Ecological water ion moxa smoke purifier
The ecological water ion purifier solves the problems of high energy consumption and low purification rate of moxibustion smoke purifiers by using ozone, ecological water ions and a multi-layer filter system, achieving a highly efficient, environmentally friendly and energy-saving purification effect and protecting the health of users.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2026-03-27
AI Technical Summary
Existing smoke purifiers used during moxibustion have high energy consumption, low purification rate, are not environmentally friendly, and have high maintenance costs. Furthermore, the three-way catalytic converter is prone to failure at high temperatures, leading to high concentrations of carbon monoxide and carbon dioxide, which endangers health.
The system employs an ecological water ion purifier, which uses ozone, ecological water ions, and a multi-layer filtration system, including activated carbon filters, a negative ion generator, and ultraviolet irradiation, to achieve comprehensive and thorough purification of moxa smoke and increase the concentration of ecological water ions and negative oxygen ions in the emitted gas.
It achieves efficient, environmentally friendly, and energy-saving purification of moxa smoke, improves air quality, protects user health, reduces maintenance costs, and avoids high-temperature safety hazards.
Smart Images

Figure CN224040449U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to air purification technical field, concretely relates to an ecological water ion moxa smoke purifier. BACKGROUND
[0002] With the development of society, the improvement of life, traditional Chinese medicine health preservation is gradually recognized and accepted by people; moxibustion in traditional Chinese medicine therapy is popular, and its basic operation is mainly to ignite moxa, moxa stick and moxa column made of moxa leaves, and to fumigate and roast human body acupoints to achieve a natural therapy for health care and disease treatment.
[0003] However, moxa stick, moxa and moxa column will produce a large amount of moxa smoke during combustion.
[0004] Some substances contained in moxa smoke, such as tar, moxa ash, PM2.5, carbon monoxide, carbon dioxide, benzaldehyde, phenol, ethylene glycol, 2,5-dimethyl furan ketone and other aromatic hydrocarbon substances, will damage human health if inhaled into the human body.
[0005] Among them, long-term inhalation of the primary carcinogen produced in moxa smoke will cause irreversible damage to the lungs.
[0006] Especially for the staff engaged in moxa treatment, it will cause great harm to their health, and further affect the popularization and promotion of moxa treatment.
[0007] Therefore, the device capable of removing the smoke generated during moxibustion is very important.
[0008] Most of the moxa smoke purifiers or devices on the market have the disadvantages of short service life, low energy efficiency, high energy consumption, low purification rate, environmental pollution, high maintenance cost and the like, and cannot achieve comprehensive, thorough, rapid and efficient purification of moxa smoke.
[0009] Some only pass moxa smoke through a simple filtering device by a fan to discharge it, which pollutes the environment, and can be described as stealing a watch and then plugging one's ears, which is harmful to others but not beneficial to oneself, and these products will be eliminated by the market.
[0010] Now some moxa treatment equipment (such as moxa treatment bed) mainly adopts a three-way catalytic smoke purification device.
[0011] However, its energy consumption is large and the concentration of carbon monoxide and carbon dioxide in its tail gas is very high.
[0012] Carbon monoxide is very harmful to the human body, because its ability to combine with hemoglobin is about 200 times stronger than that of oxygen, which will cause oxygen to be unable to be normally transported to all parts of the body, thereby causing a series of health problems, such as headache, dizziness, fatigue, nausea, vomiting, rapid heartbeat, blurred vision, confusion, muscle weakness, coma, convulsions, heart damage, brain damage and even death.
[0013] When the concentration of carbon dioxide in the air exceeds a certain level, it can have an impact on human health. According to relevant research, the safe upper limit of carbon dioxide concentration in indoor air is generally considered to be 1000 ppm (parts per million). Between 1000 ppm and 2000 ppm, some people may experience mild headaches, fatigue, or difficulty concentrating, and between 2000 ppm and 5000 ppm, most people will experience significant discomfort, including headaches, fatigue, difficulty concentrating, and difficulty breathing. Long-term exposure to this concentration can have adverse effects on health.
[0014] To maintain the good performance of the three-way catalyst, a high temperature state must be maintained, and a large amount of electrical energy must be consumed (at least 1000 watts of electrical power).
[0015] Not only is the energy consumption high, but there is also a high-temperature safety hazard, and the temperature of the exhaust gas emitted is relatively high, causing the indoor temperature to rise.
[0016] The health of moxa workers and consumers will be affected, and the consumer experience will be poor.
[0017] As the working time of the three-way catalyst accumulates, carbonization of the moxa oil and moxa ash occurs in the three-way catalyst, which greatly reduces the catalytic oxidation effect in the three-way catalyst, and in severe cases, the purification effect of the three-way catalyst is lost.
