Intelligent combined waste gas treatment equipment and method for ecological protection engineering construction
The intelligent combined waste gas treatment equipment, utilizing dust suppression components, rotating components, and cleaning components, solves the problems of particulate matter sedimentation and inconvenient cleaning in waste gas treatment during ecological protection engineering construction, achieving efficient, comprehensive adsorption, and convenient cleaning of waste gas.
Patent Information
- Application Number
- CN202510637593.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2045-05-19
AI Technical Summary
During the construction of ecological protection projects, particulate matter in the exhaust gas settles in the water pool, preventing the water from being recycled. Furthermore, objects containing moisture cannot be fully utilized or cleaned up in a timely manner, affecting the normal use of equipment.
The intelligent combined waste gas treatment equipment includes a dust suppression component, a rotating component, and a cleaning component. Through the cooperation of a fan, a water pump, and a solenoid valve, it achieves the adsorption, rotation, and cleaning of particulate matter, ensuring the efficient operation of the equipment.
It effectively reduces the particulate content in exhaust gas, achieves comprehensive adsorption and is easy to clean, ensuring the continuous and efficient operation of the equipment.
Smart Images

Figure CN120502187B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of waste gas treatment, in particular to an intelligent combined waste gas treatment equipment and method for ecological protection engineering construction. BACKGROUND
[0002] Ecological protection engineering refers to a series of systematic engineering for repairing, protecting and sustainable utilization of ecological system through scientific planning, technical means and management measures, and its goal is to maintain biodiversity, improve ecological environment, respond to climate change and promote harmonious coexistence between human beings and nature. However, during the construction of ecological protection engineering, excavators and other machinery are needed to construct the soil, which will generate a large amount of waste gas.
[0003] Publication No. CN115970454B discloses a water seal device and waste gas absorption method suitable for removing waste gas of alkali liquor. The purpose of the present application is to provide a water seal device and waste gas absorption method suitable for removing waste gas of alkali liquor, which can make waste gas and water fully contact and make waste gas more effectively absorbed by water. The water seal device and waste gas absorption method suitable for removing waste gas of alkali liquor comprises a rack and a lower water seal tank, and the lower water seal tank is connected to the middle part of the rack. The gas inlet pipe of the present application can guide the waste gas into the waste gas distribution pipe, and the waste gas is sprayed from the one-way air jet head. Water absorbs waste gas to remove waste gas, and the rotating pipe can drive the one-way air jet head to rotate, so that the waste gas is dispersed and sprayed into water, so that the waste gas and water are fully contacted.
[0004] Although the above-mentioned application and the prior art can improve the absorption rate of waste gas and make waste gas more effectively absorbed by water, when the above-mentioned application and the prior art are used to treat the waste gas generated during the construction of ecological protection engineering, since the waste gas contains a large amount of particles, the particles in the waste gas will precipitate in the water pool when the waste gas is absorbed by water, thereby causing the water in the water pool to be unable to be recycled, and when the particles in the waste gas are adsorbed by the water-containing object, since the input end of the waste gas is always fixed, only one end of the water-containing object can absorb the particles in the waste gas, thereby causing the water-containing object to be not fully utilized, and when the surface of the water-containing object is covered with waste gas particles, the water-containing object cannot be cleaned in time, thereby affecting the normal use of the equipment. Therefore, the present application provides an intelligent combined waste gas treatment equipment and method for ecological protection engineering construction. SUMMARY
[0005] (I) Technical problems solved
[0006] In view of the defects of the prior art, the intelligent combined waste gas treatment equipment and method for ecological protection engineering construction are provided, which have the advantages of reducing particle content, comprehensive adsorption and convenient cleaning, and solve the problems that in the prior art and the above-mentioned application, when waste gas generated in the construction of ecological protection engineering is treated, because the waste gas contains a large amount of particles, when the waste gas is absorbed by water, the particles in the waste gas will precipitate in the water tank, thereby causing the water in the water tank to be unable to be recycled, and when the particles in the waste gas are adsorbed by the object with moisture, because the input end of the waste gas is always fixed, only one end of the object with moisture can absorb the particles in the waste gas, thereby the object with moisture cannot be fully utilized, and when the surface of the object with moisture is covered with waste gas particles, the object with moisture cannot be cleaned in time, thereby affecting the normal use of the equipment.
[0007] (II) Technical scheme
[0008] To achieve the above-mentioned purposes of reducing particle content, comprehensive adsorption and convenient cleaning, the present application provides the following technical scheme: an intelligent combined waste gas treatment equipment for ecological protection engineering construction, comprising: a driving box and a treatment box fixedly connected to the top of the driving box,
[0009] A fan is arranged on one side of the treatment box, and the fan and the treatment box are communicated through an air inlet pipe.
