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These methods are especially valuable for optimization of chemical processes.
Residence time distributions are required for modeling, design and optimization of chemical and biochemical multiphase reactors.
Therefore EOS are widely used in design, simulation and optimization of chemical processes.
Phase equilibrium calculations are often involved in the design, simulation, and optimization of chemical processes.
Process simulation tools are widely adopted for the design and optimization of chemical processes.
This type of model can further be used for optimization of chemical compositions on plasma processes film surfaces.
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The design and optimization strategies of chemical and biological linkers, such as oligonucleotides and polypeptides, were overviewed.
The extension of a recently developed method for the dynamic optimization (DO) of chemical and biochemical processes is presented.
The results obtained differ from those presented by Johnstone et al. The correlations can be employed in the design and optimization calculations of chemical plants.
Design optimization problems of chemical processes are characterized by a large number of discrete and continuous design decisions, highly non-linear models and multi-modal continuous subspaces.
The problem of finding globally optimal constrained stable periodic control processes (globally optimal cycles) arising from the optimization of some chemical, biotechnological, and flight processes is considered.
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