion was used as an exemplary process in both the numerical and the experimental part of this work. For the simulation purpose a novel flowsheeting software was used and models for the needed process units developed and integrated into this software. The needed unit models were three interconnected fluidized bed reactors in circulating and bubbling operation conditions, a cyclone for gas-solid separation and loop seals, which ensured solids transport and gas separation between the reactors. Additionally, lab scale experiments on the reactivity of the used solids, oxygen carrier and solid fuels, were conducted and kinetic parameters extracted. All unit models were connected to a process flowsheet and simulated dynamically. The simulation results were compared to experimental data from a 25 kWth pilot plant operated at the university by the author. It could be shown that a detailed and dynamic simulation of the whole process can be carried out over a time period of more than 45 minutes and the experimental results from start-up, steady state operation and shutdown of the plant were predicted accurately.

Thermochemical Conversion Processes for Solid Fuels and Renewable Energies

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Publisher : MDPI
ISBN 13 : 3036510966
Total Pages : 222 pages
Book Rating : 4.0/5 (365 download)

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Book Synopsis Thermochemical Conversion Processes for Solid Fuels and Renewable Energies by : Falah Alobaid

Download or read book Thermochemical Conversion Processes for Solid Fuels and Renewable Energies written by Falah Alobaid and published by MDPI. This book was released on 2021-08-30 with total page 222 pages. Available in PDF, EPUB and Kindle. Book excerpt: It is widely believed that a large proportion of greenhouse gas emissions originated anthropogenically from the use of fossil fuels with additional contributions coming from manufactured materials, deforestation, soil erosion, and agriculture (including livestock). The global society actively supports measures to create a flexible and low-carbon energy economy to attenuate climate change and its devastating environmental consequences. In this Special Issue, the recent advancements in the next-generation thermochemical conversion processes for solid fuels and renewable energies (e.g., the operational flexibility of co-combustion of biomass and lignite, integrated solar combined cycle power plants, and advanced gasification systems such as the sorption-enhanced gasification and the chemical looping gasification) were shown.

Fluidized Bed Technologies for Near-Zero Emission Combustion and Gasification

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Publisher : Elsevier
ISBN 13 : 0857098802
Total Pages : 1091 pages
Book Rating : 4.8/5 (57 download)

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Book Synopsis Fluidized Bed Technologies for Near-Zero Emission Combustion and Gasification by : Fabrizio Scala

Download or read book Fluidized Bed Technologies for Near-Zero Emission Combustion and Gasification written by Fabrizio Scala and published by Elsevier. This book was released on 2013-09-30 with total page 1091 pages. Available in PDF, EPUB and Kindle. Book excerpt: Fluidized bed (FB) combustion and gasification are advanced techniques for fuel flexible, high efficiency and low emission conversion. Fuels are combusted or gasified as a fluidized bed suspended by jets with sorbents that remove harmful emissions such as SOx. CO2 capture can also be incorporated. Fluidized bed technologies for near-zero emission combustion and gasification provides an overview of established FB technologies while also detailing recent developments in the field. Part one, an introductory section, reviews fluidization science and FB technologies and includes chapters on particle characterization and behaviour, properties of stationary and circulating fluidized beds, heat and mass transfer and attrition in FB combustion and gasification systems. Part two expands on this introduction to explore the fundamentals of FB combustion and gasification including the conversion of solid, liquid and gaseous fuels, pollutant emission and reactor design and scale up. Part three highlights recent advances in a variety of FB combustion and gasification technologies before part four moves on to focus on emerging CO2 capture technologies. Finally, part five explores other applications of FB technology including (FB) petroleum refining and chemical production. Fluidized bed technologies for near-zero emission combustion and gasification is a technical resource for power plant operators, industrial engineers working with fluidized bed combustion and gasification systems and researchers, scientists and academics in the field. Examines the fundamentals of fluidized bed (FB) technologies, including the conversion of solid, liquid and gaseous fuels Explores recent advances in a variety of technologies such as pressurized FB combustion, and the measurement, monitoring and control of FB combustion and gasification Discusses emerging technologies and examines applications of FB in other processes

