Method and device for purifying moxibustion smoke

By setting temperature regulation and catalyst reaction control strategies in the moxibustion smoke purification and treatment device, the problem of incomplete purification of moxibustion smoke was solved, achieving efficient and economical smoke purification effect and meeting indoor emission standards.

CN113144891BActive Publication Date: 2026-01-02WUHAN KANGRUISI MEDICAL INSTR CO LTD
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Patent Information

Application Number
CN202110573311.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-25
Publication Date
2026-01-02
Estimated Expiration
2041-05-25

AI Technical Summary

Technical Problem

Existing technologies cannot efficiently and thoroughly purify the smoke from moxibustion therapy, resulting in an ineffective solution to its environmental pollution problems.

Method used

A method and apparatus for purifying moxibustion smoke are proposed. By pre-setting a control strategy on the smoke purification controller, the purification reaction of moxibustion smoke is achieved by utilizing temperature regulation and catalytic reaction. The purification reaction control strategy includes an initial reaction temperature range and a purification reaction temperature range. By controlling the smoke temperature regulation and catalytic reaction, the moxibustion smoke is purified efficiently.

Benefits of technology

It achieves complete purification of moxibustion smoke, meets indoor emission standards, saves on consumable costs, and improves purification efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a moxibustion smoke purification treatment method and device, which comprises the following steps: monitoring the temperature of the smoke flowing out of a smoke temperature adjusting cavity in real time; sucking the smoke into the smoke temperature adjusting cavity with suction force in a preheating suction force range; controlling a temperature control device in the smoke temperature adjusting cavity to adjust the temperature, so that the initial smoke temperature flowing out of the smoke temperature adjusting cavity reaches an initial reaction temperature range; sucking the moxibustion smoke generated in the moxibustion process into the smoke temperature adjusting cavity with suction force in a reaction suction force range, and making the moxibustion smoke pass through the smoke temperature adjusting cavity in the form of airflow; controlling the temperature control device in the smoke temperature adjusting cavity to adjust the temperature, so that the reaction temperature of the moxibustion smoke flowing out of the smoke temperature adjusting cavity reaches a purification reaction temperature range; and introducing the primary treatment moxibustion smoke flowing out of the smoke temperature adjusting cavity and reaching the purification reaction temperature range into a purification reaction kettle provided with a moxibustion smoke reactant to react, and discharging the reacted gas. The application realizes intelligent and accurate purification treatment of the moxibustion smoke.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of moxibustion smoke treatment, in particular to a moxibustion smoke purification treatment method and device. BACKGROUND

[0002] Moxibustion, also known as moxa moxibustion, is a treatment method for preventing and treating diseases by burning or fumigating moxa sticks or moxa strips on certain acupoints on the body surface. Moxibustion has the functions of warming meridians, regulating blood and body elements, and enhancing resistance to prevent and treat diseases. The mechanism of moxibustion is similar to that of acupuncture and moxibustion, and the treatment effect is complementary. It has the advantages of simple operation, low cost, and remarkable effect.

[0003] Moxibustion is a traditional Chinese medicine external treatment method with a history of thousands of years. Its efficacy has been proven by numerous medical practitioners in clinical practice. Modernly, it is generally believed that the mechanism of moxibustion is related to the following five aspects: 1. Local stimulation. The warm stimulation of moxibustion on the human body can enhance local blood and lymph circulation, and the metabolic capacity of skin tissue will also be enhanced. Pathological products such as inflammation, adhesion, exudate, and hematoma can also be well dispersed. Local warm stimulation can also cause the diffusion of inhibitory substances in the cerebral cortex, reducing the excitability of the nervous system, thereby achieving the effects of sedation and pain relief without any toxic side effects. Warmth can also promote drug absorption, fully exerting the efficacy of moxa, other added medicinal materials in the moxa stick, and the spacer. On the other hand, moxibustion also has a near-infrared radiation effect. The near-infrared radiation of moxibustion provides the necessary energy for the body's activities, and the energy provided by the near-infrared light emitted by moxibustion can be regulated by the human body. During moxibustion therapy, near-infrared radiation has strong penetrating power, enabling energy to be transmitted through meridians to the distal end of the disease site, and also stimulating acupoints to stimulate the body's own immune system, allowing the body's normal physiological functions to be restored. 2. Meridian regulation. The meridian theory is the basis of moxibustion therapy. The stimulation of acupoints ultimately regulates the five Zang organs, six Fu organs, four limbs, and one hundred bones through the meridian system, allowing the overall function of the human body to function well. 3. Immune function regulation. Many therapeutic effects of moxibustion therapy are achieved through the regulation of the body's immune function, which has the characteristic of bidirectional regulation. If it is too low, it can be raised, and if it is too high, it can be lowered. 4. Pharmacological effect. The drugs used in moxibustion therapy are mostly pungent products, containing volatile oil components and pungent substances that can stimulate epidermal cells, increase cell membrane permeability, and facilitate drug absorption, thereby fully utilizing the efficacy of the drugs. At the same time, the openings of skin glands in the epidermis expand due to the pungent and warm stimulation, allowing some macromolecules and fat-soluble drugs to enter the body through the gland openings, which is beneficial to the exertion of the efficacy of these drugs. 5. Comprehensive effect. Moxibustion therapy mainly exhibits a comprehensive effect on the human body, which is the overall therapeutic effect of various factors interacting with and complementing each other. The treatment method of moxibustion therapy is comprehensive. Any type of moxibustion therapy includes selecting appropriate acupoints, appropriate drugs, and stimulating the local area with warm fire, which is an organic whole rather than a single isolated step. The absence of any of these will lose the original therapeutic effect. The therapeutic effect is also comprehensive. The warmness of the moxa fire and the pharmacological effect of the drugs concentrate on the acupoints, stimulating the meridian qi, thereby mobilizing the meridian regulation and enhancing the immune function, which are complementary and integrated.

