Brown Coal Char CO2-gasification Kinetics with Respect to the Char Structure. Part I: Char Structure Development

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Book Synopsis Brown Coal Char CO2-gasification Kinetics with Respect to the Char Structure. Part I: Char Structure Development by :

Download or read book Brown Coal Char CO2-gasification Kinetics with Respect to the Char Structure. Part I: Char Structure Development written by and published by . This book was released on 2015 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Brown Coal Char CO2-gasification Kinetics with Respect to the Char Structure

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Book Synopsis Brown Coal Char CO2-gasification Kinetics with Respect to the Char Structure by : Evgeniia Komarova

Download or read book Brown Coal Char CO2-gasification Kinetics with Respect to the Char Structure written by Evgeniia Komarova and published by . This book was released on 2017 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Structural Characteristics and CO2 Reactivity of Partially Gasified Pittsburgh No.8 Coal Chars Generated in a High-pressure, High-temperature Flow Reactor

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Book Synopsis Structural Characteristics and CO2 Reactivity of Partially Gasified Pittsburgh No.8 Coal Chars Generated in a High-pressure, High-temperature Flow Reactor by : Vijayaragavan Krishnamoorthy

Download or read book Structural Characteristics and CO2 Reactivity of Partially Gasified Pittsburgh No.8 Coal Chars Generated in a High-pressure, High-temperature Flow Reactor written by Vijayaragavan Krishnamoorthy and published by . This book was released on 2018 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Integrated gasification combined cycle (IGCC) is an advanced power generation technology based on gasification of coal or solid fuels. Despite many commercial operations, the knowledge of char gasification rates at high pressures and temperatures, crucial to the design and troubleshooting of the gasifiers, are relatively unknown. While many kinetic studies have been performed at atmospheric pressure and low heating rates, there are few studies that examined the reactivity of chars generated at high temperatures and elevated pressuresGasification rate of chars in entrained-flow gasifiers is dependent on both intrinsic reactivity and the gas diffusion rate of reactants into pores. Therefore, the knowledge of intrinsic reaction rate and the structural features of the char are necessary for developing a kinetic model. The aim of the thesis is to determine the intrinsic reactivity and the structural features of the chars generated at elevated pressures and temperatures pertinent to conditions of the entrained-flow gasifiers. A series of interrelated studies were conducted to characterize the gasification behavior of a widely used Pittsburgh No,8 coal. To generate chars under conditions similar to that of the gasifier, a 20 kW high-pressure, high-temperature flow reactor (HPHTFR) was designed to operate up to 1650C and 30 bar. The chars obtained at various temperatures, pressures, and pyrolysis atmospheres were characterized for physical and chemical structure using surface area analyzer, XRD, Raman, and morphological analysis. The CO2 kinetics on chars were obtained using a high pressure thermogravimetric analyzer (HPTGA). The structural properties and intrinsic kinetics of chars widely reported in the literature were generated in inert atmospheres. However, the pyrolysis of feedstock occurs in the presence of reaction gas. This difference can affect char structural properties and intrinsic reactivity. To determine the role of pyrolysis atmosphere, chars were generated in three different atomspheres-CO2/N2, Ar and N2- at 1100C and 6.2 bar. The chars generated in the CO2/N2 atmosphere showed higher conversion compared to that of chars generated in N2 and Ar atmospheres. The increased conversion in the CO2/N2 atmosphere was attributed to increased gasification of tar/soot. While the volatile yield showed some difference, char properties such as surface area, swelling ratio, defects to graphitic band ratio and crystallite sizes showed no difference. The kinetic parameters of the chars were obtained using the nth order model. The activation energy was found to be independent of pyrolysis atmospheres. The order of reaction was found to be significantly affected by the pyrolysis atmosphere. The order of reaction followed the trend: CO2/N2> N2 Ar. The order of the reaction was found to correlate with surface area evolution.Gasification of coal can be impacted by the organic and inorganic compositional heterogeneity, which further impact the char morphology, and the intrinsic reactivity. To account for the compositional heterogeneity, chars were generated from various size fractions (-106+75, -150+106, -212+150, -420+212 m at 1300C and 11.3 bar) and density fractions (1.3 g/cc, 1.3-1.6 g/cc, 1.6g/cc of -106+75 m at 1300C and 11.3 bar). Chars were also generated over a range of temperatures (1100, 1300, and 1400C at 11.3 bar for the -150+106 m fraction), pressures (3.4, 6.2, 11.3, 15.5, and 21.7 bar at 1300C for -150+106 m fraction) to study the effect of temperature and pressure on char structures and reactivity. Chars were characterized for morphology, pore structure (i.e. surface area and pore volume), reflectance, and reactivity using oil immersion microscopy, N2 adsorption technique, reflectance microscopy, and thermogravimetric analyzer, respectively. The swelling ratio, pore volume, and surface area increased up to certain pressure while these parameters decreased with particle size and density fraction. The intrinsic reactivity of chars increased with inorganic matter and feed particle size, while it decreased with increase in char generation temperature. The intrinsic gasification rate is an important parameter for designing a kinetic model. Chars were obtained by partially gasifying Pittsburgh No.8 coal in CO2 atmosphere at 1300C and over a range of pressures (3.4, 6.2, 11.3, 15.5, and 21.7 bar) in the HPHTFR. The intrinsic reaction rate of those chars with CO2 was obtained at the char generation pressure using the HPTGA. The kinetic parameters were obtained using the nth order model. The intrinsic reaction rate, and activation energy were found to be independent of the char generation pressure. The order of reaction was obtained by varying CO2 partial pressures. The order of reaction decreased with increase in char generation pressure. The comparison of initial char with the char obtained at ~20% conversion in the HPTGA for surface area and pore volume showed that the reaction primarily occurs in microporous regions. The order of reaction also closely followed the surface area during gasification in the HPTGA.Through this research, a comprehensive assessment of the entrained-flow gasification behavior of Pittsburgh No.8 coal has been performed using proven experimental techniques under conditions of industrial interest. The structural features and kinetics were obtained. The generated data provide optimum, and trends that can be used as direct inputs to kinetic modelling and gasifier design applications.

