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Device for improving desulfurization efficiency of circulating fluidized bed boiler and method for improving desulfurization efficiency

A technology of circulating fluidized bed and desulfurization efficiency, applied in fluidized bed combustion equipment, combustion method, fuel burned in molten state, etc., can solve the problem that limestone cannot fully contact with flue gas, limit the utilization rate of limestone, and limit desulfurization in the furnace Efficiency and other issues, to achieve the effect of improving specific surface area, increasing specific surface area, and fast calcination speed

Inactive Publication Date: 2016-12-14
HARBIN BOILER
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The interior of the limestone cannot fully contact with the flue gas, and the desulfurization reaction speed is slow, which limits the improvement of the desulfurization efficiency in the furnace
Limestone is calcined in the return leg and the furnace to produce CaO for desulfurization reaction. Because it takes a long time for the limestone to be completely calcined, the fine-grained limestone is difficult to be captured by the cyclone separator, and it is easy to be directly discharged out of the boiler together with fly ash without reaction. Due to the limitation of the specific surface area of ​​the limestone, the interior of the limestone cannot fully contact with the flue gas, and the desulfurization reaction speed is slow. The above reasons limit the further improvement of the desulfurization efficiency in the furnace, and also limit the utilization rate of the limestone. How to further improve the desulfurization in the furnace Efficiency, currently there is no effective technical means

Method used

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  • Device for improving desulfurization efficiency of circulating fluidized bed boiler and method for improving desulfurization efficiency

Examples

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Embodiment 1

[0020] A device for improving the desulfurization efficiency of a circulating fluidized bed boiler, which consists of: a water supply pipeline 1, the inlet of the water supply pipeline is connected to the feedwater pump 2, and the water supply pump is connected to the inlet of the water storage tank 3 through the water supply pipeline. The outlet of the water storage tank is connected to one end of the booster water pump 5 through the water supply pipeline 4, and the other end of the booster water pump is connected to the flow regulating valve 6, and the flow regulating valve is connected to the humidifying water spray gun 7 through the water supply pipeline, so The humidifying water spray gun is installed in the return leg 8, and the return leg is installed below the fluidized bed boiler 9.

Embodiment 2

[0022] According to the device for improving the desulfurization efficiency of circulating fluidized bed boilers described in Example 1, the water supply pipeline is DN125mm, the flow rate of the water supply pump is 50m3 / h, the volume of the water storage tank is 100 m3, and the water supply The pipeline is DN40mm, the flow rate of the booster pump is 2 m3 / h, and the flow adjustment range of the flow regulating valve is 0.5-2 m3 / h.

Embodiment 3

[0024] A method for improving the desulfurization efficiency device and desulfurization efficiency of a circulating fluidized bed boiler described in Embodiment 1-2. This method is first to pressurize the water in the water storage tank through a booster water pump, and then enter the Humidifying water spray gun, the humidifying water spray gun is sprayed into the return leg under the fluidized bed boiler, and the water evaporates into water vapor in the return leg, providing a high water vapor environment for the calcination of limestone , so as to improve the desulfurization reaction speed and improve the utilization rate of limestone; the water storage tank can meet the injection water consumption of a single unit for 2 days, the water consumption is about 2t / h, and the water supply time is 2 hours;

[0025] Water is supplied to the water storage tank through the water supply pipeline and the water supply pump. The water in the water storage tank is pressed into the water su...

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Abstract

The invention relates to a device for improving desulfurization efficiency of a circulating fluidized bed boiler and a method for improving desulfurization efficiency. At present, an in-furnace desulfurization technology of the fluidized bed boiler adopts the method that lime stone is directly added from a material return valve, the interior of the lime stone cannot be in full contact with flue gas, the desulfurization reaction speed is relatively low, and improvement of the in-furnace desulfurization efficiency is limited. The device comprises a water feeding pipeline (1), wherein an inlet of the water feeding pipeline is connected with water feeding pumps (2); the water feeding pumps are connected with an inlet of a water storage tank (3) through the water feeding pipeline; an outlet of the water storage tank is connected with one ends of booster water pumps (5) through a water supply pipeline (4); the other ends of the booster water pumps are connected with flow adjusting valves (6); the flow adjusting valves are connected with a humidifying water spray gun (7) through the water supply pipeline; the humidifying water spray gun is mounted inside a material return leg (8); and the material return leg is mounted at the lower part of the fluidized bed boiler (9). The device is used for improving desulfurization efficiency of the circulating fluidized bed boiler.

Description

Technical field: [0001] The invention relates to a device and a method for improving the desulfurization efficiency of a circulating fluidized bed boiler. Background technique: [0002] At present, many desulfurization technologies in the fluidized bed boiler adopt the method of directly adding limestone from the return valve. [0003] The interior of the limestone cannot fully contact with the flue gas, and the desulfurization reaction speed is slow, which limits the improvement of the desulfurization efficiency in the furnace. The limestone is calcined in the return leg and the furnace to produce CaO for desulfurization reaction. Because it takes a long time for the limestone to be completely calcined, the fine-grained limestone is difficult to be captured by the cyclone separator, and it is easy to be directly discharged from the boiler together with the fly ash without reaction. Due to the limitation of the specific surface area of ​​the limestone, the interior of the l...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F23C10/18F23J15/02
CPCF23C10/18F23J15/02F23J2215/10
Inventor 姜孝国高新宇王刚路金勋
Owner HARBIN BOILER
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