The invention discloses a high-temperature
flue gas heat joint
optimization system and relates to the technical field of
industrial waste heat utilization. The high-temperature
flue gas heat joint
optimization system is designed to solve the problems that an existing
flue gas
waste heat recovery system is low in
waste heat utilization rate, serious in
pollution, high in production cost and the like. The high-temperature
flue gas heat joint
optimization system comprises a first production device and a second production device. The first production device comprises a process material pump, a
heat exchanger unit and a
heating furnace which are connected through pipelines. The second production device comprises a
waste heat boiler and a steam pocket which are connected through a pipeline, wherein the waste heat boiler is provided with a superheat section, an
evaporation section and a
coal economizing section. High-temperature
flue gas passes through the superheat section, the
evaporation section and the
coal economizing section, connected in sequence, of the waste heat boiler and the steam pocket, conducts heat exchange with a first process material, saturated steam and deoxidized water, and enters a
chimney to be exhausted. Heat of the
flue gas is used for heating the first process material, the temperature of the first process material entering the
heating furnace is increased, and thus the waste heat
utilization rate of the high-temperature flue gas is increased, the consumption of
fuel gas of the
heating furnace is reduced, energy is saved, environmental friendliness is achieved, and production cost is lowered.