[0018] This causes the exhaust gas to appear false purification, and even high concentrations of carbon monoxide, which endangers the safety of indoor personnel.
[0019] The consumable catalytic filter screen of the three-way catalyst is high in cost and complex to replace, and the use cost is relatively high.
[0020] To solve these problems, users can enjoy traditional Chinese moxa therapy without the negative effects of moxa smoke on their health.
[0021] After extensive market research and numerous product experiments, the product was developed.
[0022] The product purifies the pollutants contained in moxa smoke comprehensively, completely, quickly, and efficiently.
[0023] And the emitted air is increased with high concentrations of ecological water ions and negative oxygen ions.
[0024] Not only is it efficient, environmentally friendly, energy-saving, and improves air quality, but it is also beneficial to people's respiratory health. SUMMARY
[0025] The problem to be solved by the utility model is to solve the efficient and complete purification of moxa smoke during moxibustion.
[0026] The utility model discloses a kind of ecological water ion smog purification machines of moxa, realize the removal of harmful substances in moxa oil, moxa ash and moxa smoke, improve air quality, guarantee the safe and healthy demand of moxa processing, help the popularization and dissemination of moxa processing device, instrument and equipment.
[0027] The utility model discloses an ecological water ion smog purification machine. It relates to the technical field of air purification.
[0028] The utility model can be sold as a finished product alone, or can be assembled with other moxa processing instruments, devices and equipment and then sold as a finished product.
[0029] Those skilled in the art can implement the utility model based on the above description.
[0030] Before the utility model is described in conjunction with the drawings, it is particularly reminded that the embodiments of the utility model involved in the following description are usually only a part of the embodiments of the utility model, not all the embodiments.
[0031] Therefore, based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor should belong to the protection scope of the utility model.
[0032] The utility model will be described clearly and completely in conjunction with the drawings.
[0033] The ecological water ion smog purification machine of the utility model comprises one box body and ten mutually connected inner chambers and function modules.
[0034] The box body of the ecological water ion smog purification machine of the utility model comprises one smoke inlet, one air outlet, one purification switch, one power socket, one sewage discharge switch, one water inlet cover plate, one purification chamber cover plate and four base supporting legs, and ten connected inner chambers, i.e., inner chamber a, inner chamber b, inner chamber c, inner chamber d, inner chamber e, inner chamber f, inner chamber g, inner chamber h, inner chamber i and inner chamber j.
[0035] The inner chamber i is provided with a power control module, a negative ion driver, an ultraviolet lamp driver, an ozone generator, a water level controller, a cooling fan, a spraying water pump, a sewage discharge pump and a circulating water pump.
[0036] The bottom of the purification machine is provided with four supporting legs.
[0037] The inner chamber b and the inner chamber c are connected through a water passage at the bottom.
[0038] The inner chamber c and the inner chamber e are connected through a water passage and a ventilation opening at the bottom, the ventilation opening is higher than the water passage and the highest water level line of the internal pool, so that moxa smoke can only pass through the ventilation opening from the inner chamber c to the inner chamber e.
[0039] The inner chamber e is communicated with the inner chamber f through a water inlet.
[0040] The inner chamber j is located inside the inner chamber i.
[0041] A ventilation opening is arranged between the inner chamber f and the inner chamber g.
[0042] A pressure relief opening is arranged at the top of the inner chamber d, so that the water level of the inner chamber d and the inner chamber b is consistent when water is injected into the inner chamber d.
[0043] A smoke inlet pipe is arranged in the inner chamber a, one end of which is communicated with the inner chamber a, and the other end is connected with an external smoke pipe.
[0044] One end of the external smoke pipe is connected with the smoke inlet pipe, and the other end is connected with a smoke outlet of the moxibustion instrument or device or equipment.
[0045] A sewage discharge pipe is arranged in the inner chamber a.
[0046] A sewage pumping pipe is arranged in the inner chamber d.
[0047] The sewage discharge pipe and the sewage pumping pipe are connected with a sewage pump in the inner chamber i, and the sewage pump is controlled by a sewage discharge switch.
[0048] The ecological water ion moxibustion smoke purifier is horizontally and stably placed, so as to ensure that the purifier will not move during the working time.
[0049] The water injection cover plate of the inner chamber d is removed, the rubber plug of the water injection port of the inner chamber d is pulled out, 5-10 ml of detergent is added into the water injection port, and then about 2000 ml of clean water is added into the inner chamber d, the rubber plug is tightly plugged, and the cover plate is covered.