[0010] A water tank is arranged on the side of the treatment box away from the fan, and the water tank and the treatment box are communicated through an air outlet pipe, and one side of the water tank is fixedly communicated with an exhaust pipe.
[0011] A dust falling assembly is arranged in the interior of the treatment box and is used for absorbing most of the particles in the waste gas, thereby avoiding the accumulation of particles at the bottom of the water tank, the dust falling assembly comprises a plurality of first attachment rods and a plurality of second attachment rods rotatably connected in the interior of the driving box, and the plurality of first attachment rods and the plurality of second attachment rods extend into the interior of the treatment box.
[0012] A rotating assembly is arranged in the interior of the treatment box and is used for rotating the plurality of first attachment rods and the plurality of second attachment rods, so as to increase the adsorption space on the surface of the first attachment rods and the second attachment rods.
[0013] A cleaning assembly is arranged in the interior of the treatment box and is used for cleaning the dust particles adsorbed on the surface of the plurality of first attachment rods and the plurality of second attachment rods, thereby not affecting the subsequent normal use.
[0014] Further, the dust falling assembly further comprises a first water pump arranged on one side of the driving box, one end of the first water pump is provided with a water inlet pipe, the water inlet pipe penetrates into the inside of the water tank, the end of the first water pump away from the water inlet pipe is provided with a water outlet pipe, the end of the water outlet pipe away from the first water pump is fixedly connected to the bottom of the treatment box.
[0015] Further, the back of the treatment box is provided with a first opening and a second opening, the first opening and the second opening are communicated through a U-shaped pipe, one side of the treatment box is fixedly connected with a backwater pipe, the backwater pipe is fixedly connected with one side of the water tank, the surface of the backwater pipe is provided with a first electromagnetic valve, the surface of the air outlet pipe is provided with a second electromagnetic valve.
[0016] Further, the surface of the treatment box is fixedly connected with a control panel, the inside of the water tank is fixedly connected with a filter screen, the backwater pipe is located on the top of the filter screen, the water inlet pipe is located on the bottom of the filter screen, the shape of the air outlet pipe is L-shaped, and the air outlet pipe is located on the top of the filter screen.
[0017] Further, the middle part of the air inlet pipe is provided with a protection disc, the rotating assembly comprises a driving rod rotatably connected between the protection disc and the driving box, a plurality of rotating pieces are fixedly connected to the surface of the driving rod and located in the inside of the protection disc, and a first driving sprocket is fixedly connected to the surface of the driving rod and located in the inside of the driving box.
[0018] Further, the rotating assembly further comprises a first driven sprocket fixedly connected to the surface of one of the first attachment rods and a fixed gear fixedly connected to the surfaces of the first attachment rods and the second attachment rods, and the first driven sprocket and the first driving sprocket are driven through a first chain.
[0019] Further, the fixed gears on the surfaces of the first attachment rods are in meshing transmission, the fixed gears on the surfaces of the second attachment rods are in meshing transmission, and one of the first attachment rods and one of the second attachment rods are in transmission through a transmission mechanism.
[0020] Further, the cleaning assembly comprises a floating plate slidably connected in the inside of the treatment box and a partition plate fixedly connected in the inside of the treatment box, a plurality of scraping rings are fixedly connected to the top of the floating plate, the insides of the scraping rings are in contact with the surfaces of the first attachment rods and the second attachment rods, a plurality of third openings and a slot are formed in the top of the partition plate, and a collecting box is fixedly connected to the bottom of the slot.
[0021] Further, the cleaning assembly further comprises a fixed cylinder fixedly connected in the treatment box, a spring is fixedly connected in the fixed cylinder, and an extension cylinder is slidably connected in the fixed cylinder, one end of the extension cylinder is fixedly connected with one end of the spring, and the other end of the extension cylinder fixedly connected with a push plate.
[0022] The application further provides an intelligent combined waste gas treatment method for ecological protection engineering construction.
[0023] Step 1, move the equipment to the braking position, and transport the water in the water tank to the inside of the treatment box through the dust falling assembly, so that the surfaces of the first and second attachment rods are covered with moisture;
[0024] Step 2, start the fan, the fan draws the external waste gas into the inside of the treatment box, so that the first and second attachment rods absorb the particles in the waste gas;
[0025] Step 3, when the fan is operating, the fan synchronously drives the rotating assembly, so that the rotating assembly drives the first and second attachment rods to rotate, and the surfaces of the first and second attachment rods can attach more particles;
[0026] Step 4, after the waste gas in the treatment box is preliminarily treated, the waste gas enters the inside of the water tank through the air outlet pipe, and then the water in the water tank purifies the waste gas again;
[0027] Step 5, when the surfaces of the first and second attachment rods are covered with particles, the dust falling assembly is started again, the dust falling assembly drives the cleaning assembly to operate, and then the particles on the surfaces of the first and second attachment rods are treated.