[0004] The main substances in the smoke generated in the moxibustion process are alkane, ester, alkene, alcohol, ketone, aldehyde and aromatic hydrocarbon, and the current treatment methods of the moxibustion smoke are either filter screen filtration or electrostatic adsorption, which cannot completely purify and eliminate the moxibustion smoke.

[0005] Therefore, how to provide a scheme for efficiently, completely and long-term purifying moxibustion smoke is a technical problem to be solved by those skilled in the art. SUMMARY

[0006] The application provides a moxibustion smoke purification treatment method and device to solve the technical problem that there is no efficient, complete and long-term moxibustion smoke purification technology in the prior art.

[0007] The moxibustion smoke purification treatment method provided by the application comprises the following steps: presetting a purification reaction control strategy of an initial reaction temperature range, a purification reaction temperature range, a preheating suction range and a purification reaction suction range in a moxibustion smoke treatment equipment and a moxibustion smoke purification treatment controller;

[0008] The moxibustion smoke purification treatment controller monitors the temperature of the smoke flowing out of the smoke temperature adjusting cavity in real time through a temperature monitor located at the position of the smoke flowing out of the smoke temperature adjusting cavity.

[0009] The smoke suction device is controlled according to the purification reaction control strategy, the moxibustion smoke is sucked in with the suction force in the preheating suction range, and the moxibustion smoke is in the form of airflow and passes through the smoke temperature adjusting cavity.

[0010] According to the purification reaction control strategy, the temperature adjusting device in the smoke temperature adjusting cavity is controlled to adjust the temperature, so that the initial smoke temperature flowing out of the smoke temperature adjusting cavity reaches the initial reaction temperature range.

[0011] The smoke suction device is controlled according to the purification reaction control strategy, the moxibustion smoke generated in the moxibustion process is sucked in with the suction force in the reaction suction range, and the moxibustion smoke is in the form of airflow and passes through the smoke temperature adjusting cavity.

[0012] According to the purification reaction control strategy, the temperature adjusting device in the smoke temperature adjusting cavity is controlled to adjust the temperature, so that the initial smoke temperature flowing out of the smoke temperature adjusting cavity reaches the initial reaction temperature range.

[0013] The initial treatment moxibustion smoke flowing out of the smoke temperature adjusting cavity and reaching the purification reaction temperature range is introduced into a purification reaction kettle in which a moxibustion smoke reactant is preset to react, and the gas after the reaction is discharged.

[0014] Optionally, according to the purification reaction control strategy, the temperature control device in the flue gas temperature adjusting chamber is controlled to adjust the temperature so that the initial flue gas temperature at the outlet of the flue gas temperature adjusting chamber reaches the initial reaction temperature range, which is:

[0015] According to the purification reaction control strategy, when the flue gas temperature at the outlet of the flue gas temperature adjusting chamber is lower than the initial reaction temperature range / purification reaction temperature range, the temperature control device in the flue gas temperature adjusting chamber is controlled to start heating according to a preset heating strategy;

[0016] When the flue gas temperature at the outlet of the flue gas temperature adjusting chamber is higher than the initial reaction temperature range / purification reaction temperature range, the temperature control device in the flue gas temperature adjusting chamber is controlled to start cooling according to a preset cooling strategy so that the flue gas temperature at the outlet of the flue gas temperature adjusting chamber reaches the initial reaction temperature range / purification reaction temperature range.