[0050] The inner chamber d is communicated with the inner chamber b through a water inlet, the inner chamber b is communicated with the inner chamber c through a water inlet, and the inner chamber c is communicated with the inner chamber e through a water inlet, the positions of the water inlets are lower than the water surface of the water tank during the working of the purifier, so the water injected into the inner chamber d also flows into the water tank in the inner chamber b, the inner chamber c and the inner chamber e, and they together form a water tank of the purifier, when the water in the inner chamber d is full, the water inlets are below the horizontal surface, so the gas in the purifier will not flow through the water inlets, so as to ensure that the moxibustion smoke flows in the designed direction and is gradually purified.
[0051] After confirming that the sewage discharge switch is in the closed state, an external power supply is connected with a power socket to supply power to the purifier.
[0052] The purifier starts to work after the purifying switch is pressed.
[0053] The suction fan in the inner chamber a forms suction force when working, the moxibustion smoke is sucked into the inner chamber a from the moxibustion instrument or device or equipment through the external smoke pipe and the smoke inlet pipe, and then enters the inner chamber c through the ventilation opening under the action of the suction fan.
[0054] The ozone generator in the inner chamber c works to generate ozone which is sprayed into the inner chamber c through the ozone nozzle after passing through the connected air pipe.
[0055] The water pump in the inner chamber c works to draw water from the inner chamber through the water pipe and supply the inner chamber c through the connected water pipe, forming a dense high-pressure water curtain which not only cools the hot moxa smoke but also generates a large amount of ecological water ions.
[0056] The moxa smoke inhaled into the inner chamber c is mixed with ozone, ecological water ions and water to generate an oxidation reaction to eliminate some harmful components in the moxa smoke.
[0057] The fan works to form a higher air pressure at the upper end of the inner chamber c than at the lower end, and the lower end of the inner chamber c has a ventilation opening with the inner chamber e, so the gas of the mixed moxa smoke and ozone with a large amount of ecological water ions flows from the upper end to the lower end of the inner chamber c.
[0058] Under the washing of the water stream sprayed by the sprinkler, some harmful substances such as tar, moxa ash and PM2.5 in the mixed gas are dissolved into the water and flow into the pool below the inner chamber c, and the water contains dishwashing liquid to dissolve tar, so the water is not easy to block the water pump and the sprinkler head when circulating in the water pump, and the remaining mixed smoke gas enters the inner chamber e through the ventilation opening.
[0059] The water pump in the inner chamber e works to draw water from the inner chamber through the water pipe and supply the inner chamber e through the connected water pipe, forming a dense high-pressure water curtain which not only further cools the hot moxa smoke but also generates a large amount of ecological water ions.
[0060] The ozone generator in the inner chamber e works to generate ozone which is sprayed into the inner chamber e through the ozone nozzle after passing through the connected air pipe.
[0061] A water-gas dispersion net is arranged in the inner chamber e.
[0062] The upper end of the inner chamber e has a ventilation opening with the inner chamber f.
[0063] The mixed gas entering the inner chamber e is dispersed by the water-gas dispersion net and fully mixed with a large amount of ecological water ions generated by the sprinkler and ozone sprayed by the ozone nozzle.
[0064] Under the washing of the water stream sprayed by the sprinkler, some harmful substances such as tar, moxa ash and PM2.5 in the mixed gas are dissolved into the water and flow into the pool below the inner chamber e, and the water contains dishwashing liquid to dissolve tar, so the water is not easy to block the water pump and the sprinkler head when circulating in the water pump, and the remaining mixed gas enters the inner chamber f through the ventilation opening.
[0065] The gas pressure in the inner chamber f is affected by the air pressure and the exhaust fan, and the gas pressure at the lower end of the inner chamber f is greater than that at the upper end, so the mixed gas flows from the lower end to the upper end of the inner chamber f, and enters the inner chamber g through the vent.
[0066] The inner chamber f is provided with a vapor-liquid filtration and separation net.
[0067] The lower end of the inner chamber f is provided with a vent to the inner chamber g.
[0068] After the smoke is subjected to the ozone chemical reaction, the ecological water ion and the water dust removal treatment in the inner chambers c and e, the gas entering the inner chamber f contains a large amount of liquid water.
[0069] The large amount of liquid water is filtered by the vapor-liquid filtration and separation net, and the liquid water flows into the lower end of the inner chamber f under the action of gravity.
[0070] The gas filtered by the vapor-liquid filtration and separation net enters the inner chamber g through the vent, because the air pressure at the upper end of the inner chamber f is greater than that at the lower end under the influence of the air pressure in the inner chamber f and the exhaust fan.
[0071] The bottom of the inner chamber f is provided with a drain connected to a water pipe.
[0072] The lower end of the inner chamber f is provided with a water level sensing probe.
[0073] The water level controller in the inner chamber i is connected to the water level sensing probe through a conductive wire.
[0074] When the water level sensing probe in the inner chamber f senses the separated water solution, the water level controller in the inner chamber i starts the circulating water pump to pump the water solution in the inner chamber f back to the inner chamber through the water pipe.
[0075] The inner chamber g is sequentially provided with an activated carbon filter net, a negative ion generator, an activated carbon filter net, a negative ion generator, an activated carbon filter net, an ultraviolet lamp and a titanium dioxide catalyst net from the lower end to the upper end.
[0076] The negative ion generator generates a large amount of high-concentration negative ions under the action of the negative ion driver in the inner chamber i.
[0077] The negative ion generator generates a large amount of high-concentration negative ions under the action of the negative ion driver in the inner chamber i.
[0078] The high-concentration negative ions make most of the substances in the gas charged, and the smoke dust, PM2.5 and other substances are charged and gathered into large particles and adsorbed on the activated carbon filter net, and the water molecules are charged into water ions and the oxygen molecules are charged into negative oxygen ions.
[0079] In the high-concentration negative ion environment, carbon monoxide and ozone undergo chemical reactions, thereby removing carbon monoxide and ozone in the gas.
[0080] The gas entering the inner chamber g is purified by the activated carbon filter screen and the negative ion generator, and harmful substances such as odor, PM2.5, carbon monoxide and ozone in the gas can be basically removed, and the gas is basically completely purified, while a large amount of ecological water ions and negative oxygen ions are retained.
[0081] The ultraviolet lamp generates ultraviolet rays under the action of the ultraviolet lamp driver in the inner chamber i.
[0082] The ultraviolet lamp generates ultraviolet rays to irradiate the titanium dioxide catalytic screen to decompose ozone in the gas into oxygen, and the irradiation of the ultraviolet rays can disinfect and sterilize the gas, so that the discharged gas is beneficial to healthy breathing.
[0083] A detachable purification chamber cover plate is arranged outside the inner chamber g and the inner chamber, which facilitates maintenance and replacement of the vapor-liquid filter separation screen, the activated carbon filter screen, the negative ion generator, the ultraviolet lamp and the titanium dioxide catalytic screen.
[0084] There is a ventilation opening between the inner chamber i and the inner chamber h.
[0085] The heat dissipation fan works to dissipate heat of the electric appliances in the inner chamber i to maintain the best functions of the electric appliances, and the hot air is discharged through the air outlet after passing through the ventilation opening.
[0086] There is a ventilation opening between the inner chamber h and the inner chamber g.
[0087] The inner chamber h is provided with an exhaust fan and an air outlet.
[0088] The air inlet end of the exhaust fan is communicated with the ventilation opening, and the air outlet end of the exhaust fan is communicated with the air outlet of the purification machine.
[0089] The exhaust fan draws out the purified gas in the inner chamber g from the ventilation opening and discharges the purified gas out of the purification machine through the air outlet.
[0090] The exhaust fan works to draw out the clean gas from the inner chamber g, which is beneficial to the flow of the flue gas in the purification machine from the inner chamber a, the inner chamber c, the inner chamber e, the inner chamber f and the inner chamber g in sequence.
[0091] When the purification of the moxa smoke is completed, the purification switch is turned on, the purification machine stops working, the water injection cover plate is opened, the sewage pipe in the inner chamber a is taken out and put into a sewage container, the sewage discharge switch is turned on, the sewage pump in the inner chamber i works, and the sewage is drawn out from the inner chamber through the water pipe and discharged through the water pipe.
[0092] The purified sewage can be directly poured into the sewer in the washroom, and the sewage is harmless to the environment and has certain disinfection and sterilization and mosquito prevention effects.
[0093] The drawings which form a part of the present application are used to assist the understanding of the present application, and the content provided in the drawings and the related description in the present application can be used to explain the present application, but do not constitute improper limitation on the present application. Attached Figure Description
[0094] The accompanying drawings, which form part of this utility model, are used to aid in understanding this utility model. The contents provided in the drawings and their related descriptions in this utility model can be used to explain this utility model, but do not constitute an improper limitation of this utility model.
[0095] In the attached diagram:
[0096] Figure 1 Axonometric view.
[0097] Figure 2 Axonometric view.
[0098] Figure 3 Axonometric sectional view.
[0099] Figure 4 Axonometric sectional view.
[0100] Figure 5 Axonometric sectional view.
[0101] Figure 6 Front view.
[0102] Figure 7 Front view.
[0103] Figure 8 Right view.
[0104] Figure 9 Rear view.
[0105] Figure 10 Top view.
[0106] Figure 11 Left view.
[0107] Figure 12 External smoke pipe.
[0108] Figure 13 Assembly diagram of moxibustion device.
[0109] Figure 14 Assembly diagram of moxibustion equipment.