Investigation of Chemical Looping Oxygen Carriers and Processes for Hydrocarbon Oxidation and Selective Alkane Oxidation to Chemicals

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Publisher :
ISBN 13 :
Total Pages : 154 pages
Book Rating : 4.:/5 (972 download)

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Book Synopsis Investigation of Chemical Looping Oxygen Carriers and Processes for Hydrocarbon Oxidation and Selective Alkane Oxidation to Chemicals by : Elena Yin-Yin Chung

Download or read book Investigation of Chemical Looping Oxygen Carriers and Processes for Hydrocarbon Oxidation and Selective Alkane Oxidation to Chemicals written by Elena Yin-Yin Chung and published by . This book was released on 2016 with total page 154 pages. Available in PDF, EPUB and Kindle. Book excerpt: In order to overcome these process limitations, the chemical looping technology platform presents an attractive opportunity to convert hydrocarbons to flexible products utilizing intermediate oxygen carriers rather than gaseous co-fed oxidants. This study compares the traditional co-feed approach to the chemical looping approach for selectively controlling both the OCM and selective n-butane oxidation reactions with a focus on overcoming the technical issues that prevented these processes from achieving commercial application. These experimental results are used in process simulations in order to model and compare the theoretical commercial co-feed system with the commercial chemical looping system. For example, previous work demonstrated that pressure and steam have an effect on methane conversion and C2+ selectivity with the OCM co-feed and chemical looping processes. Initial simulations demonstrate that with proper heat integration, the OCM chemical looping process exhibits promising reactor and process operations for an alternative direct approach to utilize methane. The processes demonstrate that the application of chemical looping can be used as a novel and efficient approach for the conversion of hydrocarbons, especially alkanes, to electricity with CO2 capture, syngas and chemicals. With the emerging challenge of climate change and the continued escalation of energy demands, innovative and flexible fuel conversion technologies are necessary and gaining recognition. Chemical looping technologies have the potential to not only reduce energy costs, but also to mitigate carbon emissions. Historically, the general concept of this reduction-oxidation mechanism has been suggested, but the process was never commercialized. Recent interests in carbon capture techniques have revitalized the adaptive chemical looping system. Chemical looping technologies can utilize both gaseous and solid fuels such as natural gas and coal, respectively, for power, hydrogen or chemical generation. However, the success of technological adoption requires a thorough understanding of the types of chemical looping techniques, the design considerations, and the reactor modes of configurations.

Handbook of Chemical Looping Technology

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Publisher : John Wiley & Sons
ISBN 13 : 3527342028
Total Pages : 488 pages
Book Rating : 4.5/5 (273 download)

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Book Synopsis Handbook of Chemical Looping Technology by : Ronald W. Breault

Download or read book Handbook of Chemical Looping Technology written by Ronald W. Breault and published by John Wiley & Sons. This book was released on 2019-01-22 with total page 488 pages. Available in PDF, EPUB and Kindle. Book excerpt: 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.

Solid Fuels Combustion and Gasification

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Publisher : CRC Press
ISBN 13 : 9780203027295
Total Pages : 480 pages
Book Rating : 4.0/5 (272 download)

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Book Synopsis Solid Fuels Combustion and Gasification by : Marcio L. de Souza-Santos

Download or read book Solid Fuels Combustion and Gasification written by Marcio L. de Souza-Santos and published by CRC Press. This book was released on 2004-06-07 with total page 480 pages. Available in PDF, EPUB and Kindle. Book excerpt: Bridging the gap between theory and application, this reference demonstrates the operational mechanisms, modeling, and simulation of equipment for the combustion and gasification of solid fuels. Solid Fuels Combustion and Gasification: Modeling, Simulation, and Equipment Operation clearly illustrates procedures to improve and optimize the de

