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- W1984142010 abstract "Numerical analysis has been performed to understand flow characteristics in the reactor with bag filters in an integrated adsorption/catalytic process which can treat dioxin and <TEX>$NO_{x}$</TEX> together. Computational fluid dynamics technique was employed with Euler-Lagrangian model to consider flue gas and activated carbon particles simultaneously, so that residence time of flue gas and activated carbon particle could be obtained from the numerical analysis directly. The numerical analysis has been performed with different three particle sizes and compared each flow characteristics with particle's size. Fundamental flow patterns of flue gas and activated carbon particles, pressure distribution, residence time of flue gas and activated carbon particles, and distribution of activated carbon have been obtained from the numerical analysis. Flow patterns of flue gas and activated carbon particles in the reactor were very complicated and they moved along very various paths. Therefore, their residence time in the reactor was also various. The results obtained would be effectively used to estimate the removal efficiency in the reactor once the residence time is combined with the reaction equation." @default.
- W1984142010 created "2016-06-24" @default.
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- W1984142010 date "2007-04-30" @default.
- W1984142010 modified "2023-10-18" @default.
- W1984142010 title "Numerical Analysis on Flow Characteristics in the Reactor of an Integrated Adsorption/Catalysis Process with Bag Filters" @default.
- W1984142010 cites W1974959902 @default.
- W1984142010 doi "https://doi.org/10.5572/kosae.2007.23.2.203" @default.
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