CN210303080U - High-efficient sulphur removal device - Google Patents
High-efficient sulphur removal device Download PDFInfo
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- CN210303080U CN210303080U CN201921155656.5U CN201921155656U CN210303080U CN 210303080 U CN210303080 U CN 210303080U CN 201921155656 U CN201921155656 U CN 201921155656U CN 210303080 U CN210303080 U CN 210303080U
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Abstract
The utility model discloses a high-efficient sulphur removal device, it includes intake pipe etc, an intake pipe, the rotating electrical machines all is located the top of sulphur removal tower, the one end and the rotating electrical machines of connecting axle are connected, the other end and the shower nozzle group link of connecting axle, the one end and the water pump of water pipe are connected, the other end and the shower nozzle group link of water pipe, the connecting axle, a water pipe, the shower nozzle group, the dust removal net, the gland packing all is located the sulphur removal tower, the dust removal net is located between shower nozzle group and the gland packing, the access hole is located one side of sulphur removal tower, the outlet duct, the overflow mouth all is located the opposite side of sulphur removal tower, the outlet duct is connected with air purifier, the drain box is located the bottom. The utility model provides the high sulphur removal effect, the environmental protection.
Description
Technical Field
The utility model relates to a sulphur removal device especially relates to a high-efficient sulphur removal device.
Background
Boilers or thermal power plants using coal or petroleum as fuel emit a large amount of flue gas. These fumes contain harmful substances such as SOx, NOx, HCl and HF, in which SOx is a main substance that forms acid rain. The existing sulfur removal technology has poor sulfur removal effect, complex structure and high cost.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a high-efficient sulphur removal device is provided, it improves the sulphur removal effect, environmental protection.
The utility model discloses a solve above-mentioned technical problem through following technical scheme: a high-efficiency desulfurizing device is characterized by comprising an air inlet pipe, a desulfurizing tower, a rotary motor, a connecting shaft, a water pump, a water pipe, a spray head group, a dedusting net, a packing box, an air outlet pipe, an air purifier, an access hole, an overflow port, a drainage box, a filter screen, a first connecting pipe, a desulfurizing pool, a settling pool, a water storage tank, a second connecting pipe and a third connecting pipe, wherein the air inlet pipe and the rotary motor are positioned at the top end of the desulfurizing tower, one end of the connecting shaft is connected with the rotary motor, the other end of the connecting shaft is connected with the spray head group, one end of the water pipe is connected with the water pump, the other end of the water pipe is connected with the spray head group, the connecting shaft, the water pipe, the spray head group, the dedusting net and the packing box are positioned in the desulfurizing tower, the dedusting net is positioned between the spray head group and the packing box, the access hole is positioned at one side of, the drain tank is located the bottom of sulphur removal tower, and the filter screen is located the drain tank, and the one end and the drain tank of first connecting pipe are connected, and the other end and the one side in desulfurization pond of first connecting pipe are connected, and the one end and the opposite side in desulfurization pond of second connecting pipe are connected, and the other end and the one side of sinking to decide the pond of second connecting pipe are connected, and the one end and the opposite side of sinking to decide the pond of third connecting pipe are connected, and the other end and the storage water tank connection of third connecting pipe.
Preferably, the desulfurization tank is a desulfurization tank in which a sodium acetate aqueous solution is stored.
Preferably, the rotating motor is a stepping motor.
Preferably, the stuffing box is a stuffing box filled with zinc carbonate.
Preferably, an air suction fan is installed in the air inlet pipe.
The utility model discloses an actively advance the effect and lie in: the utility model provides the high sulphur removal effect, the environmental protection, simple structure, it is with low costs.
Drawings
Fig. 1 is a schematic structural view of the high-efficiency desulfurizing device of the utility model.
Detailed Description
The following provides a preferred embodiment of the present invention with reference to the accompanying drawings to explain the technical solutions of the present invention in detail.
As shown in figure 1, the high-efficiency desulfurizing device of the utility model comprises an air inlet pipe 1, a desulfurizing tower 2, a rotating electrical machine 3, a connecting shaft 4, a water pump 5, a water pipe 6, a nozzle group 7, a dedusting net 8, a stuffing box 9, an air outlet pipe 10, an air purifier 11, an access hole 12, an overflow port 13, a drainage box 14, a filter screen 15, a first connecting pipe 16, a desulfurizing tank 17, a settling tank 18, a water storage tank 19, a second connecting pipe 20 and a third connecting pipe 21, wherein the air inlet pipe 1 and the rotating electrical machine 3 are all positioned at the top end of the desulfurizing tower 2, one end of the connecting shaft 4 is connected with the rotating electrical machine 3, the other end of the connecting shaft 4 is connected with the nozzle group 7, one end of the water pipe 6 is connected with the water pump 5, the other end of the water pipe 6 is connected with the nozzle group 7, the connecting shaft 4, the water pipe 6, the nozzle group 7, the dedusting net 8 and the stuffing, manhole 12 is located one side of sulphur removal tower 2, outlet duct 10, overflow mouth 13 all is located the opposite side of sulphur removal tower 2, outlet duct 10 is connected with air purifier 11, water drainage tank 14 is located the bottom of sulphur removal tower 2, filter screen 15 is located water drainage tank 14, the one end and the water drainage tank 14 of first connecting pipe 16 are connected, the other end and the one side of desulfurization pond 17 of first connecting pipe 16 are connected, the one end and the opposite side of desulfurization pond 17 of second connecting pipe 20 are connected, the other end and the one side of sinking and deciding pond 18 of second connecting pipe 20 are connected, the one end and the opposite side of sinking and deciding pond 18 of third connecting pipe 21 are connected, the other end and the storage water tank 19 of third connecting pipe 21 are connected.