[0017] Optionally, in the purification reaction control strategy, the heating strategy is a multi-stage control heating heater heating strategy, a heating strategy table in which the flue gas temperature at the outlet of the flue gas temperature adjusting chamber is compared with the start and stop of each stage of the heating heater is preset, and according to the flue gas temperature at the outlet of the flue gas temperature adjusting chamber and the heating strategy table, the start / stop of each stage of the heating heater in the temperature control device is controlled to heat / cool.

[0018] Optionally, the initial reaction temperature range / purification reaction temperature range is 300-600°C; and a corresponding temperature range table for the initial reaction temperature range and the purification reaction temperature range is preset, and the purification reaction temperature range is determined according to the initial reaction temperature range and the temperature range table.

[0019] Optionally, the method further comprises: detecting the real-time gas flow of the flue gas before the flue gas is sucked into the flue gas temperature adjusting chamber;

[0020] According to a preset suction force selection strategy corresponding to the gas flow and suction force and the real-time gas flow, a corresponding preheating suction force range and purification reaction suction force range are selected.

[0021] Optionally, a honeycomb type catalytic carrier is made according to preset parameters, a heavy metal catalyst corresponding to the oxidation-reduction reaction of moxibustion flue gas is coated and baked on the honeycomb type catalytic carrier, and the honeycomb type catalytic carrier is embedded into a reaction kettle with a hollow cavity to form the purification reaction kettle for the fluid purification reaction of moxibustion flue gas.

[0022] Optionally, the method further comprises:

[0023] The heavy metal catalyst mixed slurry of at least one of metal platinum, metal cobalt, cerium-zirconium composite oxide, metal rhodium, aluminum oxide, silicon oxide, metal palladium and manganese oxide is coated on the honeycomb type catalytic carrier, and the honeycomb type catalytic carrier is obtained by drying and then calcining at 580-630 DEG C.

[0024] Optionally, the preset moxibustion consumable specification parameter corresponds to the moxibustion flue gas flow and the moxibustion flue gas flow corresponds to the moxibustion flue gas purification parameters of the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range.

[0025] The specification parameter of the currently used moxibustion consumable is received, and the real-time moxibustion flue gas flow is obtained according to the flue gas amount corresponding relationship.

[0026] The moxibustion flue gas flow and the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range are obtained according to the real-time moxibustion flue gas flow and the moxibustion flue gas purification parameter corresponding relationship.

[0027] In another aspect, the application also provides a moxibustion flue gas purification treatment device, comprising: a flue gas temperature adjusting cavity, a purification reaction kettle, a flue gas suction mechanism and a moxibustion flue gas purification treatment controller; wherein,

[0028] The flue gas temperature adjusting cavity is a hollow flue gas flow-through cavity connected to the flue gas exhaust port of the moxibustion device, a temperature control device is arranged in the flue gas temperature adjusting cavity, and a temperature monitor is arranged at the flue gas outlet of the flue gas temperature adjusting cavity, and the temperature control device and the temperature monitor are communicatively connected to the moxibustion flue gas purification treatment controller.

[0029] The purification reaction kettle is a hollow flue gas flow-through cavity reaction kettle, the cavity of which is connected to the flue gas temperature adjusting cavity, and a honeycomb type reaction carrier is embedded in the inner cavity of the purification reaction kettle, and a moxibustion flue gas purification reaction substance is coated on the honeycomb type reaction carrier.

[0030] The flue gas suction mechanism is an adjustable suction fan cavity connected to the inner cavity of the purification reaction kettle, which drives the flue gas to flow through the flue gas temperature adjusting cavity and the inner cavity of the purification reaction kettle and then discharges the reacted gas; the adjustable suction fan is communicatively connected to the moxibustion flue gas purification treatment controller.

[0031] The moxibustion flue gas purification treatment controller comprises a moxibustion flue gas treatment setting processor, a moxibustion flue gas temperature monitoring processor, a flue gas suction processor and a flue gas reaction temperature control processor.

[0032] The moxibustion smoke treatment device is provided with a processor connected with the moxibustion smoke temperature monitoring processor, the smoke suction processor and the smoke reaction temperature control processor, and a purification reaction control strategy for presetting control of initial reaction temperature range, purification reaction temperature range, preheating suction range and purification reaction suction range in the purification reaction process is provided;

[0033] The moxibustion smoke temperature monitoring processor is connected with the temperature monitor, and controls real-time monitoring of the smoke temperature at the outlet of the smoke temperature adjusting cavity;

[0034] The smoke suction processor is connected with the smoke suction mechanism, and controls the smoke suction device according to the purification reaction control strategy, so that the smoke is sucked in with suction force in the preheating suction range and in the form of airflow through the smoke temperature adjusting cavity;

[0035] The smoke suction device is controlled according to the purification reaction control strategy, so that the moxibustion smoke generated in the moxibustion process is sucked in with suction force in the reaction suction range and in the form of airflow through the smoke temperature adjusting cavity;