Structure and Properties of Various Coal Chars

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Total Pages : 42 pages
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Book Synopsis Structure and Properties of Various Coal Chars by : W. O. Stacy

Download or read book Structure and Properties of Various Coal Chars written by W. O. Stacy and published by . This book was released on 1972 with total page 42 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Fossil Energy Update

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ISBN 13 :
Total Pages : 806 pages
Book Rating : 4.:/5 (31 download)

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Book Synopsis Fossil Energy Update by :

Download or read book Fossil Energy Update written by and published by . This book was released on 1976 with total page 806 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Evaluation of Coal Char Gasification Kinetics and Pore Development in High Pressure Steam and Carbon Dioxide

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Total Pages : 138 pages
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Book Synopsis Evaluation of Coal Char Gasification Kinetics and Pore Development in High Pressure Steam and Carbon Dioxide by :

Download or read book Evaluation of Coal Char Gasification Kinetics and Pore Development in High Pressure Steam and Carbon Dioxide written by and published by . This book was released on 2020 with total page 138 pages. Available in PDF, EPUB and Kindle. Book excerpt: High pressure steam and CO2 gasification kinetics -- Intrinsic reaction rates -- Pore development -- Highveld coal char.

Porosity, Morphology, and Structural Transformations of Bituminous Coal Char Conversion Under a Pore Diffusion Controlled Regime

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Book Synopsis Porosity, Morphology, and Structural Transformations of Bituminous Coal Char Conversion Under a Pore Diffusion Controlled Regime by : Bowarnrat Thanasattayaviboon

