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PMID: 26050934 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Coupling scales for modelling heavy metal vaporization from municipal solid waste incineration in a fluid bed by CFD.

Waste management (New York, N.Y.) ·Vol. 43 ·2015-09-00 ·页码 176-87

Soria J, Gauthier D, Flamant G, Rodriguez R, Mazza G

Abstract

Municipal Solid Waste Incineration (MSWI) in fluidized bed is a very interesting technology mainly due to high combustion efficiency, great flexibility for treating several types of waste fuels and reduction in pollutants emitted with the flue gas. However, there is a great concern with respect to the fate of heavy metals (HM) contained in MSW and their environmental impact. In this study, a coupled two-scale CFD model was developed for MSWI in a bubbling fluidized bed. It presents an original scheme that combines a single particle model and a global fluidized bed model in order to represent the HM vaporization during MSW combustion. Two of the most representative HM (Cd and Pb) with bed temperatures ranging between 923 and 1073K have been considered. This new approach uses ANSYS FLUENT 14.0 as the modelling platform for the simulations along with a complete set of self-developed user-defined functions (UDFs). The simulation results are compared to the experimental data obtained previously by the research group in a lab-scale fluid bed incinerator. The comparison indicates that the proposed CFD model predicts well the evolution of the HM release for the bed temperatures analyzed. It shows that both bed temperature and bed dynamics have influence on the HM vaporization rate. It can be concluded that CFD is a rigorous tool that provides valuable information about HM vaporization and that the original two-scale simulation scheme adopted allows to better represent the actual particle behavior in a fluid bed incinerator.

Keywords
Computational fluid dynamic Fluidized bed Heavy metal vaporization Two-scale model Waste incineration
MeSH 主题词
Air Pollutants/analysis Bioreactors Computer Simulation Equipment Design Gases Incineration Kinetics Metals, Heavy/chemistry Particle Size Refuse Disposal/methods Reproducibility of Results Solid Waste Temperature Volatilization
化学物质
Air Pollutants Gases Metals, Heavy Solid Waste
作者与单位
共 5 位作者,点击展开单位 / ORCID
Soria José
Institute for Research and Development in Process Engineering, Biotechnology and Alternative Energies (PROBIEN, CONICET - UNCo), 1400 Buenos Aires St., 8300 Neuquén, Argentina. Electronic address: [email protected].
Gauthier Daniel
Processes, Materials and Solar Energy Laboratory (PROMES-CNRS, UPR 8521), 7 Four Solaire Street, Odeillo, 66120 Font-Romeu, France.
Flamant Gilles
Processes, Materials and Solar Energy Laboratory (PROMES-CNRS, UPR 8521), 7 Four Solaire Street, Odeillo, 66120 Font-Romeu, France.
Rodriguez Rosa
Chemical Engineering Institute, National University of San Juan, 1109 Libertador (O) Avenue, 5400 San Juan, Argentina.
Mazza Germán
Institute for Research and Development in Process Engineering, Biotechnology and Alternative Energies (PROBIEN, CONICET - UNCo), 1400 Buenos Aires St., 8300 Neuquén, Argentina.
Article Info
Journal
Waste management (New York, N.Y.)
Abbr.
Waste Manag
ISSN
1879-2456
Corresponding email
Published
2015-09-00
电子出版
2015-00-04
页码
176-87
Language
English
Country/Region
United States
NLM ID
9884362
Analysis Services
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