Waste gas purification treatment equipment based on wind power driving
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-03-20
AI Technical Summary
[0004]现有的水洗设备多采用外接电源进行供能,长期使用,提高了废气净化的成本,因此需要一种基于风力驱动的废气净化处理设备
[0016] The utility model discloses a wind energy is converted into mechanical energy through the rotation of wind wheel, and the transmission efficiency is high, and under the condition of wind power, under the condition of guaranteeing the normal work of air pump one, through the electric cylinder control movable shaft, make gear one and gear two meshing drive, and then convert wind energy into electric energy, store up, when the wind is small, through the electric energy drive air pump two work and carry out waste gas purification, the utility model discloses the effect of purifying waste gas is good, and is pollution-free, and the waste gas efficiency is high through the water filter mode, and the cost is low.
Smart Images

Figure CN224009366U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to exhaust gas purification machine technical field, concretely relates to a kind of exhaust gas purification treatment equipment based on wind drive. BACKGROUND
[0002] Exhaust gas purification, as the key link in the field of environmental protection, aims at effectively removing or reducing harmful pollutants discharged into the atmosphere in various activities such as industrial production, transportation and daily life. These pollutants are diverse, including but not limited to sulfur dioxide, nitrogen oxides, particulate matter, volatile organic compounds, etc. They not only have a serious impact on air quality, causing environmental problems such as smog and acid rain, but also threaten human health, possibly leading to respiratory diseases, cardiovascular diseases and even cancer. Exhaust gas purification technology is diverse, with common methods such as absorption, adsorption, catalytic conversion and combustion. Absorption is a chemical reaction or physical dissolution between a specific liquid absorbent and pollutants in exhaust gas, separating them from exhaust gas. Adsorption uses adsorbents with high specific surface area, such as activated carbon and molecular sieves, to capture harmful substances in exhaust gas through physical adsorption. Catalytic conversion is a chemical reaction of pollutants in exhaust gas under the action of a catalyst, converting them into harmless or less harmful substances. Combustion is a high-temperature incineration method that oxidizes combustible pollutants in exhaust gas into harmless products such as carbon dioxide and water.
[0003] Exhaust gas purification by water filtration is a low-cost method in the field of exhaust gas purification. Water washing can remove multiple pollutants in exhaust gas, such as dust, impurities, acid gases, volatile organic compounds, ammonia, hydrogen sulfide, etc., and has good purification effect on complex pollution exhaust gas.
[0004] Existing water washing equipment is powered by external power supply, which increases the cost of exhaust gas purification over time. Therefore, a wind-driven exhaust gas purification treatment equipment is needed. SUMMARY
[0005] To solve the above technical problems, the utility model provides a kind of exhaust gas purification treatment equipment based on wind drive.
[0006] The technical solution of this utility model is: a wind-driven waste gas purification and treatment device, including an atomizing chamber, an atomizer on the right side of the atomizing chamber, the air outlet of the atomizer being connected to the atomizing chamber, an annular pipe network on the top of the atomizing chamber, multiple atomizing nozzles connected to the inner side of the annular pipe network, a water inlet pipe connected to one side of the annular pipe network, an air outlet pipe on the top of the atomizing chamber, a water washing chamber at the end of the air outlet pipe, and an air pump at the connection point, a connecting pipe at the air outlet of the air pump, a microporous aeration pipe at the lower end of the connecting pipe, a wind-driven mechanism connected to the drive shaft of the air pump via a belt drive, an exhaust pipe on the top of the water washing chamber, the exhaust pipe being connected to the top of the water washing chamber, a generator connected to the wind-driven mechanism via a transmission component, the generator being electrically connected to an energy storage battery, and the energy storage battery being electrically connected to the atomizer.
[0007] Furthermore, the wind-driven mechanism includes a fixed bracket, on which a wind turbine is rotatably connected, and the rotating shaft of the wind turbine is driven by a belt to the rotating shaft of the air pump.
[0008] The wind turbine in the wind-driven mechanism rotates, which drives the belt to rotate, and in turn drives the shaft of the first air pump to rotate. The first air pump adopts existing technology and is driven by wind power, so that the exhaust gas of this device enters the microporous aeration pipe.
[0009] Furthermore, the transmission assembly includes a first gear mounted on the wind turbine's rotating shaft and a second gear meshing with the first gear. The second gear has a movable shaft at its center, and a sleeve is provided at the rear end of the movable shaft. The sleeve is sleeved with the rotating shaft of the generator.