Download or read book Porosity, Morphology, and Structural Transformations of Bituminous Coal Char Conversion Under a Pore Diffusion Controlled Regime written by Bowarnrat Thanasattayaviboon and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Gasification and oxy-fuel combustion technologies are a promising approach for electricity generation with improved readiness for CO2 capture and for subsequent geologic storage. Owning to limited oxy-fuel combustion knowledge, comparative evaluations on the same coal char under the pore diffusion regime studies can be useful to transfer knowledge. The comparative evaluations on reactivity, porosity transformations, morphology changes, crystallinity development, particle size distributions, and fragmentation extents of Pittsburgh no. 8 coal char during CO2 gasification conversion and char burnout in oxy-fuel combustion (21% O2/79% CO2 v/v) under the pore diffusion controlled regime were performed in a horizontal tube furnace. The initial coal char was created in an entrained-flow gasifier at 1500 C. By using the same coal char, the behavioral differences are mostly influenced by the reactant gases. The initial char was mostly thick-walled cenospheres (>80% of particles). The relative reactivities of oxy-fuel combustion/CO2 gasification were 23 times in the early conversion stage (~10% gasification-, burnout-induced conversion (daf)) and 62 times in the later stage (~60% gasification-, burnout-induced conversion (daf)). The reactivity of the char-CO2 gasification was partially impacted by annealing due to increasing degree of ordering identified by the increasing crystalline width (La) and the increasing relative amount of large aromatic rings (6 rings). The crystalline width increased from 2.56 to 2.94 nm in the CO2 gasification while it decreased from 2.56 to 2.41 nm in the oxy-fuel combustion. The relative amount of large aromatic rings increased 35% for the CO2 gasification and 14% for the oxy-fuel combustion, which influenced the reactivity particularly in the CO2 gasification-induced conversions. Pore size distributions were widely developed from microporosity to macroporosity in the CO2 gasification while the oxy-fuel combustion preferentially developed macroporosity. As expected due to the different porosity development, particle fragmentation extents also differed. These were more pronounced in the CO2 gasification 6 to 12% than in the oxy-fuel combustion 1.9 to 2.5% of particles. The char fragmentation in terms of size and shape, determined through an image processing technique on SEM micrographs. The aspect ratio can distinguish between particles (1.43) and fragments (1.43) for this coal under these conversions.

Effects of Volatile-char Interactions on Char Structure and Reactivity During the Gasification of Low Rank Fuels

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Total Pages : 268 pages
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Book Synopsis Effects of Volatile-char Interactions on Char Structure and Reactivity During the Gasification of Low Rank Fuels by : Shu Zhang

Download or read book Effects of Volatile-char Interactions on Char Structure and Reactivity During the Gasification of Low Rank Fuels written by Shu Zhang and published by . This book was released on 2010 with total page 268 pages. Available in PDF, EPUB and Kindle. Book excerpt: Gasification is an efficient thermochemical conversion process to produce syngas that can then be used to generate electricity or to produce liquid fuels and chemicals. Gasification can be applied to many carbon-containing resources: biomass, peat, coal, anthracite, oil residues and municipal solid wastes. Among them, coal (especially brown coal due to its high reactivity) and biomass are the most reliable and abundant feedstocks for gasification. Advanced gasification technologies are ideal alternatives to the traditional way of fossil fuel utilisation because gasification-based technologies can greatly improve fuel utilization efficiency and meet the increasingly stringent environmental regulations, including CO2 emission. In the meanwhile, a tailored gasification process for biomass is also highly demanded considering the neutral release of greenhouse gas from biomass utilisation. More importantly, net reduction of CO2 could be achieved if biomass is utilised in conjunction with a carbon sequestration technology. Brown coal and biomass have many important unique features compared with the internationally traded black coals. The examples of these features include high contents of moisture, oxygen and aliphatic structure, low contents of aromatic structures, and the presence of well dispersed alkali and alkaline earth metallic species. These structural features and properties make the gasification behaviour of brown coal and biomass distinctly different from that of high-rank coals. Because the volatiles from brown coal and biomass are highly reactive and their chars are unstable, the interactions between volatiles and char can be one of the most important characteristics of brown coal and biomass gasification. The purpose of this study was to investigate the volatile-char interactions during the pyrolysis and gasification of Victorian brown coal and mallee biomass. Both inter-particle and intra-particle volatile-char interactions were examined in detail. Pyrolysis and gasification experiments were carried out in novel reactors where the extent of volatile-char interactions can be controlled relatively accurately. The structural features of char after various extents of volatile-char interactions were characterised with FT-Raman spectroscopy. The retention of alkali and alkaline earth metallic species in char was also quantified. In addition to the gasification rate of char with steam, the intrinsic reactivity of selected chars in air (O2) at low temperature was also measured.The results from this study indicate that the volatile-char interactions could inhibit char conversion during gasification through three possible ways: H radical occupation on reactive sites, changes in char structure and volatilisation of inherent catalysts. Intra- and inter-particle volatile-char interactions were all important for the gasification of char when using large particles. These results indicate that the volatile-char interactions must be considered in the design and operation of gasifiers for Victorian brown coal and biomass.

