Anti-corrosion treatment equipment for low-carbon anti-corrosion oil wood pole and treatment process of anti-corrosion treatment equipment

By employing a multi-stage filtration mechanism and water adsorption technology, the filter bag problem caused by heat loss from steam boiler flue gas has been solved, thereby improving the stability and filtration effect of the filter bag.

CN120902076APending Publication Date: 2025-11-07TIELING SHUNDA ANTICORROSIVE POLE CO LTD
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Patent Information

Application Number
CN202511039262.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

Existing steam boilers suffer from heat loss during flue gas discharge, leading to filter bag aging, deformation, or even burnout, which increases filtration difficulty and reduces filtration efficiency.

Method used

It employs a rotating filter mechanism, a wetted filter mechanism, a circulating filter mechanism, and a barrier water filtration mechanism. Through components such as a rotating filter ring, a wetted guide cloth, and a barrier water filter cotton, it achieves multi-stage filtration and water adsorption of exhaust gas, reduces heat emissions, and improves the service life and filtration effect of filter bags.

Benefits of technology

It reduces the chances of filter bags aging, deforming, and burning, improves filtration efficiency, extends the service life of filter bags, reduces the release of harmful substances, and reduces the difficulty of filtration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of anti-corrosion treatment equipment, and particularly relates to anti-corrosion treatment equipment for a low-carbon anti-corrosion oil wood rod and a treatment process of the anti-corrosion treatment equipment. Comprising a steam equipment body, a rotary type filtering mechanism, a soaking type filtering mechanism, a circulating type filtering mechanism and a blocking type water filtering mechanism, and the rotary type filtering mechanism is arranged on one side of the steam equipment body and comprises a rotary type filtering treatment bin. According to the anti-corrosion treatment equipment for the low-carbon anti-corrosion oil wood pole and the treatment process of the anti-corrosion treatment equipment, through arrangement of corresponding mechanisms, heat emission is reduced, the heating probability of a filter bag is reduced, the aging, deformation and even burning probability of the filter bag is reduced, the service life of dust removal of the filter bag is prolonged, the thermal decomposition probability of a filter bag material is reduced, and the service life of the filter bag is prolonged. The release of harmful substances is reduced, meanwhile, the filtering difficulty is reduced, and the filtering effect is improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of anti-corrosion treatment equipment, and particularly relates to an anti-corrosion treatment equipment for low-carbon anti-corrosion oilwood poles and a treatment process thereof. BACKGROUND

[0002] The low-carbon anti-corrosion oilwood pole is made of pine as the main raw material, injected with anti-corrosion oil (such as coal tar and anti-corrosion oil mixture) through an environmentally friendly process (such as vacuum pressure impregnation), and treated at high temperature and high pressure. Its core characteristics include low-carbon property, anti-corrosion performance and environmental safety, and it mainly has the advantages of economy, durability and lightness.

[0003] The anti-corrosion treatment equipment for treating low-carbon anti-corrosion oilwood poles generally includes core equipment and auxiliary equipment. The core equipment mainly includes an oil immersion kettle, a boiler, a heat conducting oil pipeline, a pressure pump, a vacuum pump and a pressure impregnation tank, and the auxiliary equipment mainly includes a peeling machine, a drop recovery system and a quality detection device.

[0004] The steam boiler is one of the core equipment, which supplies high-temperature heat source in the anti-corrosion treatment process, and is mainly used for heating coal tar, preheating dry kiln and maintaining the temperature of the high-pressure tank. Its working process is as follows: combustion, high-temperature combustion in the combustion chamber, steam generation in the heat exchanger, steam distribution to the oil immersion kettle to heat the coal tar, waste heat recovery, preheating of the dry kiln and flue gas purification.

[0005] The fuel mainly includes biomass fuel or natural gas fuel, and some use a mixture of biomass fuel and natural gas fuel. The biomass fuel accounts for 70%, and the natural gas fuel accounts for 30%.

[0006] However, although the biomass fuel reduces CO2 during combustion, it increases PM2.5 emissions (about 35mg / m 3 The existing steam boiler mainly uses electrostatic precipitation and bag dust removal, which can limit PM2.5 emissions to a certain extent, but the waste heat recovery can only reach about 80%, and the remaining heat is discharged with the flue gas. The filter bag is easily aged, deformed or even burned out after a long time of heating, which shortens the service life and even causes thermal decomposition of the filter bag material, releases harmful substances, causes secondary pollution, and also makes the dust particles smaller, increases the difficulty of filtration, weakens the electrostatic effect and reduces the filtration effect.

[0007] The information disclosed in this BACKGROUND section is only intended to increase an understanding of the general context of the application and is not to be taken in any way as an acknowledgment or any form of suggestion that this information forms prior art that is already known in the art. SUMMARY

[0008] The present application aims to provide a low-carbon anti-corrosion oil wood pole anti-corrosion treatment equipment and process, which can solve the problem of heat emission with flue gas, which can easily cause filter bag aging, deformation and even burning, and can also increase the difficulty of filtration, weaken the electrostatic effect and reduce the filtration effect.

[0009] In order to achieve the above-mentioned purpose, the technical scheme provided by a specific embodiment of the present application is as follows:

[0010] A low-carbon anti-corrosion oil wood pole anti-corrosion treatment equipment, comprising: a steam equipment body, a rotating filter mechanism, a wetting filter mechanism, a circulating filter mechanism and a barrier type water filter mechanism.

[0011] One side of the steam equipment body is provided with a rotating filter mechanism, the rotating filter mechanism comprises a rotating filter treatment bin, a rotating filter ring net is arranged in the rotating filter treatment bin, a rotating air inlet bin is fixedly installed on one side of the rotating filter treatment bin, and a rotating guide cone is arranged in the rotating air inlet bin.

[0012] The side of the rotating filter treatment bin away from the rotating air inlet bin is provided with a wetting filter mechanism, the wetting filter mechanism comprises a wetting guide cloth, the upper side of the wetting guide cloth is provided with a wetting water falling bin, and the lower side of the weting water falling bin is fixedly installed with a wetting guide plate.

[0013] The circulating filter mechanism is slidingly installed in the rotating filter treatment bin.

[0014] The barrier type water filter mechanism is fixedly installed in the rotating filter treatment bin.

[0015] In one or more embodiments of the present application, the rotating filter treatment bin is fixedly installed with a rotating positioning ring, which can be matched with the rotating support frame to position the position of the rotating filter ring net, reduce the probability of the rotating filter ring net being separated, guarantee the balance of the rotating filter ring net, and reduce the probability of the rotating filter ring net being inclined.

[0016] The rotating positioning bearing is installed between the rotating positioning ring and the rotating filter ring net, which reduces the friction between the rotating filter ring net and the rotating positioning ring, improves the smoothness of the rotation of the rotating filter ring net, and makes the rotation of the rotating filter ring net more stable.

[0017] The rotating guide ring is fixedly installed outside the rotating filter ring net, which facilitates the rotation of the rotating filter ring net, makes the rotation of the rotating filter ring net guided by the rotating support frame, and further improves the stability of the rotating filter ring net.

[0018] The rotating filter processing bin is fixedly provided with a pair of rotating support frames, which can position the rotating filter ring net, reduce the probability of the rotating filter ring net being separated, improve the stability of the rotating filter ring net, and reduce the probability of the rotating filter ring net being inclined, so that the rotation of the rotating filter ring net is more controllable.

[0019] In one or more embodiments of the present application, a plurality of uniformly distributed rotating support balls are installed between the rotating support frame and the rotating guide ring, which reduces the friction between the rotating support frame and the rotating guide ring, reduces the damage to the rotating filter ring net and the rotating support frame, and prolongs the service life of the rotating filter ring net and the rotating support frame.

[0020] The rotating support frame is provided with positioning grooves matched with the rotating support balls, which reduces the probability of the rotating support balls being separated, improves the stability of the rotating support balls, and makes the rotating support balls better adhere to the rotating support frame, thereby improving the stability of the rotating filter ring net.

[0021] The rotating air inlet bin is arranged through the rotating filter processing bin, which facilitates the circulation of waste gas, makes the waste gas better enter the rotating filter processing bin, makes the waste gas better contact with the rotating guide cone, and makes the rotating guide blade better contact with the waste gas.

[0022] The rotating guide cone and the rotating air inlet bin are provided with a plurality of uniformly distributed rotating guide blades, which can guide the waste gas, make the waste gas better contact with the rotating filter ring net, and make the waste gas flow in a spiral shape.

[0023] In one or more embodiments of the present application, the rotating air inlet bin and the steam equipment body are provided with a rotating communication pipeline, which communicates the rotating air inlet bin and the steam equipment body, so that the waste gas is better introduced into the rotating air inlet bin.

[0024] The rotating filter processing bin is fixedly provided with a rotating motor, which can drive the rotating driving gear, provide corresponding power for the rotation of the rotating driving gear, improve the controllability of the rotating driving gear, and make the rotation of the rotating driving gear more controllable.

[0025] The rotating motor is fixedly provided with a rotating driving gear, which can drive the rotating driven gear ring, make the rotating driven gear ring be driven to rotate, provide corresponding power for the rotation of the rotating filter ring net, make the rotating filter ring net be better washed by water, and make the rotating filter ring net better filter PM2.5 in the waste gas.

[0026] The rotating driven gear ring is fixedly installed on the rotating filter ring net and can be driven by the rotating driving gear to rotate, thereby providing corresponding power for the rotation of the rotating filter ring net.

[0027] In one or more embodiments of the present application, the wetting type drop sump is provided with a plurality of evenly distributed wetting grooves, water can fall into the rotating filter treatment bin through the wetting grooves, and after being guided by the wetting type guide plate, the water will contact the wetting type guide cloth, so that the wetting type guide cloth is wetted, the filtering effect of the wetting type guide cloth is improved, and the wetting type guide cloth better filters the exhaust gas;

[0028] The wetting type water pump is fixedly installed on one side of the rotating filter treatment bin, which can extract water from the bottom of the rotating filter treatment bin, so that the filtered water in the rotating filter treatment bin can be injected into the wetting type communication pipeline.

[0029] The wetting type cleaning bin is provided on the rotating filter ring net, which can temporarily contain water, so that the water can enter the rotating filter treatment bin through the cleaning groove, the rotating filter ring net can be flushed, the probability of the rotating filter ring net being blocked is reduced, and the filtering stability of the rotating filter ring net is improved.

[0030] The wetting type cleaning bin is provided on the rotating filter ring net, which can temporarily contain water, so that the water can enter the rotating filter treatment bin through the cleaning groove, the rotating filter ring net can be flushed, the probability of the rotating filter ring net being blocked is reduced, and the filtering stability of the rotating filter ring net is improved.

[0031] In one or more embodiments of the present application, the circulating filter mechanism includes a circulating pull-out bin, which can be conveniently pulled out by the user, facilitating the user's cleaning and improving the user's cleaning convenience.

[0032] The circulating filter screen is fixedly installed on the lower side of the circulating pull-out bin, which can filter the water in the circulating pull-out bin, so that the water extracted by the wetting type water pump is cleaner, the damage to the wetting type water pump is reduced, and the service life of the wetting type water pump is improved.

[0033] A pair of circulating balance bars are fixedly installed in the circulating pull-out bin, which improves the balance of the circulating sliding frame, reduces the probability of the circulating sliding frame tilting, makes the sliding of the circulating sliding frame more controllable, and reduces the probability of the circulating sliding frame detaching.

[0034] The circulating balance block is slidably installed on the circulating balance bar, can displace on the circulating balance bar, and facilitates the balance of the circulating sliding frame;

[0035] A pair of circulating sliding frames are installed on the circulating balance blocks, can be driven to displace by the circulating threaded blocks, and drive the circulating cleaning brushes to displace synchronously with the circulating sliding frames.

[0036] In one or more embodiments of the present application, a circulating electric motor is fixedly installed on one side of the circulating pull-out bin, can drive the circulating threaded rod, provides corresponding power for the driving of the circulating threaded rod, and improves the controllability of the circulating threaded rod.

[0037] The circulating threaded rod is fixedly installed on the circulating electric motor, can drive the sliding of the circulating threaded block, and provides power for the sliding of the circulating threaded block.

[0038] One end of the circulating sliding frame is fixedly installed with a circulating closed bin, can protect the limiting electric motor, reduces the probability of the limiting electric motor being soaked, reduces the damage to the limiting electric motor, and improves the service life of the limiting electric motor.

[0039] In one or more embodiments of the present application, a limiting electric motor is fixedly installed in the circulating closed bin, can drive the rotation of the circulating motor shaft, and provides corresponding power for the rotation of the circulating motor shaft.

[0040] The limiting electric motor is fixedly installed with a circulating motor shaft, can drive the displacement of the circulating cleaning brush through the connection of the circulating connecting rod, makes the circulating cleaning brush adhere to the circulating filter screen plate, cleans the impurities on the surface of the circulating filter screen plate, avoids the probability of the circulating filter screen plate being blocked, and the circulating motor shaft penetrates through the circulating closed bin and the circulating sliding frame.

[0041] The circulating filter screen plate is provided with a circulating cleaning brush, can brush the circulating filter screen plate, and a pair of circulating connecting rods are fixedly installed between the circulating cleaning brush and the circulating motor shaft, connect the circulating cleaning brush and the circulating motor shaft.

[0042] In one or more embodiments of the present application, the blocking type water filtering mechanism includes a blocking type water filtering net, the position of the blocking type water filtering cotton can be fixed, the stability of the blocking type water filtering cotton is improved, and when the blocking type water filtering cotton is pressed, the water circulation is facilitated;

[0043] The blocking type water filtering net is fixedly installed in the blocking type water filtering cotton, the water in the exhaust gas can be adsorbed, and the discharged water is reduced. The blocking type motor is fixedly installed on one side of the rotating type filtering treatment bin, and can drive the blocking type rotating frame to provide corresponding power for the rotation of the blocking type rotating frame.

[0044] The blocking type motor is arranged through the rotating type filtering treatment bin, the blocking type motor is fixedly installed on the blocking type rotating frame, the installation of the blocking type compression roller is facilitated, the blocking type rotating frame can drive the blocking type compression roller to press the blocking type water filtering cotton, and the blocking type compression roller is rotatably installed on the blocking type rotating frame.