[0010] Explanation: The rotation of the wind turbine drives gear one to rotate, gear one drives gear two to rotate, which in turn drives the movable shaft to rotate. The other end of the movable shaft is connected to the output shaft of the generator through a sleeve.
[0011] Furthermore, two connecting rods are provided below the movable shaft, and an electric cylinder is fixed to the end of the connecting rod.
[0012] Explanation: The electric cylinder drives the connecting rod to extend and retract, which in turn drives the movable shaft to move, causing gear one and gear two to mesh or separate.
[0013] Furthermore, a branch pipe is provided in the middle of the air outlet pipe, and an air pump II is provided on the branch pipe, which is electrically connected to the battery.
[0014] Explanation: The electricity generated by wind power drives the second air pump, which avoids the impact of weather factors on the efficiency of waste gas purification and improves the efficiency of waste gas purification.
[0015] The beneficial effects of this utility model are:
[0016] The utility model discloses a wind energy is converted into mechanical energy through the rotation of wind wheel, and the transmission efficiency is high, and under the condition of wind power, under the condition of guaranteeing the normal work of air pump one, through the electric cylinder control movable shaft, make gear one and gear two meshing drive, and then convert wind energy into electric energy, store up, when the wind is small, through the electric energy drive air pump two work and carry out waste gas purification, the utility model discloses the effect of purifying waste gas is good, and is pollution-free, and the waste gas efficiency is high through the water filter mode, and the cost is low. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the structural schematic diagram of the utility model.
[0018] Figure 2 It is the left view of transmission assembly of the utility model.
[0019] Among them, 1 - atomization warehouse, 2 - atomizer, 11 - annular pipe network, 12 - atomizing nozzle, 13 - water inlet pipe, 14 - air outlet pipe, 3 - water washing warehouse, 4 - air pump one, 41 - connecting pipe, 42 - microporous aeration pipe, 43 - belt, 5 - wind drive mechanism, 31 - exhaust pipe, 6 - transmission assembly, 7 - generator, 71 - energy storage battery, 51 - fixed support, 52 - wind wheel, 61 - gear one, 62 - gear two, 63 - movable shaft, 64 - sleeve, 66 - connecting rod, 67 - electric cylinder, 15 - branch pipe, 16 - air pump two. DETAILED DESCRIPTION
[0020] Example 1:
[0021] As Figure 1 Shown, a kind of waste gas purification treatment equipment based on wind drive, including atomization warehouse 1, atomization warehouse 1 right side is equipped with atomizer 2, the air outlet of atomizer 2 is communicated with atomization warehouse 1, the top of atomization warehouse 1 is equipped with annular pipe network 11, the inside of annular pipe network 11 is communicated with multiple atomizing nozzles 12, one side of annular pipe network 11 is communicated with water inlet pipe 13, the top of atomization warehouse 1 is equipped with air outlet pipe 14, air outlet pipe 14 tail end is communicated with water washing warehouse 3, and connecting place is equipped with air pump one 4, the air outlet of air pump one 4 is communicated with connecting pipe 41, the lower end of connecting pipe 41 is communicated with microporous aeration pipe 42, the transmission shaft of air pump one 4 is connected with wind drive mechanism 5 by belt 43 transmission, the top of water washing warehouse 3 is also equipped with exhaust pipe 31, and exhaust pipe 31 is communicated with the top of water washing warehouse 3, wind drive mechanism 5 is connected with generator 7 by transmission assembly 6 transmission, generator 7 and energy storage battery 71 are electrically connected, energy storage battery 71 and atomizer 2 are electrically connected.
[0022] Wind drive mechanism 5 includes fixed support 51, and fixed support 51 is rotatably connected with wind wheel 52, and the rotating shaft of wind wheel 52 is driven by the rotating shaft of air pump one 4 through belt 43.
[0023] The wind wheel 52 in the wind driving mechanism 5 rotates to drive the belt 43 to rotate, and further drive the shaft of the air pump 1 to rotate. The air pump 1 is driven by wind to work, and further make the exhaust gas of the device enter the microporous aeration pipe 42.
[0024] As shown in Figure 2 The transmission assembly 6 includes a gear 1 61 arranged on the rotating shaft of the wind wheel 52, and a gear 2 62 in meshing transmission with the gear 1 61. The center of the gear 2 62 is provided with a movable shaft 63, the rear end of the movable shaft 63 is provided with a sleeve 64, and the sleeve 64 is sleeved with the rotating shaft of the generator 7.
[0025] The wind wheel 52 rotates to drive the gear 1 61 to rotate, the gear 1 61 drives the gear 2 62 to rotate, and further drives the movable shaft 63 to rotate. The movable shaft 63 is in transmission with the output shaft of the generator 7 through the sleeve 64 at the other end.
[0026] Embodiment 2:
[0027] The difference between this embodiment and embodiment 1 is that two connecting rods 66 are arranged below the movable shaft 63 in this embodiment, and the electric cylinder 67 is fixed at the end of the connecting rod 66.
[0028] Compared with embodiment 1, the electric cylinder 67 drives the connecting rod 66 to stretch and retract in this embodiment, and further drives the movable shaft to move, so that the gear 1 61 and the gear 2 62 are in meshing or separated.
[0029] Embodiment 3:
[0030] The difference between this embodiment and embodiment 1 is that the branch pipe 15 is arranged in the middle of the air outlet pipe 14 in this embodiment, and the air pump 2 16 is arranged on the branch pipe 15. The air pump 2 16 is electrically connected with the battery 71.
[0031] Compared with embodiment 1, the electric energy generated by wind power drives the air pump 2 16 to work in this embodiment, which can avoid the influence of weather factors on the exhaust gas purification efficiency and improve the exhaust gas purification efficiency.
[0032] The working method of the above-mentioned embodiment 3 includes the following steps:
[0033] S1, when the wind is small, the wind wheel 52 rotates to drive the belt 43 to rotate, and further drive the air pump 1 to work. The exhaust gas is pumped to the microporous aeration pipe 42 through the air pump 1, and the exhaust gas is purified by washing.
[0034] S2, when the wind is big, the wind wheel 52 not only through the belt 43 driven air pump one work, also drive the generator 7 work, electric cylinder 67 drive connecting rod movement, make gear one 61 and gear two 62 mesh transmission drive generator 7 work to generate electricity, the electric energy generated in the storage battery 71;
[0035] S3, when there is no wind, through the electric energy in the storage battery 71, drive air pump two 16 work, make the exhaust gas from the branch pipe 15 into the connecting pipe 41, and then purify the exhaust gas.
[0036] The above examples in the atomizer 2, microporous aeration pipe 42, air pump one 4, air pump two 16, storage battery 71, generator 7 are all using the products on the market, as long as the function of the utility model can be realized, the person skilled in the art can choose to use according to the conventional knowledge, here is not special limited.
Claims
1. A wind-driven waste gas purification and treatment device, characterized in that, The device includes an atomizing chamber (1), an atomizer (2) on the right side of the atomizing chamber (1), the air outlet of the atomizer (2) being connected to the atomizing chamber (1), an annular pipe network (11) on the top of the atomizing chamber (1), multiple atomizing nozzles (12) connected to the inner side of the annular pipe network (11), a water inlet pipe (13) connected to one side of the annular pipe network (11), an air outlet pipe (14) on the top of the atomizing chamber (1), a water washing chamber (3) connected to the end of the air outlet pipe (14), and an air pump (4) at the connection point. The air outlet of the air pump (4) is connected to... A connecting pipe (41) is provided, and the lower end of the connecting pipe (41) is connected to a microporous aeration pipe (42). The drive shaft of the air pump (4) is connected to a wind-driven mechanism (5) via a belt (43). The top of the water washing chamber (3) is also provided with an exhaust pipe (31), which is connected to the top of the water washing chamber (3). The wind-driven mechanism (5) is connected to a generator (7) via a transmission assembly (6). The generator (7) is electrically connected to an energy storage battery (71), and the energy storage battery (71) is electrically connected to the atomizer (2).
2. The wind-driven waste gas purification and treatment equipment as described in claim 1, characterized in that, The wind-driven mechanism (5) includes a fixed bracket (51), on which a wind turbine (52) is rotatably connected. The rotating shaft of the wind turbine (52) is driven by the rotating shaft of the air pump (4) via a belt (43).
3. The wind-driven waste gas purification and treatment equipment as described in claim 1, characterized in that, The transmission assembly (6) includes a gear one (61) mounted on the rotating shaft of the wind turbine (52) and a gear two (62) meshing with the gear one (61). The gear two (62) has a movable shaft (63) at its center and a sleeve (64) at its rear end. The sleeve (64) is sleeved with the rotating shaft of the generator (7).
4. The wind-driven waste gas purification and treatment equipment as described in claim 3, characterized in that, Two connecting rods (66) are provided below the movable shaft (63), and an electric cylinder (67) is fixed to the end of the connecting rod (66).
5. The wind-driven waste gas purification and treatment equipment as described in claim 1, characterized in that, The air outlet pipe (14) has a branch pipe (15) in the middle, and the branch pipe (15) is equipped with an air pump (16), which is electrically connected to the battery (71).