Progress in an Oxygen-carrier Reaction Kinetics Experiment for Rotary-bed Chemical Looping Combustion

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ISBN 13 :
Total Pages : 44 pages
Book Rating : 4.:/5 (864 download)

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Book Synopsis Progress in an Oxygen-carrier Reaction Kinetics Experiment for Rotary-bed Chemical Looping Combustion by : Jack L. Jester-Weinstein

Download or read book Progress in an Oxygen-carrier Reaction Kinetics Experiment for Rotary-bed Chemical Looping Combustion written by Jack L. Jester-Weinstein and published by . This book was released on 2013 with total page 44 pages. Available in PDF, EPUB and Kindle. Book excerpt: The design process for an experimental platform measuring reaction kinetics in a chemical looping combustion (CLC) process is documented and justified. To enable an experiment designed to characterize the reaction kinetics of the reduction/oxidation cycle in a rotary channeled oxygen carrier, a platform was designed to deliver controlled conditions of temperature and gas flow around a central disc of oxygen-carrier material and determine the rates of oxidation and reduction using real-time gas analysis (RTGA). In order to deliver precise and accurate results, it was necessary to identify and either minimize or compensate for interfering factors such as gas turbulence, temperature fluctuation, and flow equipment response time delays. This paper serves as a progress report on the experimental reactor; the overall design process is discussed, including equipment selection, reactor design, electronics and control hardware setup, and software interface design, and the current state of the reactor is discussed, including an assessment of the current capabilities and drawbacks of the system, future work, and potential methods for improvement.

Redox Kinetics Study for Chemical-looping Combustion, Water and CO2 Splitting Using Nickel and Cerium-based Oxygen Carrier

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ISBN 13 :
Total Pages : 448 pages
Book Rating : 4.:/5 (97 download)

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Book Synopsis Redox Kinetics Study for Chemical-looping Combustion, Water and CO2 Splitting Using Nickel and Cerium-based Oxygen Carrier by : Zhenlong Zhao

Download or read book Redox Kinetics Study for Chemical-looping Combustion, Water and CO2 Splitting Using Nickel and Cerium-based Oxygen Carrier written by Zhenlong Zhao and published by . This book was released on 2016 with total page 448 pages. Available in PDF, EPUB and Kindle. Book excerpt: Chemical-looping (CL) is a novel and promising technology for several applications including oxy-combustion for carbon capture, hydrogen production and CO2 reuse. In this process, oxygen carriers are utilized to cyclically adsorb and release oxygen producing two separated exhaust streams with desirable products. A rotary reactor design with micro-channel structure was developed in the Reacting Gas Dynamics Lab (RGDL) at MIT, which exhibits superior performance over conversional designs. Preliminary simulation identified OC redox kinetics and material characteristics as keys to the success of CL technology. This thesis examines the fundamentals of the reduction and oxidation (redox) processes with the aim of achieving fast and reliable reaction kinetics for CL applications. Experiments are conducted in a button-cell fixed-bed reactor with an on-line mass spectrometer. The timeresolved kinetics are modeled with consideration of thermodynamics, surface chemistry, transport mechanism, and structural evolution. Our approach, combining well-controlled experiment and detailed kinetics modeling, enables a new methodology for identifying the rate-limiting mechanism, examining the defect electrochemistry, and designing alternative materials for chemical-looping technology. Redox study with nickel thin foils reveals that structural evolution is the determining factor. Nickel oxidation starts via nucleation of oxide grains, which overlap and annihilate the fast diffusion paths. The model shows that the reaction is limited by the decreasing ionic diffusivity. To achieve practical redox repeatability, NiO fine particles supported on YSZ nanopowder is tested, and superior kinetics and cyclic stability are observed. Fast oxygen exchange is achieved from 500 to 1000°C with sufficient utilization of the carrying capacity within 1 min. Improvement is attributed to the enhanced ionic diffusivity with YSZ. The use of ceria nanopowder exhibits an order of magnitude H2 production rate improvement as compared to the state-of-the-art. Ceria reduction is slow with a threshold temperature of 700°C. The model reveals that the charge transfer is the rate-determining step for H2 production. Improving H2 splitting requires: (i) reducing the defect formation enthalpy, and (ii) accelerating charge-transfer. The addition of Zr lowers the threshold temperature to 650°C with 60% improvement in the rates, resulting from 40% decrease in the defect formation enthalpy. Doping ceria with Pr 3+ further lowers the threshold temperature to 600°C while doubling the peak rate. The model reveals that the high concentration of surface defects achieved from either approach promotes adsorbate formation, thus accelerating the splitting steps. Similar conclusions are obtained for CO2 splitting. Using the derived kinetics, H2-syngas co-production with CH4 as fuel is examined. Two important stages are identified: the formation of the complete products on oxidized surface, and syngas on the reduced surface. CH4 reduction is found to be rate-limited by the slow fuel cracking reaction. To accelerate the kinetics, a novel perovskite-nickel composite OC is examined, in which nickel effectively catalyzes reduction, leading to an order of magnitude faster kinetics at 600-700°C. This project has clearly demonstrated that using novel materials, CL technology can provide an efficient solution to oxy-combustion based CO2 capture, and H2/syngas co-production. Specifically, the use of NiO/YSZ achieves fast kinetics, robust stability and sufficient OC utilization from 500 to 1000°C, enabling complete CO2 capture with minimum energy penalty. The ceria-, and perovskite-based OCs exhibit over an order-of-magnitude faster kinetics compared to the state-of-the-art, enabling improved H2 production/CO 2 reduction efficiency isothermally at 600-700°C. In-depth understanding gained on the redox fundamentals will shed light on the design and fabrication of new materials as well as optimization of the CL applications.