The Kinetics of the Carbon Dioxide/coal Char Gasification Reaction

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Total Pages : 282 pages
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Book Synopsis The Kinetics of the Carbon Dioxide/coal Char Gasification Reaction by : John T. Malito

Download or read book The Kinetics of the Carbon Dioxide/coal Char Gasification Reaction written by John T. Malito and published by . This book was released on 1982 with total page 282 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Effects of Char Structure and Catalytic Species on the Gasification Reactivity of Victorian Brown Coals

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Total Pages : 406 pages
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Book Synopsis Effects of Char Structure and Catalytic Species on the Gasification Reactivity of Victorian Brown Coals by : Xiaojiang Li

Download or read book Effects of Char Structure and Catalytic Species on the Gasification Reactivity of Victorian Brown Coals written by Xiaojiang Li and published by . This book was released on 2005 with total page 406 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Evaluation of Several Kinetic Models for Coal Char Gasification with CO2

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Total Pages : 150 pages
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Book Synopsis Evaluation of Several Kinetic Models for Coal Char Gasification with CO2 by : Paul E. Scott

Download or read book Evaluation of Several Kinetic Models for Coal Char Gasification with CO2 written by Paul E. Scott and published by . This book was released on 1983 with total page 150 pages. Available in PDF, EPUB and Kindle. Book excerpt:

The Science of Victorian Brown Coal

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Publisher : Butterworth-Heinemann
ISBN 13 : 1483162230
Total Pages : 767 pages
Book Rating : 4.4/5 (831 download)

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Book Synopsis The Science of Victorian Brown Coal by : R.A. Durie

Download or read book The Science of Victorian Brown Coal written by R.A. Durie and published by Butterworth-Heinemann. This book was released on 2013-10-22 with total page 767 pages. Available in PDF, EPUB and Kindle. Book excerpt: The Science of Victorian Brown Coal provides extensive information on Victorian brown coal, which is a major fossil fuel resource by any standard and constitutes about 97% of Victoria's recoverable energy reserves. Energy from brown coal has been the mainstay of the Victorian economy, providing low-cost electricity to the state grid, briquettes as a fuel for industry and town gas prior to the discovery of natural gas. Because of the unique properties of the coal, it has been necessary to develop an in-depth scientific knowledge of the coal and its behavior, as well as innovative technologies for its effective utilization. The economic benefit brown coal has provided to Victoria is demonstrated throughout the chapters. This book aims to provide the springboard for further research and lead to a new era in the development of value-added products and the more efficient utilization of this major resource. This text is a useful reference for students or individuals conducting research on fossil fuel energy, specifically on brown coals.

Kinetics of Char Gasification Reactions Under Conditions of Underground Coal Gasification

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Book Synopsis Kinetics of Char Gasification Reactions Under Conditions of Underground Coal Gasification by :

Download or read book Kinetics of Char Gasification Reactions Under Conditions of Underground Coal Gasification written by and published by . This book was released on 1977 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This project is directed toward support studies for the national endeavor on in situ coal gasification. The objective is to determine reaction-controlling variables and reaction kinetics for gasification of chars resulting from pyrolysis of coal in underground gasification. The data obtained from these studies are used in the mathematical modeling of in situ gasification systems, in order to understand and interpret field experimental data and to design future field studies. The reactions being studied include steam-char, CO/sub 2/-char, and water gas shift reactions, as well as methane-producing reactions such as the methanation of CO or the hydrogen-char reaction. The kinetics studies are carried out in a packed bed differential reactor in which steam, H/sub 2/, CO/sub 2/, and/or other reactants are blended with N/sub 2/ to obtain the desired total pressure and partial pressures of reactants. The preparation of the char is carried out immediately prior to gasification in the reactor under conditions of pressure, heating rate, and sweeping gas composition similar to those encountered in underground gasification. The coals studied include Wyodak and Hanna subbituminous coals and Pittsburgh seam high volatile bituminous coal. Kinetic data are reported for the reaction of steam with chars prepared from the Wyodak and Hanna coals. The dependence of the reaction rate on the partial pressures of reactant steam and product hydrogen is described. The temperature dependence of the reaction rates indicates that diffusion of reactants and products through pore structure of Hanna char limits the reaction more severely than in the case of the Wyodak char. The rate of reaction of steam with Wyodak char is approximately 50% greater than the rate observed with the Hanna char. The reaction order with respect to steam at low partial pressures of steam varies from 0.5 to approximately 1. Preliminary information is also reported for reaction of steam with chars prepared from Pittsburgh seam coal.

