Boiler tail gas treatment device capable of filtering
Technical Field
The utility model relates to the technical field of boiler tail gas treatment devices, in particular to a boiler tail gas treatment device capable of filtering.
Background
The boiler is energy conversion equipment, chemical energy and electric energy in fuel are input to the energy input by the boiler, the boiler outputs steam, high temperature water or an organic heat carrier with certain heat energy, hot water or steam generated in the boiler can directly provide required heat energy for industrial production and people living, the steam power device can also be used for converting the mechanical energy into the electric energy, or the generator is used for converting the mechanical energy into the electric energy, the boiler for providing hot water is called a hot water boiler and is mainly used for living, a small amount of application exists in industrial production, the generated tail gas is required to be treated in the using process of the boiler at present, the existing device can not effectively utilize and recycle the heat in the tail gas, and the tail gas is inconvenient for workers to filter and purify the tail gas.
For example, a boiler tail gas treatment device that can filter of publication number CN219879347U belongs to boiler technical field, and wherein includes the mounting panel, the last fixed surface of mounting panel is connected with protecting crust and water storage bin, the last fixed surface of protecting crust is connected with high temperature gas filter, high temperature gas filter's fixed surface is connected with the intake pipe, protecting crust's inside is provided with plate heat exchanger, plate heat exchanger's side fixedly connected with air duct, the other end fixed connection of air duct is at high temperature gas filter's surface.
The device processes the tail gas with a certain effect by arranging the high temperature gas filter inside, but the tail gas is usually mainly sulfide-containing gas and dust, the method for filtering sulfide by high temperature has dangerous indexes in the application, the temperature is relatively more difficult to be constant, sulfide possibly generates different gases due to the temperature difference, and once the sulfide gas is discharged to the outside, the damage is caused to people or animals, so that the safety index of the filtration needs to be changed as much as possible to avoid the occurrence of the situation, namely, the method for filtering at high temperature is changed, and a safer and environment-friendly method is adopted.
Disclosure of Invention
The utility model aims to provide a boiler tail gas treatment device capable of filtering so as to solve the problems in the background art.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a boiler tail gas processing apparatus that can filter, includes sulfur removal device and dust collector, and sulfur removal device upper surface settles the electron display panel, and sets up control button and display screen on the electron display panel, and the sulfur removal device openly is gone up and is set up the laminating board, and settles the lime water tank on the laminating board, and the water inlet is settled on lime water tank surface simultaneously, and lime water tank upper surface sets up the transportation pipe, establishes the rack siphunculus between dust collector and the sulfur removal device, and dust collector upper surface sets up drive power supply, and the switching board is settled to dust collector right side surface simultaneously.
Preferably, the handle is arranged on the opening and closing plate, the positive electrode is arranged on the left side inside the dust removing device, the negative electrode is arranged on the right side of the dust removing device, and the supporting column is arranged on the lower surface of the dust removing device.
Preferably, the inside rose box that sets up of sulfur removal device, and rose box upper end links to each other with the transportation pipe of transportation lime water, sets up the support frame simultaneously around the rose box.
Preferably, the bottom of the filter box is provided with a discharge pipeline for discharging lime water after tail gas is filtered in the filter box.
Preferably, the surface of the inner layer of the filter box is provided with a distribution device, the lower end of the distribution device is provided with a plurality of atomizing nozzles, and the atomizing nozzles adopt a plurality of nozzles.
Compared with the prior art, the utility model has the beneficial effects that:
compared with other devices for treating the tail gas of the boiler, the device adopts lime water to filter the vulcanized gas in the tail gas, the design of the mist spray head enables the tail gas in the filter box to be in omnibearing contact with lime mist, so that sulfide components in the tail gas can be removed more completely and thoroughly, and in addition, the idea of adopting lime water is simpler and practical in a sulfur removal facility, and the utilization degree of resources is higher and is also saved.
In the dust removal idea, the device adopts the electrostatic effect generated between the positive plate and the negative plate to achieve the effect of removing dust in tail gas, the tail gas containing dust is electrically separated when passing through a high-voltage electrostatic field, dust particles and negative ions are combined to be negatively charged, and then the dust particles are discharged towards the surface of the anode to be deposited, so that the effect of removing dust is achieved, the purifying effect is quite convex, the range of treated gas is large, and the operation automatic control can be realized.
