The paper provides a system of flexible self-organization of hydrodynamic, thermal and diffusion processes in gas and liquid-phase catalytic reactors the purpose of which is to self-adapt the system to the most qualitative chemical catalytic and gas-liquid reactions and search for the best energy transfer modes (resonant modes). The developed flexible system of self-organization of processes in catalytic and gas-liquid reactors implies using elastically deformable layers of catalysts, both independently made from the required materials (contributing to resonance and effective chemical reactions) and applied on blocks of compressed metal shavings with volumetric-elastic properties. This allows affecting the chemical reactions significantly and also solving a very serious environmental problem of recycling manufacturing wastes since various steel grades being mechanically processed at machine-building enterprises form a huge amount of wastes with various properties and configuration; those block scan undoubtedly be applied as elastically deformable catalyst units in manufacturing.
This paper describes the designed self-adapting automated mode control system of packed absorbers used for selective gas emission treatment. It contains the description of automated control chart of the packed absorber and the algorithm of control program of the mass exchange system. The paper covers the principle of self-adapting control and steady maintenance of emulsification (phase inversion) mode depending on existing concentrations to be collected from continuous gas phase flow.
The article represents the system for automated process parameters adjustment of packed mass exchange apparatuses intended for selective gas emissions treatment. It describes the flow chart and algorithm of adjustment program of the packed mass exchange apparatus. It also outlines the identification technique for required (optimal) flow dynamic operating modes of the mass exchange packed absorbers. The data obtained through automated adjustment of process parameters serve (are needed) for functioning of the self-adaptable automated mode control system of industrial absorbers for selective gas emissions treatment.
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