Gasification Kinetics and Pore Development of a Highveld Coal Char at High Pressures

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Total Pages : 0 pages
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Book Synopsis Gasification Kinetics and Pore Development of a Highveld Coal Char at High Pressures by : S. F. Conradie

Download or read book Gasification Kinetics and Pore Development of a Highveld Coal Char at High Pressures written by S. F. Conradie and published by . This book was released on 2018 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Final year report -- Chemical and Minerals Engineering.

Pore Structure and Catalyst Effects on Char Gasification Kinetics

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Total Pages : 854 pages
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Book Synopsis Pore Structure and Catalyst Effects on Char Gasification Kinetics by : Jow-Lih Su

Download or read book Pore Structure and Catalyst Effects on Char Gasification Kinetics written by Jow-Lih Su and published by . This book was released on 1983 with total page 854 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Structure Based Predictive Model for Coal Char Combustion

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Book Synopsis Structure Based Predictive Model for Coal Char Combustion by :

Download or read book Structure Based Predictive Model for Coal Char Combustion written by and published by . This book was released on 2000 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This unique collaborative project has taken a very fundamental look at the origin of structure, and combustion reactivity of coal chars. It was a combined experimental and theoretical effort involving three universities and collaborators from universities outside the U.S. and from U.S. National Laboratories and contract research companies. The project goal was to improve our understanding of char structure and behavior by examining the fundamental chemistry of its polyaromatic building blocks. The project team investigated the elementary oxidative attack on polyaromatic systems, and coupled with a study of the assembly processes that convert these polyaromatic clusters to mature carbon materials (or chars). We believe that the work done in this project has defined a powerful new science-based approach to the understanding of char behavior. The work on aromatic oxidation pathways made extensive use of computational chemistry, and was led by Professor Christopher Hadad in the Department of Chemistry at Ohio State University. Laboratory experiments on char structure, properties, and combustion reactivity were carried out at both OSU and Brown, led by Principle Investigators Joseph Calo, Robert Essenhigh, and Robert Hurt. Modeling activities were divided into two parts: first unique models of crystal structure development were formulated by the team at Brown (PI'S Hurt and Calo) with input from Boston University and significant collaboration with Dr. Alan Kerstein at Sandia and with Dr. Zhong-Ying chen at SAIC. Secondly, new combustion models were developed and tested, led by Professor Essenhigh at OSU, Dieter Foertsch (a collaborator at the University of Stuttgart), and Professor Hurt at Brown. One product of this work is the CBK8 model of carbon burnout, which has already found practical use in CFD codes and in other numerical models of pulverized fuel combustion processes, such as EPRI's NOxLOI Predictor. The remainder of the report consists of detailed technical discussion organized into chapters whose organization is dictated by the nature of the research performed. Chapter 2 is entitled 'Experimental Work on Char Structure, Properties, and Reactivity', and focuses on fundamental structural studies at Brown using both phenollformaldehyde resin chars as model carbons and real coal chars. This work includes the first known in site high resolution TEM studies of carbonization processes, and some intriguing work on 'memory loss', a form of interaction between annealing and oxidation phenomena in chars. Chapter 3 entitled 'Computational Chemistry of Aromatic Oxidation Pathways' presents in detail the OSU work targeted at understanding the elementary molecular pathways of aromatic oxidation. Chapter 4 describes the 'Mesoscale Structural Models', using a combination of thermodynamic (equilibrium) approaches based on liquid crystal theory and kinetic simulations accounting for the effects of limited layer mobility in many fossil fuel derived carbons containing cross-linking agents. Chapter 5 entitled 'Combustion Modeling' presents work on extinction in the late stages of combustion and the development and features of the CBK8 model.

Coal Char Structure and Reactivity

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Total Pages : 346 pages
Book Rating : 4.:/5 (144 download)

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Book Synopsis Coal Char Structure and Reactivity by : Ian H. Leslie

Download or read book Coal Char Structure and Reactivity written by Ian H. Leslie and published by . This book was released on 1984 with total page 346 pages. Available in PDF, EPUB and Kindle. Book excerpt: