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Optic Diagnostics on Pulverized Coal...
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Optic Diagnostics on Pulverized Coal Particles Combustion Dynamics and Alkali Metal Release Behavior
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Optic Diagnostics on Pulverized Coal Particles Combustion Dynamics and Alkali Metal Release Behavior/ by Ye Yuan.
Author:
Yuan, Ye.
Description:
XXI, 151 p. 98 illus., 87 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Characterization and Evaluation of Materials. -
Online resource:
https://doi.org/10.1007/978-981-10-4813-5
ISBN:
9789811048135
Optic Diagnostics on Pulverized Coal Particles Combustion Dynamics and Alkali Metal Release Behavior
Yuan, Ye.
Optic Diagnostics on Pulverized Coal Particles Combustion Dynamics and Alkali Metal Release Behavior
[electronic resource] /by Ye Yuan. - 1st ed. 2019. - XXI, 151 p. 98 illus., 87 illus. in color.online resource. - Springer Theses, Recognizing Outstanding Ph.D. Research,2190-5053. - Springer Theses, Recognizing Outstanding Ph.D. Research,.
Introduction -- Theoretical and experimental research on coal particle devolatilization -- Theoretical and experimental research on coal particle ignition mechanism -- Dynamic behavior of sodium release during coal combustion -- Theoretical and experimental research on surface temperature during char combustion -- Conclusion.
This book focuses on pulverized coal particle devolatilization, ignition, alkali metal release behavior, and burnout temperature using several novel optic diagnostic methods on a Hencken multi-flat flame burner. Firstly, it presents a novel multi-filter technique to detect the CH* signal during coal ignition, which can be used to characterize the volatile release and reaction process. It then offers observations on the prevalent transition from heterogeneous ignition to hetero-homogeneous ignition due to ambient temperature based on visible light signal diagnostics. By utilizing the gap between the excitation energies of the gas and particle phases, a new low-intensity laser-induced breakdown spectroscopy (PS-LIBS) is developed to identify the presence of sodium in the particle or gas phase along the combustion process. For the first time, the in-situ verification of the gas phase Na release accompanying coal devolatilization is fulfilled when the ambient temperature is high enough. In fact, particle temperature plays a vital role in the coal burnout process and ash particle formation. The last part of the book uses RGB color pyrometry and the CBK model to study the char particle temperature on a Hencken burner. It offers readers valuable information on the technique of coal ignition and combustion diagnostics as well as coal combustion characteristics.
ISBN: 9789811048135
Standard No.: 10.1007/978-981-10-4813-5doiSubjects--Topical Terms:
674449
Characterization and Evaluation of Materials.
LC Class. No.: TK1001-1841
Dewey Class. No.: 621.042
Optic Diagnostics on Pulverized Coal Particles Combustion Dynamics and Alkali Metal Release Behavior
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This book focuses on pulverized coal particle devolatilization, ignition, alkali metal release behavior, and burnout temperature using several novel optic diagnostic methods on a Hencken multi-flat flame burner. Firstly, it presents a novel multi-filter technique to detect the CH* signal during coal ignition, which can be used to characterize the volatile release and reaction process. It then offers observations on the prevalent transition from heterogeneous ignition to hetero-homogeneous ignition due to ambient temperature based on visible light signal diagnostics. By utilizing the gap between the excitation energies of the gas and particle phases, a new low-intensity laser-induced breakdown spectroscopy (PS-LIBS) is developed to identify the presence of sodium in the particle or gas phase along the combustion process. For the first time, the in-situ verification of the gas phase Na release accompanying coal devolatilization is fulfilled when the ambient temperature is high enough. In fact, particle temperature plays a vital role in the coal burnout process and ash particle formation. The last part of the book uses RGB color pyrometry and the CBK model to study the char particle temperature on a Hencken burner. It offers readers valuable information on the technique of coal ignition and combustion diagnostics as well as coal combustion characteristics.
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