Coal and Biomass Gasification

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Publisher : Springer
ISBN 13 : 981107335X
Total Pages : 524 pages
Book Rating : 4.8/5 (11 download)

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Book Synopsis Coal and Biomass Gasification by : Santanu De

Download or read book Coal and Biomass Gasification written by Santanu De and published by Springer. This book was released on 2017-12-13 with total page 524 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book addresses the science and technology of the gasification process and the production of electricity, synthetic fuels and other useful chemicals. Pursuing a holistic approach, it covers the fundamentals of gasification and its various applications. In addition to discussing recent advances and outlining future directions, it covers advanced topics such as underground coal gasification and chemical looping combustion, and describes the state-of-the-art experimental techniques, modeling and numerical simulations, environmentally friendly approaches, and technological challenges involved. Written in an easy-to-understand format with a comprehensive glossary and bibliography, the book offers an ideal reference guide to coal and biomass gasification for beginners, engineers and researchers involved in designing or operating gasification plants.

Particle Characterisation in Chemical Looping Combustion with Solid Fuels

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (847 download)

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Book Synopsis Particle Characterisation in Chemical Looping Combustion with Solid Fuels by : Chern Yean Sim

Download or read book Particle Characterisation in Chemical Looping Combustion with Solid Fuels written by Chern Yean Sim and published by . This book was released on 2013 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: It is well known that carbon dioxide (CO2) is a greenhouse gas that contributes to global warming. Nowadays, a third of the worldwide anthropogenic CO2 emissions arise from fossil fuel fired power production. Meanwhile, fossil fuels continue to be the main source of energy for the foreseeable future. The increasing threat posed by enhanced global warming, as well as the requirement for sustainable energy supplies around the world, have led to the development of several novel technologies to produce clean energy from fuels. Among these new technologies is chemical looping combustion (CLC) that uses a solid metal oxide (oxygen carrier) to react with fuels. This technology has the potential advantage that it produces a pure stream of CO2 that can then be sequestrated. In a CLC process, the oxygen carrier is reduced by fuels in one reactor while being oxidised by air in a separate reactor. As the oxygen carrier circulates through the system, it is subjected to morphological and compositional changes such as sintering, attrition and reactions between various metal oxides and fuels. These changes tend to cause the reactivity of the oxygen carrier to decrease over time. The main objective of this PhD study was to investigate and characterise the morphological and compositional changes of the oxygen carrier particles after they have undergone multiple reduction oxidation cycles in a CLC system. A single fluidised bed system was used in this study. Fuel was fed into a bed of oxygen carrier consisting of mechanically mixed iron oxide or wet impregnated copper oxide supported on alumina. The bed was fluidised by a stream of CO2 and/or steam. Pyrolysis gases from the fuel gasification process reduced the oxygen carrier while forming char in the bed. Thus char was oxidised and the oxygen carrier was regenerated when the fluidising gas was switched to air. Five different types of fuels were initially used in the tests. They were lignite coal, lignite char, activated carbon, US bituminous coal and Taldinski bituminous coal. The rates of gasification of the bituminous coal and activated carbon were much slower than those of the lignite coal and lignite char, resulting in an unfavourably large accumulation of char during the reduction stage. Subsequent experiments were conducted with UK bituminous coal to determine the effect of ash on the oxygen carrier particles over a long operational period. The series of analytical tests included; stereo microscopy, porosimetry analysis, X-ray diffraction (XRD), X-ray fluorescence (XRF), inductively coupled plasma mass spectrometry (ICP-MS), scanning electron microscopy with an energy dispersive system (SEM/EDS) and Page ii X-ray photoelectron spectroscopy (XPS). Tests were performed on both the fresh and reacted oxygen carriers. Analytical results showed that when the pyrolysis gases react with the oxygen carrier, mineral matter left behind from the gasification process will deposit on the surface of the particles and diffuse into the core of the particles. This is due to the fact that mineral matter has a higher melting point compared to iron oxide and copper oxide. Iron oxide and copper oxide diffusing to the surface of the particles will replace those that are lost via attrition. As a result, the composition of the surface of these particles remains relatively unchanged. As more mineral matter diffuses into the core of the oxygen carrier particles, they can segregate metal oxide molecules located at the surfaces from those located at the core of the particles. When this occurs, there is a possibility that the segregated material formed will reduce the ability of oxygen to diffuse to the surface of the oxygen carrier particles. Hence this will reduce the conversion of the pyrolysis gases. This will thus lead to the reduction in the conversion of the pyrolysis gas and possibly in the deactivation of the oxygen carrier. It was found that the support structure played a key role in maintaining the structural integrity of the metal oxide particles during repeated reduction and oxidation cycles. Experimental results showed that the rate of attrition initially increases with time indicating that the oxygen carrier structure weakens as it interacts with the mineral matter in ash. Results from this research study have shown that the semi-batch chemical looping combustion of solid fuels is feasible provided reactive fuels that produce a large quantity of pyrolysis gases are used. Less reactive fuels will lead to the accumulation of a large inventory of char in the bed. The slow rate of gasification of char will then result in a lower carbon capture efficiency. In order to operate a semi-batch chemical looping combustion system with solid fuel, temperatures of above 1000°C are most likely required. However, this would exclude metal oxides with low melting points to act as potential oxygen carriers and may cause other problems such as ash fusion. A possible solution is to gasify the solid fuels in a separate reactor and channel the resulting pyrolysis gases into the chemical looping combustion system.