[0028] (Three) beneficial effects
[0029] Compared with the prior art, the application provides an intelligent combined waste gas treatment device and method for ecological protection engineering construction, which has the following beneficial effects:
[0030] 1. The intelligent combined waste gas treatment equipment and method for ecological protection engineering construction, by cooperation of the water tank and the dust falling assembly, the first electromagnetic valve and the second electromagnetic valve are opened to close the air outlet pipe and the water return pipe, the first water pump is started, the water in the water tank is pumped out through the water inlet pipe, then is transported to the inside of the treatment box through the water outlet pipe, so that the water flow covers the surfaces of the first and second attachment rods, then the first and second electromagnetic valves are closed in turn to open the air outlet pipe and the water return pipe, so that the water in the treatment box flows back to the water tank through the water return pipe, then the fan is started to transport the external waste gas to the inside of the treatment box, the particles in the waste gas are continuously contacted and adsorbed by the first and second attachment rods, so that the particle content in the waste gas is reduced, thereby achieving the effect of reducing the particle content.
[0031] 2. The intelligent combined waste gas treatment equipment and method for ecological protection engineering construction, by cooperation of the fan and the rotating assembly, when the fan is started, the external waste gas is transported to the inside of the treatment box through the air inlet pipe, when the waste gas passes through the air inlet pipe, the waste gas drives the driving rod to rotate through the rotating piece, the driving rod drives one of the first attachment rods to rotate through the first driving sprocket and the first chain, then drives the second attachment rod to rotate through the transmission mechanism, the particles in the waste gas are absorbed by the first and second attachment rods in the rotating process, so that the particles can better adhere to the surfaces of the first and second attachment rods, thereby achieving the effect of comprehensive adsorption.
[0032] 3. The intelligent combined waste gas treatment equipment and method for ecological protection engineering construction, by cooperation of the dust falling assembly and the cleaning assembly, when the water in the water tank enters the treatment box through the water outlet pipe, the water flow continuously rises in the inside of the treatment box and drives the floating plate to rise, in the process of rising of the floating plate, the particles on the surfaces of the first and second attachment rods are scraped off by the scraping ring, when the floating plate moves to the top, the scraping ring coincides with the third opening, the water flow is transported to the top of the partition plate through the U-shaped pipe, with continuous transportation of the water flow, the water flow drives the push plate to move, the push plate pushes the particles on the top of the scraping ring, so that the particles are transported to the inside of the collecting box, thereby the surfaces of the first and second attachment rods are treated, so that the particles in the subsequent waste gas can be absorbed again, thereby achieving the effect of facilitating cleaning.
[0033] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art upon examination of the following or can be learned by practice of the present application. The objects and other advantages of the present application can be realized and attained by the structure particularly pointed out in the written description and claims hereof. BRIEF DESCRIPTION OF DRAWINGS
[0034] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application;
[0035] Figure 2 Fig. 1 is a perspective view of the driving box according to the present application;
[0036] Figure 3 Fig. 2 is a sectional view of the processing box according to the present application;
[0037] Figure 4 Fig. 3 is another sectional view of the processing box according to the present application;
[0038] Figure 5 Fig. 4 is a sectional view of the protection disc according to the present application;
[0039] Figure 6 Fig. 5 is a perspective view of the first and second attachment rods according to the present application;
[0040] Figure 7 Fig. 6 is a sectional view of the interior of the processing box according to the present application;
[0041] Figure 8 Fig. 7 is another sectional view of the interior of the processing box according to the present application;
[0042] Figure 9 Fig. 8 is a perspective view of the floating plate according to the present application;
[0043] Figure 10 Fig. 9 is a perspective view of the fixing cylinder according to the present application;
[0044] Figure 11 Fig. 10 is a sectional view of the fixing cylinder according to the present application;
[0045] Figure 12 Fig. 11 is a sectional view of the water tank according to the present application.
[0046] In the figure: 1, driving box; 11, processing box; 111, control panel; 112, air outlet pipe; 113, first opening; 114, second opening; 115, U-shaped pipe; 116, water return pipe; 117, first electromagnetic valve; 12, fan; 121, air inlet pipe; 122, protection disc; 13, water tank; 131, filter screen; 132, air exhaust pipe; 2, dust falling assembly; 21, first water pump; 211, water inlet pipe; 212, water outlet pipe; 22, first attachment rod; 23, second attachment rod; 3, rotating assembly; 31, driving rod; 311, rotating piece; 312, first driving sprocket; 313, first chain; 32, first driven sprocket; 33, fixed gear; 34, transmission mechanism; 4, cleaning assembly; 41, floating plate; 411, scraping ring; 42, partition plate; 421, third opening; 422, slot; 423, collection box; 43, fixing cylinder; 431, spring; 432, extending cylinder; 433, push plate. DETAILED DESCRIPTION
[0047] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of the present application.