[0045] A treatment process of a low-carbon corrosion-resistant oil wood pole corrosion treatment equipment, comprising the following steps:

[0046] S1, screening the wood, and peeling the wood through a peeling machine;

[0047] S2, starting the steam equipment body, conveying the biomass fuel into the steam equipment body through the conveying device, and preheating the wood pole through the drying kiln;

[0048] S3, loading the wood into the high-pressure tank, performing vacuum pretreatment, and then injecting coal tar;

[0049] S4, pressurized impregnation of the wood through the high-pressure tank, and detection of the penetration depth;

[0050] S5, the exhaust gas is discharged into the rotating type filtering treatment bin through the rotating type communication pipeline, and the exhaust gas is guided to contact the rotating type guide vane through the guide of the rotating type guide cone;

[0051] S6, the exhaust gas contacts the rotating type filtering ring net, is filtered by the rotating type filtering ring net, contacts the wetted wet type guide cloth, part of the exhaust gas is filtered by the wet type guide cloth, passes through the wet type guide cloth, part of the exhaust gas is guided by the wet type guide cloth, contacts the water at the bottom of the rotating type filtering treatment bin, and the impurities are adsorbed by the water;

[0052] S7, the limiting motor cleans the circulating type filtering screen plate, reduces the probability of the circulating type filtering screen plate being blocked, filters the water by the circulating type filtering screen plate to form a cycle, and the filtered exhaust gas can be further filtered by the blocking type water filtering cotton and discharged from the rotating type filtering treatment bin.

[0053] Compared with the prior art, the low-carbon anti-corrosion oil wood pole anti-corrosion treatment equipment and treatment process of the present application reduces heat emission through the arrangement of corresponding mechanisms, reduces the probability of filter bag heating, reduces the probability of filter bag aging, deformation or even burning, prolongs the service life of filter bag dust removal, reduces the probability of filter bag material thermal decomposition, reduces the release of harmful substances, and at the same time, reduces the difficulty of filtration and improves the filtration effect. BRIEF DESCRIPTION OF DRAWINGS

[0054] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0055] Figure 1 It is a first part structure of the low-carbon anti-corrosion oil wood pole anti-corrosion treatment equipment in an embodiment of the present application.

[0056] Figure 2 It is Figure 1 the structure schematic diagram in A;

[0057] Figure 3 It is Figure 1 the structure schematic diagram in B;

[0058] Figure 4 It is a first part structure of the low-carbon anti-corrosion oil wood pole anti-corrosion treatment equipment in an embodiment of the present application.

[0059] Figure 5 It is Figure 4 the structure schematic diagram in C;

[0060] Figure 6 It is Figure 4 the structure schematic diagram in D;

[0061] Figure 7 It is a second part structure of the low-carbon anti-corrosion oil wood pole anti-corrosion treatment equipment in an embodiment of the present application.

[0062] Figure 8 It is Figure 7 the structure schematic diagram in E;

[0063] Figure 9 It is a second part structure of the low-carbon anti-corrosion oil wood pole anti-corrosion treatment equipment in an embodiment of the present application.

[0064] Figure 10 It is Figure 9Structure schematic view at middle F;

[0065] Figure 11 Structure schematic view at middle F;

[0066] Figure 12 Structure schematic view at middle F;

[0067] Figure 13 Structure schematic view at middle F;

[0068] Figure 14 Structure schematic view at middle F;

[0069] Figure 15 Structure schematic view at middle F; Figure 14 Structure schematic view at middle F.

[0070] Explanation of main reference signs:

[0071] 1-steam equipment body, 2-rotary filtering mechanism, 201-rotary filtering treatment bin, 202-rotary filtering ring net, 203-rotary air inlet bin, 204-rotary guide cone, 205-rotary positioning ring, 206-rotary positioning bearing, 207-rotary guide ring, 208-rotary support frame, 209-rotary support ball, 210-rotary guide blade, 211-rotary communication pipeline, 212-rotary motor, 213-rotary driving gear, 214-rotary driven gear ring, 3-wetting filtering mechanism, 301-wetting guide cloth, 302-wetting water falling bin, 303-wetting guide plate, 304-wetting water pump, 305-wetting cleaning bin, 306-wetting communication pipeline, 4-circulating filtering mechanism, 401-circulating pulling bin, 402-circulating filtering net plate, 403-circulating balance bar, 404-circulating balance block, 405-circulating sliding frame, 406-circulating threaded block, 407-circulating motor, 408-circulating threaded rod, 409-circulating closed bin, 410-limiting motor, 411-circulating motor shaft, 412-circulating cleaning brush, 413-circulating connecting rod, 5-barrier water filtering mechanism, 501-barrier water filtering net, 502-barrier water filtering cotton, 503-barrier motor, 504-barrier rotating frame, 505-barrier compression roller. DETAILED DESCRIPTION

[0072] In order to make the person skilled in the art better understand the technical solutions in the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the protection scope of the present application.

[0073] As shown in Figures 1 to 15 , the anti-corrosion treatment equipment for low-carbon anti-corrosion oil wood poles in an embodiment of the present application comprises a steam equipment body 1, a rotating filter mechanism 2, a wetting filter mechanism 3, a circulating filter mechanism 4 and a barrier water filter mechanism 5.

