For the development and optimization of process engineering plants in the chemical industry, kinetic modeling is an indispensable tool in the quantitative description of the temporal sequence of complex reactions. Classical model calculations are usually based on the “best” experimental value and are supplemented by experimenting on the model using computer-aided methods. Currently, the use of nonclassical solution methods for the kinetic evaluation of chemical reactions is becoming the focus of scientific and practical interest. These are aimed at formulating redundancy-free model structures of complex reaction systems using interval and sensitivity analysis of kinetic model parameters.

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Kinetic Modeling in Chemical Reaction Engineering

  • Ekaterina Borovinskaya

摘要

For the development and optimization of process engineering plants in the chemical industry, kinetic modeling is an indispensable tool in the quantitative description of the temporal sequence of complex reactions. Classical model calculations are usually based on the “best” experimental value and are supplemented by experimenting on the model using computer-aided methods. Currently, the use of nonclassical solution methods for the kinetic evaluation of chemical reactions is becoming the focus of scientific and practical interest. These are aimed at formulating redundancy-free model structures of complex reaction systems using interval and sensitivity analysis of kinetic model parameters.