[0048] In the embodiments of the present application, the devices or elements are not necessarily required to have a specific orientation, to be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the embodiments of the present application. In the description of the embodiments of the present application, the meaning of "a plurality of" is two or more, unless otherwise specified.
[0049] Specific embodiment one, please refer to Figures 1 to 3 , the intelligent combined waste gas treatment equipment for ecological protection engineering construction, comprising: a drive box 1 and a treatment box 11 fixedly connected to the top of the drive box 1,
[0050] A fan 12 is arranged on one side of the treatment box 11, and the fan 12 is in communication with the treatment box 11 through an air inlet pipe 121;
[0051] A water tank 13 is arranged on the side of the treatment box 11 away from the fan 12, and the water tank 13 is in communication with the treatment box 11 through an air outlet pipe 112. One side of the water tank 13 is fixedly connected with an exhaust pipe 132;
[0052] A dust falling assembly 2 is arranged in the interior of the treatment box 11, which is used for absorbing most of the particles in the waste gas, thereby avoiding the accumulation of particles at the bottom of the water tank 13. The dust falling assembly 2 comprises a plurality of first attachment rods 22 and a plurality of second attachment rods 23 rotatably connected in the interior of the drive box 1, and the first attachment rods 22 and the second attachment rods 23 extend into the interior of the treatment box 11. The dust falling assembly 2 further comprises a first water pump 21 arranged on one side of the drive box 1. One end of the first water pump 21 is provided with an inlet pipe 211 which penetrates into the interior of the water tank 13. The end of the first water pump 21 away from the inlet pipe 211 is provided with an outlet pipe 212. The end of the outlet pipe 212 away from the first water pump 21 is fixedly connected to the bottom of the treatment box 11. A first opening 113 and a second opening 114 are formed in the back of the treatment box 11. The first opening 113 and the second opening 114 are in communication through a U-shaped pipe 115. One side of the treatment box 11 is fixedly connected with a backwater pipe 116 which is fixedly connected with one side of the water tank 13. A first electromagnetic valve 117 is arranged on the surface of the backwater pipe 116. A second electromagnetic valve is arranged on the surface of the air outlet pipe 112.
[0053] The rotating assembly 3 is arranged in the interior of the processing box 11 and is used for rotating the first attachment rods 22 and the second attachment rods 23, so that the adsorption space of the surfaces of the first attachment rods 22 and the second attachment rods 23 is increased.
[0054] The cleaning assembly 4 is arranged in the interior of the processing box 11 and is used for cleaning the dust particles adsorbed on the surfaces of the first attachment rods 22 and the second attachment rods 23, so as not to affect the subsequent normal use.
[0055] When it is required to reduce the particle content in the exhaust gas, the first electromagnetic valve 117 and the second electromagnetic valve are opened to close the air outlet pipe 112 and the water return pipe 116, the first water pump 21 is started, the water in the water tank 13 is pumped out through the water inlet pipe 211, and then is transported to the interior of the processing box 11 through the water outlet pipe 212, so that the water flow covers the surfaces of the first attachment rods 22 and the second attachment rods 23, then the first electromagnetic valve 117 and the second electromagnetic valve are closed in sequence to open the air outlet pipe 112 and the water return pipe 116, so that the water in the interior of the processing box 11 flows back to the water tank 13 through the water return pipe 116, then the fan 12 is started to transport the external exhaust gas to the interior of the processing box 11, so that the first attachment rods 22 and the second attachment rods 23 continuously contact and adsorb the particles in the exhaust gas, thereby reducing the particle content in the exhaust gas.
[0056] Specific embodiment two, please refer to Figures 1 to 6 , according to the intelligent combined exhaust gas treatment equipment for ecological protection engineering construction provided in specific embodiment one, the further technical solutions are provided in the embodiment:
[0057] The middle part of the air inlet pipe 121 is provided with a protection disc 122, the rotating assembly 3 comprises a driving rod 31 rotationally connected between the protection disc 122 and the driving box 1, a plurality of rotating pieces 311 are fixedly connected to the surface of the driving rod 31 and located in the interior of the protection disc 122, a first driving sprocket 312 is fixedly connected to the surface of the driving rod 31 and located in the interior of the driving box 1, the rotating assembly 3 further comprises a first driven sprocket 32 fixedly connected to the surface of one of the first attachment rods 22 and a fixed gear 33 fixedly connected to the surfaces of the first attachment rods 22 and the second attachment rods 23, the first driven sprocket 32 and the first driving sprocket 312 are driven through a first chain 313, the fixed gears 33 on the surfaces of the first attachment rods 22 are in meshing transmission, the fixed gears 33 on the surfaces of the second attachment rods 23 are in meshing transmission, and one of the first attachment rods 22 and one of the second attachment rods 23 are driven through a transmission mechanism 34.
[0058] It should be noted that the transmission mechanism 34 includes a second driving sprocket fixedly connected to the surface of one of the first attachment rods 22 and a second driven sprocket fixedly connected to the surface of one of the second attachment rods 23, and the second driving sprocket and the second driven sprocket are driven by a second chain therebetween;
[0059] When it is necessary to make the particles in the exhaust gas completely adhere to the surfaces of the first attachment rods 22 and the second attachment rods 23, the fan 12 is started to transport the external exhaust gas to the inside of the treatment box 11 through the air inlet pipe 121. When the exhaust gas passes through the air inlet pipe 121, the exhaust gas drives the driving rod 31 to rotate through the rotating piece 311, and the driving rod 31 drives one of the first attachment rods 22 to rotate through the first driving sprocket 312 and the first chain 313, and then drives the second attachment rod 23 to rotate through the transmission mechanism 34. The first attachment rod 22 and the second attachment rod 23 absorb the particles in the exhaust gas during rotation, so that the particles can better adhere to the surfaces of the first attachment rod 22 and the second attachment rod 23.
[0060] Specific embodiment three, please refer to Figures 1 to 11 , according to the intelligent combined exhaust gas treatment equipment for ecological protection engineering construction provided in specific embodiment two, the further technical scheme is provided in the embodiment:
[0061] The cleaning assembly 4 includes a floating plate 41 slidingly connected inside the treatment box 11 and a partition plate 42 fixedly connected inside the treatment box 11. The top of the floating plate 41 is fixedly connected with a plurality of scraping rings 411, the interiors of the plurality of scraping rings 411 are in contact with the surfaces of the plurality of first attachment rods 22 and the plurality of second attachment rods 23, and the top of the partition plate 42 is provided with a plurality of third openings 421 and a slot 422. The bottom of the slot 422 is fixedly connected with a collection box 423. The cleaning assembly 4 further includes a fixed cylinder 43 fixedly connected inside the treatment box 11, a spring 431 fixedly connected inside the fixed cylinder 43, a protruding cylinder 432 slidingly connected inside the fixed cylinder 43, one end of the protruding cylinder 432 fixedly connected with one end of the spring 431, and a push plate 433 fixedly connected with the end of the protruding cylinder 432 away from the spring 431.
[0062] When the first and second attachment rods 22 and 23 need to be treated with the particles on the surface, when the water in the water tank 13 enters the treatment tank 11 through the water outlet pipe 212, the water flow rises in the inside of the treatment tank 11 and drives the floating plate 41 to rise. In the process of the floating plate 41 rising, the scraper ring 411 scrapes the particles on the surface of the first and second attachment rods 22 and 23. When the floating plate 41 moves to the top, the scraper ring 411 coincides with the third opening 421. The water flow is transported to the top of the partition plate 42 through the U-shaped pipe 115. With the continuous transportation of the water flow, the water flow drives the push plate 433 to move, so that the push plate 433 pushes the particles on the top of the scraper ring 411, and the particles are transported to the inside of the collection box 423, so that the surfaces of the first and second attachment rods 22 and 23 are treated, and the particles in the subsequent exhaust gas can be absorbed again.
[0063] Specific embodiment four, please refer to Figures 1 to 12 , according to the ecological protection engineering construction intelligent combined waste gas treatment equipment provided in specific embodiment three, the further technical scheme is provided in the embodiment:
[0064] The surface of the treatment tank 11 is fixedly connected with the control panel 111. The inside of the water tank 13 is fixedly connected with the filter screen 131. The backwater pipe 116 is located at the top of the filter screen 131. The water inlet pipe 211 is located at the bottom of the filter screen 131. The shape of the exhaust pipe 112 is L-shaped. The exhaust pipe 112 is located at the top of the filter screen 131.
[0065] It should be noted that the control panel 111 is electrically connected with the first electromagnetic valve 117, the second electromagnetic valve, the fan 12 and the first water pump 21. The opening and closing of the first electromagnetic valve 117, the second electromagnetic valve, the fan 12 and the first water pump 21 are controlled by the operation button on the surface of the control panel 111. The exhaust pipe 112 is located at the top of the filter screen 131 and at the top of the water surface in the water tank 13. The backwater pipe 116 is located at the top of the water surface in the water tank 13. The inside of the exhaust pipe 132 is provided with activated carbon. One side of the water tank 13 is provided with a second water pump. The output end of the second water pump is provided with a flow pipe. The bottom of the flow pipe is fixedly connected with a water distribution disc. The bottom of the water distribution disc is fixedly connected with a plurality of spray heads. In order to avoid the exhaust gas discharged from the exhaust pipe 112 from producing bubbles in the water and making the dust particles return to the air with the breaking of the bubbles, the second water pump transports the water in the water tank 13 to the water distribution disc through the flow pipe, and then the water is sprayed out from the plurality of spray heads, so that the water mist sprayed out from the spray heads can absorb the fine particles in the air.
[0066] When the exhaust gas needs to be treated again, the particles in the exhaust gas are treated in the inside of the treatment box 11, and the fan 12 continuously transports the external exhaust gas, so that the exhaust gas in the inside of the treatment box 11 enters the water tank 13 through the air outlet pipe 112, the exhaust gas discharged from the air outlet pipe 112 is discharged in water, and the water in the water tank 13 further purifies the exhaust gas;
[0067] In a fifth embodiment, the present application further provides an intelligent combined exhaust gas treatment method for ecological protection engineering construction, which specifically comprises the following steps:
[0068] Step 1, move the equipment to the braking position, transport the water in the water tank 13 to the inside of the treatment box 11 through the dust falling assembly 2, so that the surfaces of the first and second attachment rods 22 and 23 are covered with water;
[0069] Step 2, start the fan 12, the fan 12 sucks the external exhaust gas into the inside of the treatment box 11, so that the first and second attachment rods 22 and 23 absorb the particles in the inside of the exhaust gas;
[0070] Step 3, when the fan 12 is operating, the fan 12 synchronously drives the rotating assembly 3, so that the rotating assembly 3 drives the first and second attachment rods 22 and 23 to rotate, and then the surfaces of the first and second attachment rods 22 and 23 can attach more particles;
[0071] Step 4, after the exhaust gas in the inside of the treatment box 11 is preliminarily treated, then enters the inside of the water tank 13 through the air outlet pipe 112, and then the water in the inside of the water tank 13 purifies the exhaust gas again;
[0072] Step 5, when the surfaces of the first and second attachment rods 22 and 23 are covered with particles, start the dust falling assembly 2 again, so that the dust falling assembly 2 drives the cleaning assembly 4 to operate, and then the particles on the surfaces of the first and second attachment rods 22 and 23 are treated.
[0073] Working principle: in use, the device is moved to the designated position, when the particle content in the exhaust gas needs to be reduced, the first electromagnetic valve 117 and the second electromagnetic valve are opened to close the air outlet pipe 112 and the water return pipe 116, the first water pump 21 is started, the first water pump 21 draws water in the water tank 13 through the water inlet pipe 211, and then sends it to the inside of the treatment box 11 through the water outlet pipe 212, so that the water flow covers the surface of the first and second attachment rods 22 and 23, then the first electromagnetic valve 117 and the second electromagnetic valve are closed in turn to open the air outlet pipe 112 and the water return pipe 116, so that the water in the treatment box 11 flows back to the water tank 13 through the water return pipe 116, then the fan 12 is started to send the external exhaust gas to the inside of the treatment box 11, so that the first and second attachment rods 22 and 23 continuously contact and adsorb the particles in the exhaust gas, thereby reducing the particle content in the exhaust gas, when the particles in the exhaust gas need to be completely attached to the surface of the first and second attachment rods 22 and 23, the fan 12 sends the external exhaust gas to the inside of the treatment box 11 through the air inlet pipe 121 when the exhaust gas passes through the air inlet pipe 121, the exhaust gas drives the drive rod 31 to rotate through the rotating piece 311, so that the drive rod 31 drives one of the first attachment rods 22 to rotate through the first drive sprocket 312 and the first chain 313, and then drives the second attachment rod 23 to rotate through the transmission mechanism 34, the first and second attachment rods 22 and 23 absorb the particles in the exhaust gas during rotation, so that the particles can better adhere to the surface of the first and second attachment rods 22 and 23, when the exhaust gas needs to be treated again, the particles in the exhaust gas are treated in the treatment box 11, and the fan 12 continuously sends the external exhaust gas, so that the exhaust gas in the treatment box 11 enters the water tank 13 through the air outlet pipe 112, so that the exhaust gas discharged from the air outlet pipe 112 rises in the water, thereby purifying the water in the water tank 13 again, when the particles on the surface of the first and second attachment rods 22 and 23 need to be treated, when the water in the water tank 13 enters the treatment box 11 through the water outlet pipe 212, the water flow continuously rises in the treatment box 11 and drives the floating plate 41 to rise, in the process of rising of the floating plate 41, the particles on the surface of the first and second attachment rods 22 and 23 are scraped off by the scraping ring 411, when the floating plate 41 moves to the top, the scraping ring 411 coincides with the third opening 421, the water flow is sent to the top of the partition plate 42 through the U-shaped pipe 115, with the continuous delivery of the water flow, the water flow drives the push plate 433 to move, so that the push plate 433 pushes the particles on the top of the scraping ring 411, so that the particles are delivered to the inside of the collection box 423, thereby treating the surface of the first and second attachment rods 22 and 23, so that the particles in the subsequent exhaust gas can be absorbed again.
