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Titlebook: Circulating Fluidized Beds; J. R. Grace,A. A. Avidan,T. M. Knowlton Book 1997 Chapman & Hall 1997 combustion.design.dynamics.fluid.fluidiz

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as arisen due to the environmental advantages associated with CFB (circulating . fluidized bed) combustion systems, the incorporation of riser reactors employing cir­ culating fluidized bed technology in petroleum refineries for fluid catalytic cracking and, to a lesser extent, the successes of CFB
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https://doi.org/10.1007/978-3-319-24780-9e high combustion efficiency, low NO. and SO. emissions, and the ability to burn a wide variety of fuels including very low grade fuels. In developed countries, stringent environmental regulations have helped promote the use of CFB technology, while in developing countries, the flexibility of burning a variety of fuels has attracted CFB customers.
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Design considerations for CFB boilers,e high combustion efficiency, low NO. and SO. emissions, and the ability to burn a wide variety of fuels including very low grade fuels. In developed countries, stringent environmental regulations have helped promote the use of CFB technology, while in developing countries, the flexibility of burning a variety of fuels has attracted CFB customers.
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PMCA3: A Mysterious Isoform of Calcium Pumpropriateness of CFB technology in some circumstances. Other forms of reactor have features that can lead to competitive advantage when used correctly. It is up to the process engineer to keep an open mind.
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,Applications of CFB technology to gas—solid reactions,ropriateness of CFB technology in some circumstances. Other forms of reactor have features that can lead to competitive advantage when used correctly. It is up to the process engineer to keep an open mind.
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Carlos M. Peláez,Carlos A. Peláezquate understanding of the gas mixing process may shed light on other issues, such as the evolution of volatiles from fuel particles or the optimal distribution of feed points of a reactant. It is therefore essential for practical design as well as for successful modelling of reactor behaviour.
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