Kinetic Study of Chemical Looping Combustion Using Iron as an Oxygen Carrier

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ISBN 13 :
Total Pages : 240 pages
Book Rating : 4.:/5 (865 download)

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Book Synopsis Kinetic Study of Chemical Looping Combustion Using Iron as an Oxygen Carrier by : Amir Naji

Download or read book Kinetic Study of Chemical Looping Combustion Using Iron as an Oxygen Carrier written by Amir Naji and published by . This book was released on 2011 with total page 240 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Experimental Characterization and Chemical Kinetics Study of Chemical Looping Combustion

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ISBN 13 :
Total Pages : 117 pages
Book Rating : 4.:/5 (88 download)

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Book Synopsis Experimental Characterization and Chemical Kinetics Study of Chemical Looping Combustion by : Tianjiao Chen (S.M.)

Download or read book Experimental Characterization and Chemical Kinetics Study of Chemical Looping Combustion written by Tianjiao Chen (S.M.) and published by . This book was released on 2014 with total page 117 pages. Available in PDF, EPUB and Kindle. Book excerpt: Chemical looping combustion (CLC) is one of the most promising technologies to achieve carbon capture in fossil fuel power generation plants. A novel rotary-bed reactor concept was proposed by Zhao et. al. [1] in 2013. It is a compact gas fueled CLC reactor that could achieve high fuel conversion and carbon separation efficiencies. It is different from the widely applied and tested fluidized-bed reactor that employs metal oxides coated on particle shaped support materials as the reaction median. In the new reactor, the active metal oxidizes are coated on the surfaces of channel shaped structural material in the new reactor. Due to the different reaction mechanism, an alternative experimental platform with the capability of performing reaction kinetic analysis for disk or channel shaped samples was required needed. The sample selection, characterization and preparation methods are discussed, followed by the introduction of the experimental system design and initial calibration and tuning results. Preliminary oxidation kinetic studies are carried out using the real-time gas analysis system to obtain the concentration contours of the effluent gas species. Commercial 13 wt% copper(II) oxide particles prepared through impregnation method are used as the reaction median. The reactant gas used in the oxidation cycles is 8%, 13% and 21% oxygen in argon, operated at 700 - 800 *C; and 10% hydrogen in argon is used for the reducing cycles.

Fluidized Bed Chemical-looping Combustion

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ISBN 13 :
Total Pages : 356 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis Fluidized Bed Chemical-looping Combustion by : Mohammad Mozahar Hossain

Download or read book Fluidized Bed Chemical-looping Combustion written by Mohammad Mozahar Hossain and published by . This book was released on 2007 with total page 356 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Development of Iron-based Oxygen Carriers in Recyclability, Physical Strength and Toxicity-tolerance for Coal-direct Chemical Looping Combustion Systems

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (17 download)

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Book Synopsis Development of Iron-based Oxygen Carriers in Recyclability, Physical Strength and Toxicity-tolerance for Coal-direct Chemical Looping Combustion Systems by : Cheng Lung Chung