[0074] As shown in Figures 1 to 12 , one side of the steam equipment body 1 is provided with the rotating filter mechanism 2, and the rotating filter mechanism 2 comprises a rotating filter treatment bin 201, which can provide corresponding space for the treatment of waste gas.

[0075] Among them, the rotating filter treatment bin 201 is provided with a rotating filter ring net 202, which can simply filter the waste gas so that the impurities in the waste gas are blocked.

[0076] In addition, one side of the rotating filter treatment bin 201 is fixedly provided with a rotating air inlet bin 203, which facilitates the installation of a rotating guide cone 204 and the circulation of waste gas. The rotating air inlet bin 203 is provided with the rotating guide cone 204, which can guide the waste gas to better contact with a rotating guide vane 210.

[0077] As shown in Figures 1 to 14 , the rotating filter treatment bin 201 is fixedly provided with a rotating positioning ring 205, which can cooperate with a rotating support frame 208 to position the position of the rotating filter ring net 202, reduce the probability of the rotating filter ring net 202 being separated, guarantee the balance of the rotating filter ring net 202, and reduce the probability of the rotating filter ring net 202 being inclined.

[0078] Among them, the rotating positioning ring 205 and the rotating filter ring net 202 are provided with a rotating positioning bearing 206, which reduces the friction between the rotating filter ring net 202 and the rotating positioning ring 205, improves the smoothness of the rotation of the rotating filter ring net 202, and makes the rotation of the rotating filter ring net 202 more stable.

[0079] In addition, the rotating filter ring network 202 is externally fixedly installed with a rotating guide ring 207, which facilitates the rotation of the rotating filter ring network 202, and the rotation of the rotating filter ring network 202 is guided by the rotating support frame 208, so that the stability of the rotating filter ring network 202 is further improved.

[0080] In addition, the rotating filter processing chamber 201 is internally fixedly installed with a pair of rotating support frames 208, which can position the rotating filter ring network 202, reduce the probability of the rotating filter ring network 202 being detached, improve the stability of the rotating filter ring network 202, and reduce the probability of the rotating filter ring network 202 being tilted, so that the rotation of the rotating filter ring network 202 is more controllable.

[0081] As shown in Figures 1 to 12 The rotating support frame 208 and the rotating guide ring 207 are installed with a plurality of uniformly distributed rotating support balls 209, which reduce the friction between the rotating support frame 208 and the rotating guide ring 207, reduce the damage to the rotating filter ring network 202 and the rotating support frame 208, and improve the service life of the rotating filter ring network 202 and the rotating support frame 208.

[0082] The rotating support frame 208 is drilled with positioning grooves matched with the rotating support balls 209, which reduces the probability of the rotating support balls 209 being detached, improves the stability of the rotating support balls 209, and makes the rotating support balls 209 better adhere to the rotating support frame 208, thereby improving the stability of the rotating filter ring network 202.

[0083] In addition, the rotating air inlet chamber 203 is arranged through the rotating filter processing chamber 201, which facilitates the circulation of waste gas, makes the waste gas better enter the rotating filter processing chamber 201, makes the waste gas better contact with the rotating guide cone 204, and makes the rotating guide blade 210 better contact with the waste gas.

[0084] In addition, the rotating guide cone 204 and the rotating air inlet chamber 203 are installed with a plurality of uniformly distributed rotating guide blades 210, which can guide the waste gas, make the waste gas better contact with the rotating filter ring network 202, and make the waste gas circulate in a spiral shape.

[0085] As shown in Figures 1 to 8 The rotating air inlet chamber 203 and the steam equipment body 1 are installed with a rotating communication pipeline 211, which communicates the rotating air inlet chamber 203 and the steam equipment body 1, so that the waste gas is better guided into the rotating air inlet chamber 203.

[0086] In addition, the rotating filter processing bin 201 is fixedly installed with a rotating motor 212, which can drive the rotating driving gear 213, and provides corresponding power for the rotation of the rotating driving gear 213, so that the controllability of the rotating driving gear 213 is improved, and the rotation of the rotating driving gear 213 is more controllable.

[0087] The rotating motor 212 is fixedly installed with a rotating driving gear 213, which can drive the rotating driven gear ring 214, so that the rotating driven gear ring 214 can be driven to rotate, and the rotation of the rotating filter ring network 202 is provided with corresponding power, so that the rotating filter ring network 202 is better washed by water, and the PM2.5 in the exhaust gas is better filtered by the rotating filter ring network 202.

[0088] In addition, the rotating filter ring network 202 is fixedly installed with a rotating driven gear ring 214, which can be driven by the rotating driving gear 213 to rotate, and provides corresponding power for the rotation of the rotating filter ring network 202. The rotating driving gear 213 is engaged with the rotating driven gear ring 214.

[0089] As shown in Figures 1 to 9 , the rotating filter processing bin 201 is provided with a wet type filtering mechanism 3 away from the rotating air inlet bin 203, which comprises a wet type guide cloth 301. The wet type guide cloth 301 can filter the exhaust gas by being wet, so that the impurities in the exhaust gas can be adhered to the wet type guide cloth 301.

