Simulation of electrical effects with respect to fine particle separation at conditions of pressurized pulverized coal combustion

Realization of the power plant concept with pressurized pulverized coal combustion (PPCC) needs a flue gas nearly free of particulate matter with respect to gas turbine life cycle. Current studies at the pilot plant of the PPCC-development project in Dorsten, Germany, show that the limit for safe tu...

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Published inPowder technology Vol. 180; no. 1; pp. 97 - 101
Main Authors van der Zwaag, T., Haep, S., Schmidt, K.G.
Format Journal Article Conference Proceeding
LanguageEnglish
Published Lausanne Elsevier B.V 14.01.2008
Elsevier
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ISSN0032-5910
1873-328X
DOI10.1016/j.powtec.2007.03.011

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Abstract Realization of the power plant concept with pressurized pulverized coal combustion (PPCC) needs a flue gas nearly free of particulate matter with respect to gas turbine life cycle. Current studies at the pilot plant of the PPCC-development project in Dorsten, Germany, show that the limit for safe turbine operation is now reached with the used multi-stage molten ash separator. The separation principle that leads to the observed improvement of fine particle separation is a subject matter of the current scientific research. Thus computational fluid dynamics (CFD)-modelling carried out at IUTA focuses on the calculation of fine particle dynamics at high temperatures. This includes modelling of particle transport due to inertia and electrophoresis as well as charging kinetics with respect to interaction of electrically charged fine particles and different ceramic collector materials at temperatures up to 1600–1700 K. Computational fluid dynamics (cfd)-simulations were carried out that focus on fine particle dynamics at high temperatures. A model was developed that includes particle transport due to electrophoresis as well as charging kinetics with respect to interaction of electrically charged fine particles and different ceramic collector materials at temperatures up to 1600–1700 K. [Display omitted]
AbstractList Realization of the power plant concept with pressurized pulverized coal combustion (PPCC) needs a flue gas nearly free of particulate matter with respect to gas turbine life cycle. Current studies at the pilot plant of the PPCC-development project in Dorsten, Germany, show that the limit for safe turbine operation is now reached with the used multi-stage molten ash separator. The separation principle that leads to the observed improvement of fine particle separation is a subject matter of the current scientific research. Thus computational fluid dynamics (CFD)-modelling carried out at IUTA focuses on the calculation of fine particle dynamics at high temperatures. This includes modelling of particle transport due to inertia and electrophoresis as well as charging kinetics with respect to interaction of electrically charged fine particles and different ceramic collector materials at temperatures up to 1600–1700 K. Computational fluid dynamics (cfd)-simulations were carried out that focus on fine particle dynamics at high temperatures. A model was developed that includes particle transport due to electrophoresis as well as charging kinetics with respect to interaction of electrically charged fine particles and different ceramic collector materials at temperatures up to 1600–1700 K. [Display omitted]
Author Schmidt, K.G.
van der Zwaag, T.
Haep, S.
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10.1016/0021-8502(95)00541-2
10.1063/1.1446237
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Issue 1
Keywords Electro-hydrodynamics
Hot gas cleaning
Particle charging kinetics
PPCC-process
CFD-simulation
Pilot plant
Power plant
Combustion
Particle separation
Modeling
Fine particle
Ash
Coal
Collector
Electrophoresis
Ceramic materials
Life cycle (environment)
Computational fluid dynamics
Cleaning
Gaseous effluent
Particle transport
Kinetics
Hot gas
Gas turbine
Electrohydrodynamics
Separator
Language English
License https://www.elsevier.com/tdm/userlicense/1.0
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MeetingName Gas cleaning at hight temperature: Papers presented at the 6th International Symposium on Gas Cleaning at High Temperature, Osaka, Japan, 20-22 October 2005
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References Sorokin, Vancassel, Mirabel (bib3) 2003; 3
Schmid, H.-J., Zum Partikeltransport in elektrischen Abscheidern, Dissertation, University of Karlsruhe (1998).
Maisels, Jordan, Fissan (bib4) 2002; 91
Lawless (bib5) 1996; 27
van der Zwaag, Breidenbach, Haep, Schmidt (bib2) 2003
10.1016/j.powtec.2007.03.011_bib1
Sorokin (10.1016/j.powtec.2007.03.011_bib3) 2003; 3
Maisels (10.1016/j.powtec.2007.03.011_bib4) 2002; 91
van der Zwaag (10.1016/j.powtec.2007.03.011_bib2) 2003
Lawless (10.1016/j.powtec.2007.03.011_bib5) 1996; 27
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  article-title: CFD-Simulation of the Particle Separation in the Flue Gas of a Pressurized Pulverized Coal Combustion
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SubjectTerms Applied sciences
Atmospheric pollution
CFD-simulation
Chemical engineering
Electro-hydrodynamics
Exact sciences and technology
General processes of purification and dust removal
Hot gas cleaning
Miscellaneous
Particle charging kinetics
Pollution
PPCC-process
Prevention and purification methods
Solid-solid systems
Title Simulation of electrical effects with respect to fine particle separation at conditions of pressurized pulverized coal combustion
URI https://dx.doi.org/10.1016/j.powtec.2007.03.011
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