Drawings
FIG. 1 is a front overview of the present utility model;
FIG. 2 is an internal view of the dust removing device of the present utility model;
FIG. 3 is an internal view of the sulfur removal apparatus of the present utility model;
Fig. 4 is an interior view of the filter box of the present utility model.
In the figure: the device comprises a sulfur removal device 1, a dust removal device 2, a driving power supply 3, an opening and closing plate 4, a handle 5, a frame through pipe 6, a bonding plate 7, a conveying pipe 8, a lime water tank 9, a water inlet 10, an electronic display board 11, a control button 12, a display screen 13, a positive electrode 14, a negative electrode 15, a support column 16, a discharge pipeline 17, a support frame 18, a filter box 19, a distribution device 20, an atomization nozzle 21 and a multi-position nozzle 22.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 4, the present utility model provides a technical solution: the utility model provides a boiler tail gas processing apparatus that can filter, including sulfur removal device 1 and dust collector 2, electron display panel 11 is settled to sulfur removal device 1 upper surface, and set up control button 12 and show screen 13 on the electron display panel 11, electron display panel 11's setting is simplified the operation to the device, be favorable to the user to master more soon, set up laminated board 7 on the sulfur removal device 1 openly, and settle lime water tank 9 on the laminated board 7, lime water tank 9 surface settles water inlet 10 simultaneously, lime water tank 9 upper surface sets up transportation pipe 8, transportation pipe 8's setting is connected lime water tank 9 and sulfur removal device 1, thereby provide sufficient lime water source for sulfur removal device 1.
The inside rose box 19 that sets up of sulfur removal device 1, and rose box 19 upper end links to each other with the transportation pipe 8 of transportation lime water, guarantees the supply of lime water, sets up support frame 18 simultaneously around rose box 19, plays overall supporting effect to rose box 19.
The discharge pipeline 17 for discharging lime water after filtering tail gas in the filter box 19 is arranged at the bottom of the filter box 19, other faults of the device caused by excessive internal accumulation of the lime water are prevented, the distribution device 20 is arranged on the surface of the inner layer of the filter box 19, the distribution device 20 is mainly used for distributing the supply quantity of the lime water properly, so that the highest efficiency is achieved, a plurality of atomizing nozzles 21 are arranged at the lower end of the distribution device 20, meanwhile, the atomizing nozzles 21 adopt a plurality of nozzles 22, the spraying range of the atomizing nozzles 21 is covered by the design of the plurality of nozzles 22, the whole filter box 19 is ensured to be completely fused with lime water mist, and the removal efficiency of vulcanized gas in the tail gas is improved.
The frame siphunculus 6 is established between dust collector 2 and the sulfur removal device 1 for to the connection of device, make gaseous filtration do not have the space to exist, and dust collector 2 upper surface sets up driving power supply 3, provide power source for the whole device, driving motor settles on the attachment plate, and settle the bolt on the attachment plate, guarantee the stability to the power, dust collector 2 right surface settles shutter plate 4 simultaneously, set up handle 5 on the shutter plate 4, make things convenient for shutter plate 4's opening and closing, with this convenience is to the inside processing of device, dust collector 2 inside left side sets up positive electrode 14, and dust collector 2 right side sets up negative electrode 15, the mutual effect of positive negative electrode makes that well space exists a large amount of static, dust collector 2 lower surface sets up support column 16 simultaneously.
When in actual use, the device is connected to the device generating tail gas, the driving power supply 3 is turned on, the control button 12 on the electronic display panel 11 is operated, the operation of the transport pipe 8 is turned on, an electrostatic effect is generated between the positive electrode and the negative electrode 15, the inside of the filter box 19 is filled with lime water mist along with the tail gas, the lime water mist is completely mixed with the tail gas, sulfide in the tail gas reacts, the reacted gas is led to the dust removing device 2 along with the frame through pipe 6, the reacted lime water mist is gathered together along with the increase to form liquid to be discharged from the discharge pipeline 17, the electrostatic effect in the dust removing device 2 adsorbs dust to the entered gas, and the filtering is completed along with the outside of the discharge device.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.