[0110] The relevant markings in the above figures are:
[0111] a: Inner room a; b: Inner room b; c: Inner room c; d: Inner room d; e: Inner room e; f: Inner room f; g: Inner room g; h: Inner room h; i: Inner room i; j: Inner room j.
[0112] 112: External smoke pipe for moxibustion equipment; 113: External smoke pipe for moxibustion device.
[0113] 114: cover plate of purification chamber; 115: cover plate of water injection port; 116: base foot; 117: air outlet; 118: smoke inlet; 119: sewage discharge switch; 120: power socket; 121: purification switch; 122: smoke inlet pipe; 123: water injection port; 124: water pipe; 125: air suction fan; 126: sprayer; 127: sprayer; 128: sewage discharge pipe; 129: water pipe; 130: ozone generator; 131: water level controller; 132: air exhaust fan; 133: heat dissipation fan; 134: spraying water pump; 135: spraying water pump; 136: heat dissipation fan; 137: negative ion driver; 138: negative ion driver; 139: ultraviolet lamp driver; 140: power control module; 141: water inlet; 142: ozone generator; 143: circulating water pump; 144: sewage discharge pump; 145: water-gas dispersion net; 146: gas-liquid filtration separation net; 147: activated carbon filtration net; 148: activated carbon filtration net; 149: activated carbon filtration net; 150: negative ion generator; 151: negative ion generator; 152: ultraviolet lamp; 153: titanium dioxide catalytic net; 154: air vent; 155: air vent; 156: ozone nozzle; 157: water level sensing probe; 158: pressure relief port; 159: air vent; 160: water inlet; 161: air vent; 162: water inlet; 163: ozone nozzle; 164: water pipe; 165: air vent; 166: rubber plug; 167: air pipe; 168: water pipe; 169: water pipe; 170: water pipe; 171: water pipe; 172: air pipe; 173: water outlet; 174: conductive wire; 175: air vent; 176: ecological water ion moxa smoke purification machine; 177: moxa treatment device; 178: moxa treatment equipment. Embodiment
[0114] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the specification of the present application.
[0115] Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments.
[0116] Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.
[0117] In the description of the present application, it should be noted that the terms "bottom", "interior", "one end", "upper end" and "lower end" indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application;
[0118] The term "water filling" means adding water, which can be done manually or automatically.
[0119] The term "interior" refers to a relatively independent interior space and is used for descriptive purposes only, and should not be understood as a limiting conceptual name.
[0120] The terms "water inlet" and "ventilation outlet" refer to the opening between two adjacent spaces, through which liquids, gases, or vapors can flow. They can be directly connected or indirectly connected through an intermediate medium or pipe, and should not be construed as limiting the present invention.
[0121] In addition, unless otherwise explicitly specified and limited, the terms “connected,” “connected,” “linked,” “external,” and “installed” should be interpreted broadly. For example, they can be fixed connections, detachable connections, or integral connections; they can be mechanical connections or electrical connections; they can be direct connections or indirect connections through an intermediate medium; and they can be connections within two components.
[0122] The terms “set,” “press,” “press up,” “take out,” “open,” “turn on,” “control,” “extract,” “discharge,” “work,” “suction,” “form,” “enter,” “inhale,” “pour in,” “pass through,” and “supply” are used only for the convenience of describing this utility model and simplifying the description. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.
[0123] This utility model discloses an ecological water ion smoke purifier. It includes: a housing and 10 interconnected inner chambers and various functional modules.
[0124] The purification unit housing of this utility model includes a smoke inlet, an air outlet, a purification switch, a power socket, a sewage discharge switch, a water inlet cover, a purification chamber cover, four base supports, and ten interconnected inner chambers: inner chamber a, inner chamber b, inner chamber c, inner chamber d, inner chamber e, inner chamber f, inner chamber g, inner chamber h, inner chamber i, and inner chamber j.
[0125] The interior is equipped with a power control module, a negative ion driver, a UV lamp driver, an ozone generator, a water level controller, a cooling fan, a spray water pump, a sewage pump, and a circulating water pump.
[0126] The air purifier has four support legs at the bottom.
[0127] There is a water inlet connecting the bottom of inner chamber b and inner chamber c.
[0128] The bottom of inner chamber C and inner chamber E are connected by a water inlet and a ventilation outlet.
[0129] The inner chamber e is communicated with the inner chamber f through a water passage at the bottom.
[0130] The inner chamber j is located inside the inner chamber i.
[0131] A ventilation passage is arranged between the inner chamber f and the inner chamber g.
[0132] A pressure relief passage is arranged at the top of the inner chamber d, so that the water level of the inner chamber d and the inner chamber b is consistent when water is injected into the inner chamber d.
[0133] A smoke inlet pipe is arranged in the inner chamber a, one end of which is communicated with the inner chamber a, and the other end is used to connect an external smoke pipe.
