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- W357995004 abstract "The aim of this research is to demonstrate that Formaldehyde (HCHO) emission rates of porous materials are influenced strongly by coefficient of air change performance within test chamber. For the study, a full-scale stainless chamber (19.68m^3), a boundary layer type test small chamber (0.4m^3), and a field and laboratory emission cell (FLEC, 3.5×10^<-5>m^3) are used. The paper presents results of measurements of HCHO emission rates from Medium Density Fiberboard (MDF, JIS grade E2) in the three different chambers. The coefficient of air change performance within the three chambers is examined by CFD analysis. The pore volume fraction and tortuosity factor of MDF are measured by mercury intrusion porosimetry (MIP) method. The Knudsen diffusion within MDF could be ignored. The convection mass transfer coefficient of HCHO from MDF is computed by CFD and emission experiment. It is demonstrated that the convection resistance over the Boundary surface of porous materials could not be ignored when compared with the diffusion resistance." @default.
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- W357995004 date "2004-01-01" @default.
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- W357995004 title "EXAMINATION OF INFLUENCE OF MASS TRANSFER COEFFICIENT ON EMISSION RATE IN MEDIUM DENSITY FIBERBOARD BY TEST CHAMBER EXPERIMENT AND CFD ANALYSIS : Study on test chamber method for measuring emission rate of formaldehyde" @default.
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- W357995004 doi "https://doi.org/10.3130/aije.69.67_4" @default.
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