[0090] The upper side of the wet type guide cloth 301 is provided with a wet type water falling bin 302, which can temporarily contain water. The lower side of the wet type water falling bin 302 is fixedly installed with a wet type guide plate 303, which can guide the water to better contact the wet type guide cloth 301.

[0091] As shown in Figures 1 to 10 , the wet type water falling bin 302 is provided with a plurality of evenly distributed wet type grooves. The water can fall into the rotating filter processing bin 201 through the wet type grooves, and after being guided by the wet type guide plate 303, it will contact the wet type guide cloth 301, so that the wet type guide cloth 301 is wetted, the filtering effect of the wet type guide cloth 301 is improved, and the wet type guide cloth 301 better filters the exhaust gas.

[0092] The side of the rotating filter processing bin 201 is fixedly installed with a wet type water pump 304, which can extract water from the bottom of the rotating filter processing bin 201, so that the filtered water in the rotating filter processing bin 201 can be injected into the wet type communication pipeline 306. The wet type water pump 304 penetrates through the rotating filter processing bin 201.

[0093] In addition, the rotating filter ring network 202 is provided with a wet cleaning bin 305, which can temporarily accommodate water, so that water can enter the rotating filter processing bin 201 through the cleaning groove, and the rotating filter ring network 202 can be flushed, reducing the probability of the rotating filter ring network 202 being blocked and improving the filtering stability of the rotating filter ring network 202.

[0094] In addition, the lower side of the wet cleaning bin 305 is excavated with a plurality of cleaning grooves, and the wet cleaning bin 305 and the wet water bin 302 are installed with a wet communication pipeline 306 between the wet water pump 304, which can transport water at the bottom of the rotating filter processing bin 201 to the wet cleaning bin 305 and the wet water bin 302, so that the wet water pump 304 can continuously extract water from the rotating filter processing bin 201 and inject it into the wet cleaning bin 305 and the wet water bin 302, forming a cycle.

[0095] As shown in Figures 1 to 11 The rotating filter processing bin 201 is slidably installed with a circulating filter mechanism 4, which includes a circulating pull bin 401, which can be easily pulled by the user and facilitate the user's cleaning, improving the convenience of the user's cleaning, and the circulating pull bin 401 is arranged through the rotating filter processing bin 201.

[0096] In addition, the lower side of the circulating pull bin 401 is fixedly installed with a circulating filter screen 402, which can filter the water in the circulating pull bin 401, making the water extracted by the wet water pump 304 cleaner, reducing the damage to the wet water pump 304, and improving the service life of the wet water pump 304.

[0097] In addition, a pair of circulating balance rods 403 are fixedly installed in the circulating pull bin 401, which improves the balance of the circulating sliding frame 405, reduces the probability of the circulating sliding frame 405 tilting, makes the sliding of the circulating sliding frame 405 more controllable, and reduces the probability of the circulating sliding frame 405 detaching.

[0098] In addition, the circulating balance rods 403 are slidably installed with a circulating balance block 404, which can displace on the circulating balance rods 403, facilitating the balance of the circulating sliding frame 405.

[0099] Among them, a pair of circulating balance blocks 404 are installed with a circulating sliding frame 405, which can be driven to displace by a circulating threaded block 406 and drive a circulating cleaning brush 412, so that the circulating cleaning brush 412 can displace synchronously with the circulating sliding frame 405, and the circulating sliding frame 405 is fixedly installed with a circulating threaded block 406.

[0100] AsFigures 1 to 15 As shown, the one side of the circulating pull-out bin 401 is fixedly installed with a circulating motor 407, which can drive the circulating threaded rod 408, provides corresponding power for the driving of the circulating threaded rod 408, and improves the controllability of the circulating threaded rod 408.

[0101] In addition, the circulating motor 407 is fixedly installed with the circulating threaded rod 408, which can drive the sliding of the circulating threaded block 406 and provide power for the sliding of the circulating threaded block 406. The circulating threaded rod 408 penetrates through the circulating pull-out bin 401 and the circulating threaded block 406, and the circulating threaded rod 408 is matched with the circulating threaded block 406.

[0102] In addition, one end of the circulating sliding frame 405 is fixedly installed with a circulating closed bin 409, which can protect the limiting motor 410, reduce the probability of the limiting motor 410 being soaked, reduce the damage to the limiting motor 410, and prolong the service life of the limiting motor 410.

[0103] As shown in Figures 1 to 14 The limiting motor 410 is fixedly installed in the circulating closed bin 409 and can drive the rotation of the circulating motor shaft 411 to provide corresponding power for the rotation of the circulating motor shaft 411.

[0104] The limiting motor 410 is fixedly installed with a circulating motor shaft 411, which can be connected through a circulating connecting rod 413 to drive the displacement of the circulating cleaning brush 412, make the circulating cleaning brush 412 adhere to the circulating filter screen plate 402, clean the impurities on the surface of the circulating filter screen plate 402, avoid the probability of the circulating filter screen plate 402 being blocked, and the circulating motor shaft 411 penetrates through the circulating closed bin 409 and the circulating sliding frame 405.