Pollutants Generated by the Combustion of Solid Biomass Fuels

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Publisher : Springer
ISBN 13 : 1447164377
Total Pages : 118 pages
Book Rating : 4.4/5 (471 download)

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Book Synopsis Pollutants Generated by the Combustion of Solid Biomass Fuels by : Jenny M Jones

Download or read book Pollutants Generated by the Combustion of Solid Biomass Fuels written by Jenny M Jones and published by Springer. This book was released on 2014-11-04 with total page 118 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book considers the pollutants formed by the combustion of solid biomass fuels. The availability and potential use of solid biofuels is first discussed because this is the key to the development of biomass as a source of energy. This is followed by details of the methods used for characterisation of biomass and their classification. The various steps in the combustion mechanisms are given together with a compilation of the kinetic data. The chemical mechanisms for the formation of the pollutants: NOx, smoke and unburned hydrocarbons, SOx, Cl compounds, and particulate metal aerosols are given in detail. Combustion kinetics required for the application for design purposes are given. Examples are given of emission levels of a range different types of combustion equipment. Data is given of NOx, particulates and other pollutant arising from combustion of different fuels in fixed bed combustion, fluidized bed combustion and pulverised biomass combustion and co-firing. Modeling methods including computational fluid dynamics for the various pollutants are outlined. The consequential issues arising from the wide scale use of biomass and future trends are then discussed. In particular the role of carbon capture and storage in large biomass combustion plants is considered as well as the opportunity of reducing the concentration of atmospheric concentration of carbon dioxide.

Process Intensification for Sustainable Energy Conversion

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Publisher : John Wiley & Sons
ISBN 13 : 1118449355
Total Pages : 407 pages
Book Rating : 4.1/5 (184 download)

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Book Synopsis Process Intensification for Sustainable Energy Conversion by : Fausto Gallucci

Download or read book Process Intensification for Sustainable Energy Conversion written by Fausto Gallucci and published by John Wiley & Sons. This book was released on 2015-07-07 with total page 407 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book addresses the application of process intensification to sustainable energy production, combining two very topical subject areas. Due to the increasing process of petroleum, sustainable energy production technologies must be developed, for example bioenergy, blue energy, chemical looping combustion, concepts for CO2 capture etc. Process intensification offers significant competitive advantages, because it provides more efficient processes, leading to outstanding cost reduction, increased productivity and more environment-friendly processes.