The desulfurization tank is a desulfurization tank with sodium acetate aqueous solution, and the sodium acetate aqueous solution can further react with sulfur and the like, so that the sulfur removal effect is further improved.
The rotating motor is a stepping motor, so that the stability of rotation is improved.
The stuffing box is filled with zinc carbonate, so that the sulfur removal effect is improved.
An air suction fan is arranged in the air inlet pipe, so that sulfur-containing flue gas can be quickly sucked into the sulfur removal tower.
The utility model discloses high-efficient sulphur removal device's theory of operation as follows: the intake pipe lets in the flue gas that contains sulphur, and the sulphur removal tower carries out preliminary sulphur removal, and the rotating electrical machines passes through the connecting axle and drives shower nozzle group rotatory, and the rivers that can the blowout scope is bigger like this to comprehensive contact sulphur-containing flue gas improves the sulphur removal effect, environmental protection. The water pump and the water pipe supply water to the spray head group. The dust removing net removes dust in the flue gas, and the stuffing box can further desulfurize. The outlet duct and the cooperation of air purifier can air-purifying to the clean gas of discharge, the environmental protection. The access hole is used for overhauing the sulphur removal tower, and the overflow mouth is used for discharging unnecessary water etc. and the drain box is used for discharging the water that contains the sulphur to the desulfurization pond, and the filter screen is used for filtering impurity, and first connecting pipe is used for intercommunication drain box and desulfurization pond, and the desulfurization pond further carries out the desulfurization. The settling tank removes suspended matters in water and purifies water. The storage water tank stores the clean water resource after settling the pond and handling, and the second connecting pipe is used for communicateing the desulfurization pond and settling the pond, and the third connecting pipe is used for communicateing and settles pond and storage water tank.
The above-mentioned embodiments further explain the technical problems, technical solutions and advantages of the present invention in detail, it should be understood that the above-mentioned embodiments are only examples of the present invention, and are not intended to limit the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.
Claims (5)
1. A high-efficiency desulfurizing device is characterized by comprising an air inlet pipe, a desulfurizing tower, a rotary motor, a connecting shaft, a water pump, a water pipe, a spray head group, a dedusting net, a packing box, an air outlet pipe, an air purifier, an access hole, an overflow port, a drainage box, a filter screen, a first connecting pipe, a desulfurizing pool, a settling pool, a water storage tank, a second connecting pipe and a third connecting pipe, wherein the air inlet pipe and the rotary motor are positioned at the top end of the desulfurizing tower, one end of the connecting shaft is connected with the rotary motor, the other end of the connecting shaft is connected with the spray head group, one end of the water pipe is connected with the water pump, the other end of the water pipe is connected with the spray head group, the connecting shaft, the water pipe, the spray head group, the dedusting net and the packing box are positioned in the desulfurizing tower, the dedusting net is positioned between the spray head group and the packing box, the access hole is positioned at one side of, the drain tank is located the bottom of sulphur removal tower, and the filter screen is located the drain tank, and the one end and the drain tank of first connecting pipe are connected, and the other end and the one side in desulfurization pond of first connecting pipe are connected, and the one end and the opposite side in desulfurization pond of second connecting pipe are connected, and the other end and the one side of sinking to decide the pond of second connecting pipe are connected, and the one end and the opposite side of sinking to decide the pond of third connecting pipe are connected, and the other end and the storage water tank connection of third connecting pipe.
2. The efficient sulfur removal device of claim 1, wherein said desulfurization tank is a desulfurization tank containing an aqueous solution of sodium acetate.
3. The efficient sulfur removal device of claim 1, wherein said rotating electrical machine is a stepper motor.
4. The efficient sulfur removal device of claim 1, wherein said stuffing box is a stuffing box filled with zinc carbonate.
5. The high efficiency sulfur removal device of claim 1, wherein a suction fan is installed in said air inlet pipe.
Priority Applications (1)
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CN201921155656.5U CN210303080U (en) | 2019-07-22 | 2019-07-22 | High-efficient sulphur removal device |
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CN201921155656.5U CN210303080U (en) | 2019-07-22 | 2019-07-22 | High-efficient sulphur removal device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111518592A (en) * | 2020-05-11 | 2020-08-11 | 宋青 | Coke oven gas desulfurizing tower |
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2019
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111518592A (en) * | 2020-05-11 | 2020-08-11 | 宋青 | Coke oven gas desulfurizing tower |
CN111518592B (en) * | 2020-05-11 | 2021-08-24 | 新疆金晖兆丰焦化有限公司 | Coke oven gas desulfurization method |
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