[0105] In addition, the circulating filter screen plate 402 is provided with a circulating cleaning brush 412, which can brush the circulating filter screen plate 402. A pair of circulating connecting rods 413 are fixedly installed between the circulating cleaning brush 412 and the circulating motor shaft 411, connecting the circulating cleaning brush 412 and the circulating motor shaft 411. The circulating sliding frame 405 is provided with a limiting groove matched with the circulating connecting rod 413.

[0106] As shown in Figures 1 to 13 The rotating filter processing bin 201 is fixedly installed with a blocking water filtering mechanism 5, which includes a blocking water filtering net 501 and can fix the position of the blocking water filtering cotton 502 to improve the stability of the blocking water filtering cotton 502. When the blocking water filtering cotton 502 is extruded, water circulation is facilitated.

[0107] The barrier type filter water net 501 is fixedly installed with barrier type filter water cotton 502, which can adsorb the water in the exhaust gas to reduce the water discharge. The barrier type motor 503 is fixedly installed on one side of the rotating type filter processing bin 201 and can drive the barrier type rotating frame 504 to provide power for the rotation of the barrier type rotating frame 504.

[0108] In addition, the barrier type motor 503 is arranged through the rotating type filter processing bin 201, the barrier type motor 503 is fixedly installed with the barrier type rotating frame 504, which facilitates the installation of the barrier type compression roller 505, so that the barrier type rotating frame 504 can drive the barrier type compression roller 505 to extrude the barrier type filter water cotton 502, and the barrier type rotating frame 504 is rotatably installed with the barrier type compression roller 505.

[0109] A treatment process of a low-carbon corrosion-resistant oil wood pole corrosion treatment equipment, comprising the following steps:

[0110] S1, screening the wood, and peeling the wood by a peeling machine.

[0111] S2, start the steam equipment body 1, and convey the biomass fuel into the steam equipment body 1 through the conveying device, and preheat the wood pole through the drying kiln.

[0112] S3, load the wood into the high-pressure tank, and perform vacuum pretreatment, and then inject coal tar.

[0113] S4, pressurize and impregnate the wood through the high-pressure tank, and detect the depth of penetration.

[0114] S5, the exhaust gas is discharged into the rotating type filter processing bin 201 through the rotating type communication pipeline 211, and is guided by the rotating type guide cone 204, so that the exhaust gas contacts the rotating type guide leaf 210, and the exhaust gas enters the rotating type filter processing bin 201 in a spiral shape.

[0115] S6, the exhaust gas contacts the rotating type filter ring net 202, and is filtered by the rotating type filter ring net 202, and then contacts the wetted wet type guide cloth 301, part of the exhaust gas is filtered by the wet type guide cloth 301, passes through the wet type guide cloth 301, part of the exhaust gas is guided by the wet type guide cloth 301, and contacts the water at the bottom of the rotating type filter processing bin 201, and the impurities are adsorbed by the water.

[0116] S7, the limiting motor 410 cleans the circulating type filter screen plate 402, so that the probability of the circulating type filter screen plate 402 being blocked is reduced, the water can be filtered by the circulating type filter screen plate 402 to form a cycle, and the filtered exhaust gas can be further filtered by the barrier type filter water cotton 502 and discharged from the rotating type filter processing bin 201.

[0117] It will be obvious to a person skilled in the art that the application is not limited to the details of the foregoing exemplary embodiments and can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. The embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims to the identity of the reference signs therein.

[0118] Furthermore, it should be understood that although the description is made on the basis of the embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A low-carbon preservative treatment equipment for low-carbon preservative oil wood poles, characterized in that, Include: Steam equipment body; Rotary filtering mechanism, provided on one side of the steam equipment body, the rotary filtering mechanism includes a rotary filtering processing bin, a rotary filtering ring network is arranged in the rotary filtering processing bin, a rotary air inlet bin is fixedly installed on one side of the rotary filtering processing bin, and a rotary guide cone is arranged in the rotary air inlet bin; The wet type filtering mechanism is arranged on the side of the rotary filtering processing bin away from the rotary air inlet bin, the wet type filtering mechanism includes a wet type guide cloth, a wet type water falling bin is arranged on the upper side of the wet type guide cloth, and a wet type guide plate is fixedly installed on the lower side of the wet type water falling bin; The circulating filtering mechanism is slidingly installed in the rotary filtering processing bin; The blocking type water filtering mechanism is fixedly installed in the rotary filtering processing bin.

2. The equipment for treating low-carbon preservative oil wooden poles according to claim 1, characterized in that, A rotary positioning ring is fixedly installed in the rotary filtering processing bin, a rotary positioning bearing is installed between the rotary positioning ring and the rotary filtering ring network, a rotary guide ring is fixedly installed outside the rotary filtering ring network, and a pair of rotary support frames are fixedly installed in the rotary filtering processing bin.