Download or read book Development of Iron-based Oxygen Carriers in Recyclability, Physical Strength and Toxicity-tolerance for Coal-direct Chemical Looping Combustion Systems written by Cheng Lung Chung and published by . This book was released on 2017 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This dissertation presents investigations of chemical looping technology as a transformative process for combustion of fossil fuels for power generation with CO2 capture. Specifically, the dissertation seeks to synthesize and characterize a low-cost iron-based oxygen carrier that can be employed in a commercial chemical looping combustion system with realistic material lifetime and adequate resistance to toxicity from pollutants from fossil fuels such as coal. Two secondary metal oxides (Al2O3 and TiO2) as support materials for Fe2O3 and their respective reaction-induced morphological changes are presented. A novel iron-based oxygen carrier was consequently identified to be sustainable over 3000 redox cycles in high temperatures (1000 °C) at the lab scale without chemical and physical degradation. Oxygen carrier of the same design also exhibited high resistance toward attrition from circulation and fluidization in two pilot-scale demonstration units under representative conditions. Tolerance of the active ingredients of the iron-based oxygen carriers against common toxic elements in the fossil fuel feedstock, such as alkaline and sulfur compounds from conversion of coal, through multiple fixed bed experiments under conditions representative of the counter-current moving bed reducer and thermogravimetric experiments up to 9000 ppm of H2S. The likelihood of agglomeration and interaction of alkaline metals (Na, K) with the iron-based oxygen carriers were found to be extremely low under normal operating conditions. Instead, proper distribution of coal was more crucial to avoid agglomeration caused by melting of SiO2. Sulfur deposition on iron-based oxygen carriers, although observed, was reversible through regeneration with air and did not result in degradation in the recyclability of the oxygen carriers. A potential pathway for sulfur emission via the combustor spent air was also identified. The sulfur emission and distribution of the Coal-Direct Chemical Looping (CDCL) 25 kWth sub-pilot unit which utilized the iron-based oxygen carriers was determined with a custom heat-traced gas sampling system. More than 69% of the total amount of atomic sulfur from high sulfur coal was converted to SO2 and H2S in the reducer flue gas stream while less than 5% was released as SO2 in the combustor spent air. The missing atomic sulfur in the balance was attributed to sulfur retained in coal ash as inorganic sulfur compounds. A flue gas clean-up system targeting both H2S and SO2 is therefore recommended to meet the quality of CO2-rich stream for transportation and sequestration in a commercial CDCL system. The projected sulfur emission in the combustor spent air was under the US EPA sulfur emission regulation safe to be released to the atmosphere without a costly acid removal system. The findings demonstrate the robustness of the CDCL system, together with the iron-based oxygen carriers, to handle high sulfur coal without severe performance and economic penalties.

Reduction Kinetics of CoO-NiO/Al2O3 Oxygen Carrier for Chemical-looping Combustion

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (113 download)

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Book Synopsis Reduction Kinetics of CoO-NiO/Al2O3 Oxygen Carrier for Chemical-looping Combustion by : Maruf Md. M. Hossain

Download or read book Reduction Kinetics of CoO-NiO/Al2O3 Oxygen Carrier for Chemical-looping Combustion written by Maruf Md. M. Hossain and published by . This book was released on 2006 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

A Novel Mixed Metallic Oxygen Carrier for Chemical Looping Combustion

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ISBN 13 :
Total Pages : 326 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis A Novel Mixed Metallic Oxygen Carrier for Chemical Looping Combustion by : Mohammad Rezwanul Quddus

Download or read book A Novel Mixed Metallic Oxygen Carrier for Chemical Looping Combustion written by Mohammad Rezwanul Quddus and published by . This book was released on 2013 with total page 326 pages. Available in PDF, EPUB and Kindle. Book excerpt: In last decades, significant concerns have been raised regarding the global warming effects. To date, about one - third of the total anthropogenic CO2 emission results from power generation using fossil based fuel and CO2 is regarded as the main contributor to global warming. Therefore, technologies for efficient capture of CO2 are becoming of great value. In this respect, Chemical-Looping Combustion (CLC) has received significant attention as a promising technology facilitating concurrent CO2 capture and power generation. This non - conventional technique employs a solid carrier, known as oxygen carrier, to supply oxygen and it facilitates the combustion process in absence of N2 diluted air. Therefore, the combustion products (CO2 and water) are easily separable without any extra downstream processing cost involved in other available alternatives. However, the non- vailability of suitable oxygen carriers still hinders the commercialization of CLC. This study, thus, deals with the development of a new mixed metallic oxygen carrier, Ni-Co/La-?-Al2O3. Several characterization techniques are used to evaluate the reactivity and stability of the prepared oxygen carriers under the industrial-scale conditions of a CLC processes. Apart from the beneficia l effects of La and Co, the reducibility and the structural properties of the prepared oxygen carriers are found to be influenced significantly by the different preparation methods used. N2 adsorption isotherms show that?-Al2O3 retains its structural int egrity under some specific preparation conditions. Reducibility as determined by consecutive temperature programmed techniques resembles the chemical properties of? - and?-Al2O3 for the other preparation techniques. However, no bulk phase change is detected for all the oxygen carriers studied using XRD. The SEM/EDX and H2 chemisorption analyses show the absence of metal agglomeration and suggest that the prepared oxygen carriers are highly stable under CLC operating conditions. The prepared oxygen carriers are also tested for reactivity, stability and fluidizability in the CREC Riser Simulator using multiple reduction/oxidation cycles with CLC fuel. Results obtained show expected reducibility, oxygen carrying capacity and stability. The solid-state kinetics of the reduction processes are developed using nucleation and nuclei growth model (NNGM) and unreacted shrinking core model (USCM). The NNGM model shows better adequacy over USCM in describing the mechanism of reduction process.