[0074] The contents not described in detail in the specification all belong to the prior art known to those skilled in the art.
[0075] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and implementations, it is to be understood that the terminology used is for the purpose of descriptive clarity and that it should be taken in its broadest possible sense. For example, the terms "on", "above", "upper", "lower", and "under" are used herein to generally describe the spatial relationships of various elements. These spatially relative terms are for the purpose of illustrating certain embodiments of the present application and are in no way intended to limit the scope of the present application. It is further understood that the spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. For example, if a device described is turned over in use, a relative central feature could be upward or downward, or to the left or the right, depending on the particular orientation being referred to. The apparatus can be oriented in any direction and the spatially relative terms should be construed accordingly.
[0076] Parallel: The parallel defined in this application is not limited to absolute parallel, the definition of this parallel can be understood as substantially parallel, allowing not absolute parallel caused by factors such as assembly tolerance, design tolerance, structure flatness, allowing the existence of a small angle range of error, for example, within the assembly error range of 10 degrees, can be understood as parallel relationship.
[0077] Vertical: The vertical defined in this application is not limited to the relationship of absolute vertical intersection (included angle is 90 degrees), allowing not absolute vertical intersection relationship caused by factors such as assembly tolerance, design tolerance, structure flatness, allowing the existence of a small angle range of error, for example, within the assembly error range of 80 degrees to 100 degrees, can be understood as vertical relationship.
[0078] While embodiments of the application have been shown and described, it is to be understood that the application is not limited to the details of the embodiments described, since the scope of the expenditure is defined with the appended claims and their equivalents.
Claims
1. An intelligent combined waste gas treatment equipment for ecological protection engineering construction, comprising: The utility model provides an exhaust gas treatment device, which comprises a driving box (1) and a processing box (11) fixedly connected to the top of the driving box (1), wherein a fan (12) is arranged on one side of the processing box (11), and the fan (12) is communicated with the processing box (11) through an air inlet pipe (121); a water tank (13) is arranged on the side of the processing box (11) away from the fan (12), and the water tank (13) is communicated with the processing box (11) through an air outlet pipe (112); one side of the water tank (13) is fixedly communicated with an air outlet pipe (132); the back of the processing box (11) is provided with a first opening (113) and a second opening (114), and the first opening (113) and the second opening (114) are communicated through a U-shaped pipe (115); a dust falling assembly (2) is arranged in the processing box (11) and is used for absorbing most of the particles in the exhaust gas, thereby avoiding the accumulation of particles at the bottom of the water tank (13); the dust falling assembly (2) comprises a plurality of first attachment rods (22) and a plurality of second attachment rods (23) rotatably connected in the driving box (1), and the first attachment rods (22) and the second attachment rods (23) extend into the processing box (11); a rotating assembly (3) is arranged in the processing box (11) and is used for rotating the first attachment rods (22) and the second attachment rods (23), so as to increase the adsorption space on the surfaces of the first attachment rods (22) and the second attachment rods (23); the middle part of the air inlet pipe (121) is provided with a protective disc (122); the rotating assembly (3) comprises a driving rod (31) rotatably connected between the protective disc (122) and the driving box (1); a plurality of rotating pieces (311) are fixedly connected to the surface of the driving rod (31) and located in the inside of the protective disc (122); a first driving sprocket (312) is fixedly connected to the surface of the driving rod (31) and located in the inside of the driving box (1); the rotating assembly (3) further comprises a first driven sprocket (32) fixedly connected to the surface of one of the first attachment rods (22) and a fixed gear (33) fixedly connected to the surfaces of the first attachment rods (22) and the second attachment rods (23); the first driven sprocket (32) and the first driving sprocket (312) are driven through a first chain (313); the fixed gears (33) on the surfaces of the first attachment rods (22) are in meshing transmission; the fixed gears (33) on the surfaces of the second attachment rods (23) are in meshing transmission; one of the first attachment rods (22) and one of the second attachment rods (23) are driven through a transmission mechanism (34). The cleaning assembly (4) is arranged in the inside of the processing box (11), which is used for cleaning the dust particles adsorbed on the surface of the first and second