3. The equipment for treating low-carbon preservative wooden poles according to claim 2, characterized in that, A plurality of uniformly distributed rotary support balls are installed between the rotary support frame and the rotary guide ring, positioning grooves matched with the rotary support balls are formed in the rotary support frame, the rotary air inlet bin is arranged through the rotary filtering processing bin, and a plurality of uniformly distributed rotary guide leaves are installed between the rotary guide cone and the rotary air inlet bin.

4. The equipment for treating low-carbon preservative wooden poles according to claim 3, characterized in that, A rotary communication pipeline is installed between the rotary air inlet bin and the steam equipment body, a rotary motor is fixedly installed on the rotary filtering processing bin, a rotary driving gear is fixedly installed on the rotary motor, a rotary driven gear ring is fixedly installed on the rotary filtering ring network, and the rotary driving gear is engaged with the rotary driven gear ring.

5. The equipment for treating low-carbon preservative wooden poles according to claim 1, characterized in that, A plurality of uniformly distributed wet grooves are formed in the wet type water falling bin, a wet type water pump is fixedly installed on one side of the rotary filtering processing bin, the wet type water pump is arranged through the rotary filtering processing bin, a wet type cleaning bin is arranged on the rotary filtering ring network, a plurality of cleaning grooves are formed in the lower side of the wet type cleaning bin, and a wet type communication pipeline is installed between the wet type cleaning bin, the wet type water falling bin and the wet type water pump.

6. The equipment for treating low-carbon preservative wooden poles according to claim 5, characterized in that, The circulating filtering mechanism includes a circulating pulling bin, the circulating pulling bin is arranged through the rotary filtering processing bin, a circulating filtering screen plate is fixedly installed on the lower side of the circulating pulling bin, a pair of circulating balance rods are fixedly installed in the circulating pulling bin, a circulating balance block is slidingly installed on the circulating balance rod, a circulating sliding frame is installed on the pair of circulating balance blocks, and a circulating threaded block is fixedly installed on the circulating sliding frame.

7. The equipment for treating low-carbon preservative wooden poles according to claim 6, characterized in that, A circulating motor is fixedly installed on one side of the circulating pulling bin, a circulating threaded rod is fixedly installed on the circulating motor, the circulating threaded rod is arranged through the circulating pulling bin and the circulating threaded block, the circulating threaded rod is matched with the circulating threaded block, and a circulating closed bin is fixedly installed on one end of the circulating sliding frame.

8. The equipment for treating low-carbon preservative wooden poles according to claim 7, characterized in that, The circulation type closed bin is fixedly provided with a limiting motor, the limiting motor is fixedly provided with a circulation type motor shaft, the circulation type motor shaft penetrates the circulation type closed bin and the circulation type sliding frame, the circulation type filter screen is provided with a circulation type cleaning brush, a pair of circulation type connecting rods are fixedly installed between the circulation type cleaning brush and the circulation type motor shaft, and the circulation type sliding frame is provided with a limiting groove matched with the circulation type connecting rods.

9. The equipment for treating low-carbon preservative wooden poles according to claim 1, characterized in that, The blocking type water filtering mechanism comprises a blocking type water filtering net, the blocking type water filtering net is fixedly provided with blocking type water filtering cotton, the rotating type filtering treatment bin is fixedly provided with a blocking type motor on one side, the blocking type motor penetrates the rotating type filtering treatment bin, the blocking type motor is fixedly provided with a blocking type rotating frame, and the blocking type rotating frame is rotatably provided with a blocking type compression roller.

10. A treatment process for the preservation of low-carbon preservative wooden poles according to any one of claims 1 to 9, characterized in that, The method comprises the following steps: S1, screening wood and peeling wood through a peeler; S2, starting the steam equipment body, conveying biomass fuel into the steam equipment body through a conveying device, and preheating wood poles through a drying kiln; S3, loading wood into a high-pressure tank, performing vacuum pretreatment, and then injecting coal tar; S4, pressurizing and impregnating wood through the high-pressure tank, and detecting the depth of penetration; S5, exhaust gas is discharged into the rotating type filtering treatment bin through the rotating type communication pipeline, and the exhaust gas is guided by the rotating type guide cone to contact the rotating type guide blade, so that the exhaust gas enters the rotating type filtering treatment bin in a spiral shape; S6, the exhaust gas contacts the rotating rotating type filter ring net, is filtered by the rotating type filter ring net, contacts the wetted wet type guide cloth, part of the exhaust gas is filtered by the wet type guide cloth, passes through the wet type guide cloth, part of the exhaust gas is guided by the wet type guide cloth, contacts the water at the bottom of the rotating type filtering treatment bin, and impurities are absorbed by the water; S7, the circulation type cleaning brush cleans the circulation type filter screen, reduces the probability of the circulation type filter screen being blocked, allows water to be filtered by the circulation type filter screen, forms a cycle, and the filtered exhaust gas can be further filtered by the blocking type water filtering cotton and discharged from the rotating type filtering treatment bin.