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Titlebook: Chemical Reactor Development; from Laboratory Synt Dirk Thoenes Book 1994 Springer Science+Business Media B.V. 1994 catalysis.chemical engi

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Polymerization Reactorsn addition, the requirements for product quality are usually very high. Though it is common practice to develop reactors for these processes in a purely empirical way, it is nevertheless possible to apply reactor engineering principles here with some success, even if only qualitative predictions can be made.
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Business benefits of a PLM system,ulting reactor models can be used for approximating real reactors, in which transport phenomena are not rate determining. Therefore these reactor models are applicable irrespective of the scale of operation.
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The Physical Contacting of Reactants-phase system may also be used for separating reaction products in the reactor. Mass transfer in solid/gas, solid/liquid and liquid/gas dispersion processes are reviewed, and a brief survey is given of three phase-contacting. All these physical processes are considered without the occurrence of chemical reactions.
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The Formation of Another Phase in the Reactorture of the formed solid particles. These phenomena are determined by the conditions in the reactor, including the hydrodynamical regime. Therefore, reactor conditions during precipitation processes generally determine the quality of solid products. This may have important consequences for reactor design.
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Enthalpy Management and Temperature Controlrature control of reactors are discussed: the well mixed isothermal reactor, the tubular reactor with a controlled temperature gradient, and the semi-batch reactor with a certain temperature profile in time.
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