[0134] According to different moxibustion instruments, devices and equipment, different external smoke pipes are selected. Figure 14 If the moxibustion equipment shown in FIG. 1 is selected, the external smoke pipe 112 is selected, one end of which is connected with the smoke inlet pipe 122, and the other end is connected with the smoke outlet of the moxibustion equipment 178. Figure 13 If the moxibustion device shown in FIG. 2 is selected, the external smoke pipe 113 is selected, one end of which is connected with the smoke inlet pipe 122, and the other end is a smoke collecting cover which is arranged above the smoke outlet of the moxibustion device 177.
[0135] A sewage discharge pipe 128 is arranged in the inner chamber a.
[0136] A sewage pumping pipe is arranged in the inner chamber d.
[0137] The sewage discharge pipe 128 and the sewage pumping pipe are connected with the sewage discharge pump 144 in the inner chamber i, and the sewage discharge pump 144 is controlled by the sewage discharge switch 119.
[0138] The ecological water ion moxa smoke purifier is placed horizontally and stably to ensure that it will not move during the working time of the purifier.
[0139] The water injection port cover plate 115 of the inner chamber d is removed, the rubber plug 166 of the water injection port 123 of the inner chamber d is pulled out, 5-10 milliliters of detergent are added into the water injection port 123, then about 2000 milliliters of clean water are added into the inner chamber d, the rubber plug 166 is tightly plugged, and the cover plate 115 is covered.
[0140] The inner chamber d and the inner chamber b have a water passage 141, the inner chamber b and the inner chamber c have a water passage 160, and the inner chamber c and the inner chamber e have a water passage 162. The positions of the water passages 141, 160 and 162 are all lower than the water surface of the water tank during the working time of the purifier, so the water injected into the inner chamber d will also flow into the water tanks in the inner chamber b, the inner chamber c and the inner chamber e, which together constitute the water tank of the purifier. When the water in the inner chamber d is full, the water passages 141, 160 and 162 are below the horizontal plane, so it is ensured that the gas in the purifier will not flow through the water passages 141, 160 and 162, thereby ensuring that the moxa smoke is gradually purified in the designed direction.
[0141] The sewage discharge switch 119 is in the closed state, and the external power supply is connected to the power socket 120 to supply power to the purifier.
[0142] When the purifying switch 121 is pressed, the purifier starts to work.
[0143] When the suction fan 125 in the inner chamber a works, suction force is formed, and the moxa smoke in the moxa smelting device is sucked into the inner chamber a through the external smoke pipe and the smoke inlet pipe 122, and then enters the inner chamber c through the ventilation opening under the action of the suction fan 125.
[0144] The ozone generator 130 in the inner chamber c works to generate ozone, which is sprayed into the inner chamber c through the connected air pipe 167 from the ozone nozzle 156.
[0145] The spray water pump 134 in the inner chamber c works to draw water from the inner chamber through the water pipe and supply the spray 126 in the inner chamber c through the connected water pipe, forming a dense high-pressure water curtain, which not only cools the hot moxa smoke, but also generates a large amount of ecological water ions, which have the function of dust removal and purification, and can remove part of the smoke dust in the moxa smoke.
[0146] The moxa smoke sucked into the inner chamber c reacts with ozone, ecological water ions and water to eliminate part of the harmful components in the moxa smoke.
[0147] Because the fan works to form the air pressure in the upper end of the inner chamber c higher than that in the lower end, and the inner chamber c has the ventilation opening 155 with the inner chamber e, the gas of the moxa smoke mixed with ozone and a large amount of ecological water ions flows from the upper end to the lower end of the inner chamber c.
[0148] Under the washing of the water flow sprayed by the spray 126, part of the harmful substances such as tar, moxa ash and PM2.5 in the mixed gas are dissolved into the water and flow into the water pool below the inner chamber c, and the water containing detergent can dissolve tar, so that the water is not easy to block the water pump and the spray head when circulating in the water pump, and the remaining mixed smoke gas enters the inner chamber e from the ventilation opening 155.
[0149] The spray water pump 135 in the inner chamber e works to draw water from the inner chamber through the water pipe and supply the spray 127 in the inner chamber e through the connected water pipe, forming a dense high-pressure water curtain, which not only further cools the hot moxa smoke, but also generates a large amount of ecological water ions.
[0150] The ozone generator 142 in the inner chamber e works to generate ozone, which is sprayed into the inner chamber e through the connected air pipe 172 from the ozone nozzle 163.
[0151] The water-gas dispersion net 145 is arranged in the inner chamber e.
[0152] The inner chamber e has the ventilation opening 161 with the inner chamber f.