Attrition Rate of Oxygen Carriers in Chemical Looping Combustion Systems

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ISBN 13 : 9781339426310
Total Pages : 92 pages
Book Rating : 4.4/5 (263 download)

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Book Synopsis Attrition Rate of Oxygen Carriers in Chemical Looping Combustion Systems by : Harry Martin Feilen

Download or read book Attrition Rate of Oxygen Carriers in Chemical Looping Combustion Systems written by Harry Martin Feilen and published by . This book was released on 2016 with total page 92 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Chemical-looping Combustion

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (93 download)

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Book Synopsis Chemical-looping Combustion by : Egwono Kelvin Okpoko

Download or read book Chemical-looping Combustion written by Egwono Kelvin Okpoko and published by . This book was released on 2012 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Development and Characterisation of Oxygen-carrier Materials for Chemical-looping Combustion

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ISBN 13 : 9789172916050
Total Pages : 61 pages
Book Rating : 4.9/5 (16 download)

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Book Synopsis Development and Characterisation of Oxygen-carrier Materials for Chemical-looping Combustion by : Paul Cho

Download or read book Development and Characterisation of Oxygen-carrier Materials for Chemical-looping Combustion written by Paul Cho and published by . This book was released on 2005 with total page 61 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Chemical Looping Combustion with Copper-based Oxygen Carriers

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis Chemical Looping Combustion with Copper-based Oxygen Carriers by : Ryan Nicholas Harper

Download or read book Chemical Looping Combustion with Copper-based Oxygen Carriers written by Ryan Nicholas Harper and published by . This book was released on 2014 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Novel Oxygen Carrier Materials for Chemical Looping Combustion

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ISBN 13 :
Total Pages : 116 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis Novel Oxygen Carrier Materials for Chemical Looping Combustion by : Kelly Sedor

Download or read book Novel Oxygen Carrier Materials for Chemical Looping Combustion written by Kelly Sedor and published by . This book was released on 2006 with total page 116 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Modeling and Improving Oxygen Carrier Performance in Chemical Looping Combustion Systems

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ISBN 13 : 9781392535080
Total Pages : 0 pages
Book Rating : 4.5/5 (35 download)

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Book Synopsis Modeling and Improving Oxygen Carrier Performance in Chemical Looping Combustion Systems by : Johannes George Van der Watt

Download or read book Modeling and Improving Oxygen Carrier Performance in Chemical Looping Combustion Systems written by Johannes George Van der Watt and published by . This book was released on 2020 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Oxygen Carriers Materials for Chemical-looping Technologies

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ISBN 13 : 9789172919297
Total Pages : 57 pages
Book Rating : 4.9/5 (192 download)

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Book Synopsis Oxygen Carriers Materials for Chemical-looping Technologies by : Muhammad Qamar ul Islam Zafar

Download or read book Oxygen Carriers Materials for Chemical-looping Technologies written by Muhammad Qamar ul Islam Zafar and published by . This book was released on 2007 with total page 57 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Fluidized-Bed Reactors: Processes and Operating Conditions

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Publisher : Springer
ISBN 13 : 3319395939
Total Pages : 214 pages
Book Rating : 4.3/5 (193 download)

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Book Synopsis Fluidized-Bed Reactors: Processes and Operating Conditions by : John G. Yates

Download or read book Fluidized-Bed Reactors: Processes and Operating Conditions written by John G. Yates and published by Springer. This book was released on 2016-09-27 with total page 214 pages. Available in PDF, EPUB and Kindle. Book excerpt: The fluidized-bed reactor is the centerpiece of industrial fluidization processes. This book focuses on the design and operation of fluidized beds in many different industrial processes, emphasizing the rationale for choosing fluidized beds for each particular process. The book starts with a brief history of fluidization from its inception in the 1940’s. The authors present both the fluid dynamics of gas-solid fluidized beds and the extensive experimental studies of operating systems and they set them in the context of operating processes that use fluid-bed reactors. Chemical engineering students and postdocs as well as practicing engineers will find great interest in this book.

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.