adhesive rods (22 and 23), so as not to affect the subsequent normal use. The cleaning assembly (4) comprises a floating plate (41) and a partition plate (42), the floating plate (41) is slidably connected in the inside of the processing box (11), and the partition plate (42) is fixedly connected in the inside of the processing box (11). The top of the floating plate (41) is fixedly connected with a plurality of scraping rings (411), the inside of the scraping ring (411) is in contact with the surface of the first and second adhesive rods (22 and 23), and the top of the partition plate (42) is provided with a plurality of third openings (421) and a groove (422). The bottom of the groove (422) is fixedly connected with a collecting box (423). The cleaning assembly (4) further comprises a fixed cylinder (43) fixedly connected in the inside of the processing box (11), the inside of the fixed cylinder (43) is fixedly connected with a spring (431), and the inside of the fixed cylinder (43) is slidably connected with an extension cylinder (432). One end of the extension cylinder (432) is fixedly connected with one end of the spring (431), and the other end of the extension cylinder (432) away from the spring (431) is fixedly connected with a push plate (433). When the floating plate (41) moves to the top, the scraping ring (411) coincides with the third opening (421), the water flow is transported to the top of the partition plate (42) through the U-shaped pipe (115), and the water flow drives the push plate (433) to move, so that the particles on the top of the scraping ring (411) are pushed by the push plate (433) and transported into the inside of the collecting box (423). Thus, the surface of the first and second adhesive rods (22 and 23) is treated, and the particles in the subsequent exhaust gas can be absorbed again.
2. The intelligent combined waste gas treatment equipment for ecological engineering construction according to claim 1, characterized in that: The dust falling assembly (2) further comprises a first water pump (21) arranged on one side of the driving box (1), one end of the first water pump (21) is provided with a water inlet pipe (211), the water inlet pipe (211) penetrates into the inside of the water tank (13), and the other end of the first water pump (21) away from the water inlet pipe (211) is provided with a water outlet pipe (212). The water outlet pipe (212) is fixedly communicated with the bottom of the processing box (11) away from the first water pump (21).
3. The intelligent combined waste gas treatment equipment for ecological engineering construction according to claim 2, characterized in that: One side of the processing box (11) is fixedly communicated with a water return pipe (116), the water return pipe (116) is fixedly communicated with one side of the water tank (13), and the surface of the water return pipe (116) is provided with a first electromagnetic valve (117). The surface of the air outlet pipe (112) is provided with a second electromagnetic valve.
4. The intelligent combined waste gas treatment equipment for ecological engineering construction according to claim 3, characterized in that: The surface of the processing box (11) is fixedly connected with a control panel (111), the inside of the water tank (13) is fixedly connected with a filter screen (131), the water return pipe (116) is located on the top of the filter screen (131), the water inlet pipe (211) is located on the bottom of the filter screen (131), and the air outlet pipe (112) is in the shape of L. The air outlet pipe (112) is located on the top of the filter screen (131).
5. The intelligent combined waste gas treatment method for ecological protection engineering construction, characterized in that: The intelligent combined waste gas treatment equipment for ecological protection engineering construction according to any one of claims 1-4, and the combined waste gas treatment method specifically comprises the following steps: Step 1, move the equipment to the braking position, and send the water in the water tank (13) to the inside of the treatment box (11) through the dust falling assembly (2), so that the surfaces of the first and second attachment rods (22 and 23) are covered with water; Step 2, start the fan (12), the fan (12) draws the external waste gas into the inside of the treatment box (11), so that the first and second attachment rods (22 and 23) absorb the particles in the waste gas; Step 3, when the fan (12) is operating, the fan (12) synchronously drives the rotating assembly (3), so that the rotating assembly (3) drives the first and second attachment rods (22 and 23) to rotate, and then the surfaces of the first and second attachment rods (22 and 23) can attach more particles; Step 4, as the waste gas in the inside of the treatment box (11) is preliminarily treated, then enters the inside of the water tank (13) through the air outlet pipe (112), and then the water in the inside of the water tank (13) purifies the waste gas again; Step 5, when the surfaces of the first and second attachment rods (22 and 23) are covered with particles, start the dust falling assembly (2) again, so that the dust falling assembly (2) drives the cleaning assembly (4) to operate, and then the particles on the surfaces of the first and second attachment rods (22 and 23) are treated.
Citation Information
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