[0153] The mixed gas entering the inner chamber e is dispersed when passing through the water-gas dispersion net 145, and is fully mixed with the large amount of ecological water ions generated by the sprayer 127 and the ozone sprayed by the ozone nozzle 163.
[0154] Under the washing of the water flow sprayed by the sprayer 127, part of the harmful substances in the mixed gas, such as tar, ash, PM2.5, etc., are dissolved into the water and flow into the water pool below the inner chamber e. The water containing detergent can dissolve tar, so that the water is not easy to block the water pump and the spray head when circulating in the water pump. The remaining mixed gas enters the inner chamber f from the ventilation opening 161.
[0155] Affected by the air pressure in the inner chamber f and the exhaust fan 132, the air pressure at the lower end of the inner chamber f is greater than that at the upper end, so the mixed gas flows from the lower end to the upper end of the inner chamber f and enters the inner chamber g through the ventilation opening 159.
[0156] The inner chamber f is provided with a gas-liquid filtration and separation net 146.
[0157] The lower end of the inner chamber f is provided with a ventilation opening 159 with the inner chamber g.
[0158] After the smoke of the incense is subjected to the ozone chemical reaction, the ecological water ion and the dust removal treatment of water in the inner chamber c and the inner chamber e, the gas entering the inner chamber f contains a large amount of liquid water.
[0159] The large amount of liquid water is filtered by the gas-liquid filtration and separation net 146, and the liquid water flows into the lower end of the inner chamber f under the action of gravity.
[0160] Affected by the air pressure in the inner chamber f and the exhaust fan 132, the air pressure at the upper end of the inner chamber f is greater than that at the lower end, and the gas filtered out by the gas-liquid filtration and separation net 146 enters the inner chamber g through the ventilation opening 159.
[0161] The bottom of the inner chamber f is provided with a drain opening 173 connected with a water pipe.
[0162] The lower end of the inner chamber f is provided with a water level sensing probe 157.
[0163] The water level controller 131 in the inner chamber i is connected with the water level sensing probe 157 through a conductive wire 174.
[0164] When the water level sensing probe 157 in the inner chamber f senses the separated water solution, the water level controller 131 in the inner chamber i starts the circulating water pump 143 to pump the water solution in the inner chamber f back to the inner chamber through the water pipe 168 and the water pipe 169.
[0165] The inner chamber g is sequentially provided with an activated carbon filter net 147, a negative ion generator 150, an activated carbon filter net 148, a negative ion generator 151, an activated carbon filter net 149, an ultraviolet lamp 152, and a titanium dioxide catalytic net 153 from the lower end to the upper end.
[0166] The negative ion generator 150 generates a large amount of high-concentration negative ions under the action of the negative ion driver 137 in the inner chamber i.
[0167] The negative ion generator 151 generates a large amount of high-concentration negative ions under the action of the negative ion driver 138 in the inner chamber i.
[0168] The high-concentration negative ions make most of the substances in the gas charged, and the charged smoke dust, PM2.5 and other substances are gathered into large particles and adsorbed on the activated carbon filter screen, the water molecules are charged into water ions, and the oxygen molecules are charged into negative oxygen ions.
[0169] In the high-concentration negative ion environment, carbon monoxide and ozone react chemically, thereby removing carbon monoxide and ozone in the gas.
[0170] The gas entering the inner chamber g is purified multiple times by the activated carbon filter screen and the negative ion generator, and basically removes odors, PM2.5, carbon monoxide and ozone and other harmful substances in the gas, and the gas is basically completely purified, while retaining a large amount of ecological water ions and negative oxygen ions, and a small amount of ozone.
[0171] The ultraviolet lamp 152 generates ultraviolet rays under the action of the ultraviolet lamp driver 139 in the inner chamber i.
[0172] The ultraviolet lamp 152 generates ultraviolet rays to irradiate the titanium dioxide catalytic screen 153 to decompose ozone in the gas into oxygen, and the irradiation of ultraviolet rays can disinfect and sterilize the gas, ensuring that the discharged gas is beneficial to healthy breathing.
[0173] A detachable purification chamber cover plate 114 is arranged outside the inner chamber g and the inner chamber, which facilitates maintenance and replacement of the vapor-liquid filter separation screen 146, the activated carbon filter screens 147, 148 and 149, the negative ion generators 150 and 151, the ultraviolet lamp 152 and the titanium dioxide catalytic screen 153.
[0174] There is a ventilation opening 175 between the inner chamber i and the inner chamber h.
[0175] The heat dissipation fans 133 and 136 work to dissipate heat for the electrical appliances in the inner chamber i, and the hot air is discharged through the air outlet 117 after passing through the ventilation opening 175.
[0176] There is a ventilation opening 165 between the inner chamber h and the inner chamber g.
