Flue gas treatment method and device

A treatment method and technology of a treatment device are applied in the field of flue gas treatment, and can solve problems such as dew point corrosion, affecting vision, affecting air environment quality, etc.

Inactive Publication Date: 2019-08-13
HEBEI UNIV OF TECH +1
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, the moisture content of flue gas after wet desulfurization is relatively high (13-15%), and the temperature is low (45-55°C). A large amount of water vapor in the air condenses into small droplets. After the refraction and heat dissipation of light, the wet smoke appears white or gray, which is called "wet smoke plume" (commonly known as "big white smoke"), causing smog to surround and affect the environment. Vision can also cause dew point corrosion, and at the same time, it may provide a photochemical reaction environment for nitrogen oxides, sulfur dioxide and water molecules, thereby affecting the quality of the air environment

Method used

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  • Flue gas treatment method and device

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Effect test

Embodiment 1

[0064] For a boiler with a capacity of 130t / h, the flow rate of flue gas to be treated is about 180842Nm 3 / h, the temperature is 120°C; after passing through the first evaporator 1, the temperature drops to 100°C to obtain the first flue gas, and the binary mixed refrigerant R142b / R32 absorbs the heat of the flue gas to be treated in the first evaporator 1 It is about 1318kW, and the binary mixed working medium R142b / R32 after gasification is obtained; the first flue gas enters the wet desulfurization tower 2 for desulfurization, and the second flue gas is obtained, and the temperature of the second flue gas is 50°C; gasification The final binary mixed working medium R142b / R32 is compressed by the compressor 6 to obtain a high-pressure superheated gas working medium R142b / R32, which enters the first distiller 4;

[0065] The second flue gas enters the second evaporator 3 for the second heat exchange with the R600 working fluid to obtain the third flue gas, and at the same tim...

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Abstract

The invention provides a flue gas treatment method and device, and relates to the technical field of flue gas treatment. The flue gas treatment method comprises the following steps that to-be-treatedflue gas and a first working medium are subjected to first heat exchange, and first flue gas is obtained; the first flue gas is subjected to wet desulphurization, and second flue gas is obtained; thesecond flue gas and a second working medium are subjected to second heat exchange, and third flue gas is obtained; the third flue gas is heated and then discharged. By using the flue gas treatment method, the desulphurization efficiency of the flue gas can be improved, and while desulphurization is implemented by using a wet desulphurization technology, the aim of dehumidification and white smokeelimination of the flue gas is achieved.

Description

technical field [0001] The invention relates to the technical field of flue gas treatment, in particular to a flue gas treatment method and device. Background technique [0002] At present, the flue gas desulfurization process used in China is usually wet desulfurization, especially after the ultra-clean emission transformation of boilers in thermal power enterprises, almost all wet desulfurization processes have been adopted. However, the moisture content of flue gas after wet desulfurization is relatively high (13-15%), and the temperature is low (45-55°C). A large amount of water vapor in the air condenses into small droplets. After the refraction and heat dissipation of light, the wet smoke appears white or gray, which is called "wet smoke plume" (commonly known as "big white smoke"), causing smog to surround and affect the environment. Vision can also cause dew point corrosion, and at the same time, it may provide a photochemical reaction environment for nitrogen oxide...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01D53/77B01D47/05B01D53/48F27D17/00
CPCB01D47/05B01D53/265B01D53/48B01D53/77B01D2258/0283F27D17/004
Inventor 于晓慧沈伯雄
Owner HEBEI UNIV OF TECH
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