METHOD FOR OPTIMIZATION OF ENERGY CONSUMPTION AND GREENHOUSE GAS EMISSION FOR TECHNOLOGICAL OBJECT AND SYSTEM FOR ITS IMPLEMENTATION Russian patent published in 2022 - IPC G06Q10/06 

Abstract RU 2783369 C2

FIELD: chemical industry.

SUBSTANCE: invention relates to the field of chemical industry, chemical ecological and environmental protection technologies, in particular to a method for optimization of energy consumption and greenhouse gas emission for a technological object and a system for its implementation. The method contains following steps: collection of initial data on technological operation parameters for a technological object; modeling of the specified technological object and a reference technological object based on collected initial data; calculation of energy efficiency indicators of the specified technological object and the reference technological object; determination of significant sources of energy efficiency increase, calculation of current and reference energy consumption for the technological object, and calculation of current and reference energy consumption for each determined significant source of energy efficiency increase; determination of a potential of energy efficiency increase for each significant source of energy efficiency increase; determination of the common potential of energy efficiency increase and potential of reduction in greenhouse gas emission for the technological object based on determined current and reference energy consumption of the technological object, taking into account potentials of energy efficiency increase for each significant source of energy efficiency increase; selection of measures for optimization of energy consumption and greenhouse gas emission for the technological object based on the determined common potential of energy efficiency increase of the technological object and potential of reduction in greenhouse gas emission.

EFFECT: increase in energy efficiency and reduction in greenhouse gas emission for a technological object.

14 cl, 6 dwg

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RU 2 783 369 C2

Authors

Kanishchev Maksim Viktorovich

Chibisov Roman Evgenevich

Ulev Leonid Mikhajlovich

Dates

2022-11-11Published

2021-02-26Filed