[0177] The inner chamber h is provided with an exhaust fan 132 and an air outlet 117.
[0178] The air inlet end of the exhaust fan 132 communicates with the ventilation opening 165, and the air outlet end of the exhaust fan 132 communicates with the air outlet 117 of the purification machine.
[0179] The exhaust fan 132 draws the purified gas in the inner chamber g from the air outlet 165 and discharges the purified gas from the air outlet 117.
[0180] The exhaust fan 132 draws the purified gas from the inner chamber g, which is beneficial to the sequential flow of the flue gas in the purification machine among the inner chamber a, the inner chamber c, the inner chamber e, the inner chamber f and the inner chamber g.
[0181] When the purification of the smoke is completed, the purification machine stops working, the water inlet cover plate 115 is opened, the sewage pipe 128 in the inner chamber a is taken out and put into a sewage container, the sewage discharge switch 119 is opened, the sewage pump 144 in the inner chamber i works, and the sewage is drawn from the inner chamber through the water pipe and discharged.
[0182] The purified sewage can be directly poured into a toilet sewer, and the sewage is harmless to the environment and has certain disinfection and sterilization and mosquito prevention effects.
[0183] The above-described embodiments are only used to describe the preferred modes of the present application, and do not limit the scope of the present application.
[0184] Without departing from the design spirit of the present application, various modifications and improvements of the technical solutions of the present application made by those skilled in the art shall fall within the protection scope defined by the claims of the present application.
Claims
1. An ecological water ion smoke purifier, comprising a housing and multiple interconnected inner chambers, characterized in that... include: One smoke inlet, one air outlet, one purification switch, one power socket, one sewage discharge switch, one water inlet cover, one purification chamber cover, four base supports; and ten interconnected inner chambers: inner chamber a, inner chamber b, inner chamber c, inner chamber d, inner chamber e, inner chamber f, inner chamber g, inner chamber h, inner chamber i, and inner chamber j.
2. The ecological water ion smoke purifier according to claim 1, characterized in that: a) Chamber a is equipped with a sewage discharge pipe and a smoke inlet pipe, one end of which connects to chamber a and the other end to an external smoke pipe; b) Chamber a is equipped with a suction fan; c) Chamber c is equipped with a sprayer and an ozone nozzle; d) Chamber d is equipped with a water inlet and a sewage pumping pipe; e) Chamber e is equipped with a sprayer, an ozone nozzle, and a water-air dispersion net; f) Chamber f is equipped with a vapor-liquid filter separation net, and a water level sensor and a drain outlet are installed at the bottom; g) Chamber g is equipped with an activated carbon filter, a negative ion generator, an ultraviolet lamp, and a titanium dioxide catalytic net; h) Chamber h is equipped with an exhaust fan, a ventilation opening, and an air outlet; i) Chamber i is equipped with a power control module, a negative ion driver, an ultraviolet lamp driver, an ozone generator, a water level controller, a cooling fan, a spray pump, a sewage pump, and a circulating water pump; j) (k) Inner chamber b and inner chamber c are connected by a water inlet at the bottom; (k) Inner chamber c and inner chamber e are connected by a water inlet and a ventilation opening at the bottom, with the ventilation opening higher than the water inlet and higher than the highest water level inside; (l) Inner chamber e and inner chamber f are connected by a water inlet at the bottom; (m) Inner chamber j is located inside inner chamber i; (n) There is a ventilation opening between inner chamber f and inner chamber g; (o) There is a ventilation opening between inner chamber g and inner chamber h; (p) There is a ventilation opening between inner chamber h and inner chamber i; (q) There is a pressure relief vent at the top of inner chamber d.
3. The ecological water ion smoke purifier according to claim 2, characterized in that: a) The purifier is equipped with a purification chamber cover; b) The purifier is equipped with a water inlet cover.
4. The ecological water ion smoke purifier according to claim 3, characterized in that: a) The exhaust fan in chamber a is connected to the moxibustion device via an external smoke pipe and an inlet pipe; b) The ozone generators in chambers c and e are connected to the ozone nozzles via air pipes; c) The spray pump in chamber i is connected to the sprayers in chambers c and e via water pipes; d) A vapor-liquid filter separator is installed in chamber f; e) The water level sensor at the bottom of chamber f is connected to the circulating water pump in chamber i; f) The negative ion generator in chamber g is connected to the negative ion driver; g) The ultraviolet lamp in chamber g is connected to the ultraviolet lamp driver; h) The ultraviolet lamp in chamber g is positioned opposite to the titanium dioxide catalytic mesh; i) A cooling fan is installed in chamber i; j) An exhaust fan is installed in chamber h; k) The sewage discharge pipe in chamber a and the sewage pumping pipe in chamber d are connected to the sewage pump in chamber i.