Calcium and Chemical Looping Technology for Power Generation and Carbon Dioxide (CO2) Capture

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Publisher : Elsevier
ISBN 13 : 0857097601
Total Pages : 467 pages
Book Rating : 4.8/5 (57 download)

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Book Synopsis Calcium and Chemical Looping Technology for Power Generation and Carbon Dioxide (CO2) Capture by : Paul Fennell

Download or read book Calcium and Chemical Looping Technology for Power Generation and Carbon Dioxide (CO2) Capture written by Paul Fennell and published by Elsevier. This book was released on 2015-05-21 with total page 467 pages. Available in PDF, EPUB and Kindle. Book excerpt: Calcium and Chemical Looping Technology for Power Generation and Carbon Dioxide (CO2) Capture reviews the fundamental principles, systems, oxygen carriers, and carbon dioxide carriers relevant to chemical looping and combustion. Chapters review the market development, economics, and deployment of these systems, also providing detailed information on the variety of materials and processes that will help to shape the future of CO2 capture ready power plants. Reviews the fundamental principles, systems, oxygen carriers, and carbon dioxide carriers relevant to calcium and chemical looping Provides a lucid explanation of advanced concepts and developments in calcium and chemical looping, high pressure systems, and alternative CO2 carriers Presents information on the market development, economics, and deployment of these systems

Reactor and Process Design in Sustainable Energy Technology

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Publisher : Elsevier
ISBN 13 : 0444595783
Total Pages : 302 pages
Book Rating : 4.4/5 (445 download)

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Book Synopsis Reactor and Process Design in Sustainable Energy Technology by : Fan Shi

Download or read book Reactor and Process Design in Sustainable Energy Technology written by Fan Shi and published by Elsevier. This book was released on 2014-07-28 with total page 302 pages. Available in PDF, EPUB and Kindle. Book excerpt: Reactor Process Design in Sustainable Energy Technology compiles and explains current developments in reactor and process design in sustainable energy technologies, including optimization and scale-up methodologies and numerical methods. Sustainable energy technologies that require more efficient means of converting and utilizing energy can help provide for burgeoning global energy demand while reducing anthropogenic carbon dioxide emissions associated with energy production. The book, contributed by an international team of academic and industry experts in the field, brings numerous reactor design cases to readers based on their valuable experience from lab R&D scale to industry levels. It is the first to emphasize reactor engineering in sustainable energy technology discussing design. It provides comprehensive tools and information to help engineers and energy professionals learn, design, and specify chemical reactors and processes confidently. Emphasis on reactor engineering in sustainable energy technology Up-to-date overview of the latest reaction engineering techniques in sustainable energy topics Expert accounts of reactor types, processing, and optimization Figures and tables designed to comprehensively present concepts and proceduresHundreds of citations drawing on many most recent and previously published works on the subject

CO2 Separation, Purification and Conversion to Chemicals and Fuels

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Publisher : Springer
ISBN 13 : 9811332967
Total Pages : 184 pages
Book Rating : 4.8/5 (113 download)

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Book Synopsis CO2 Separation, Purification and Conversion to Chemicals and Fuels by : Franz Winter

Download or read book CO2 Separation, Purification and Conversion to Chemicals and Fuels written by Franz Winter and published by Springer. This book was released on 2018-10-30 with total page 184 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book presents the recent research on the separation, purification and downstream utilization of CO2 and other flue gases. Chapters include a detailed discussion on the purification and further conversion of CO2 to commodity chemicals and fuels. With contributions from renowned researchers in the field, the book focuses on the current challenges of catalytic high-pressure chemical conversion and biochemical conversion into high-value products. This book is of interest to researchers, professionals, and students working on carbon capture and sequestration, and is a valuable resource for policy makers and government agents working on guidelines and frameworks for carbon capture and reuse.