[0036] The initial treatment moxibustion smoke flowing out of the smoke temperature adjusting cavity and reaching the purification reaction temperature range is controlled to be introduced into the purification reaction kettle provided with moxibustion smoke reactants for reaction, and the reacted gas is discharged;

[0037] The smoke reaction temperature control processor is connected with the moxibustion smoke temperature monitoring processor and the smoke suction processor, and controls the temperature adjusting device in the smoke temperature adjusting cavity to adjust the temperature according to the purification reaction control strategy, so that the initial smoke temperature flowing out of the smoke temperature adjusting cavity reaches the initial reaction temperature range;

[0038] The temperature adjusting device in the smoke temperature adjusting cavity is controlled to adjust the temperature according to the purification reaction control strategy, so that the moxibustion smoke reaction temperature flowing out of the smoke temperature adjusting cavity reaches the purification reaction temperature range.

[0039] Optionally, the smoke reaction temperature control processor comprises a smoke reaction temperature rising processing unit and a smoke reaction temperature falling processing unit; wherein,

[0040] The smoke reaction temperature rising processing unit is connected with the moxibustion smoke temperature monitoring processor and the smoke suction processor, and controls the temperature adjusting device in the smoke temperature adjusting cavity to start rising with a preset rising strategy when the smoke temperature flowing out of the smoke temperature adjusting cavity is lower than the initial reaction temperature range / purification reaction temperature range according to the purification reaction control strategy;

[0041] The flue gas reaction cooling treatment unit is connected with the moxibustion flue gas temperature monitoring processor and the flue gas suction processor. When the flue gas temperature at the outlet of the flue gas temperature adjusting cavity is higher than the initial reaction temperature range / purification reaction temperature range, the temperature control device in the flue gas temperature adjusting cavity is controlled to cool down in a preset cooling strategy, so that the flue gas temperature at the outlet of the flue gas temperature adjusting cavity reaches the initial reaction temperature range / purification reaction temperature range.

[0042] The method and device for purifying moxibustion flue gas can completely eliminate harmful substances in the moxibustion flue gas, meet the indoor emission standard, and do not need frequent manual cleaning. The harmful substances in the moxibustion flue gas are efficiently eliminated through multi-element catalysis of heavy metals, especially four-element catalytic reaction purification treatment of the moxibustion flue gas, and expensive consumables are not consumed.

[0043] The method and device for purifying moxibustion flue gas can completely eliminate harmful substances in the moxibustion flue gas, meet the indoor emission standard, and do not need frequent manual cleaning. The harmful substances in the moxibustion flue gas are efficiently eliminated through multi-element catalysis of heavy metals, especially four-element catalytic reaction purification treatment of the moxibustion flue gas, and expensive consumables are not consumed.

[0044] The method and device for purifying moxibustion flue gas can completely eliminate harmful substances in the moxibustion flue gas, meet the indoor emission standard, and do not need frequent manual cleaning. The harmful substances in the moxibustion flue gas are efficiently eliminated through multi-element catalysis of heavy metals, especially four-element catalytic reaction purification treatment of the moxibustion flue gas, and expensive consumables are not consumed. BRIEF DESCRIPTION OF DRAWINGS

[0045] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the description of the embodiments of the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0046] Figure 1 is a flowchart of a method for purifying moxibustion flue gas in an embodiment of the present application;

[0047] Figure 2 is a flowchart of a second method for purifying moxibustion flue gas in an embodiment of the present application;

[0048] Figure 3 is a flowchart of a third moxibustion smoke purification treatment method in an embodiment of the present application;

[0049] Figure 4 is a flowchart of a fourth moxibustion smoke purification treatment method in an embodiment of the present application;

[0050] Figure 5 is a flowchart of a fifth moxibustion smoke purification treatment method in an embodiment of the present application;

[0051] Figure 6 is a flowchart of a sixth moxibustion smoke purification treatment method in an embodiment of the present application;

[0052] Figure 7 is a structural diagram of a moxibustion smoke purification treatment device in an embodiment of the present application;

[0053] Figure 8 is a structural diagram of a smoke reaction temperature control processor in a moxibustion smoke purification treatment device in an embodiment of the present application;

[0054] Figure 9 is another structural diagram of a smoke reaction temperature control processor in a moxibustion smoke purification treatment device in an embodiment of the present application;

[0055] Figure 10 is a structural diagram of a smoke temperature control and purification reaction device in a moxibustion smoke purification treatment device in an embodiment of the present application;

[0056] Figure 11 is a sectional diagram of a purification reaction device in a moxibustion smoke purification treatment device in an embodiment of the present application;

[0057] Figure 12 is a sectional diagram of a smoke temperature control device in a moxibustion smoke purification treatment device in an embodiment of the present application. DETAILED DESCRIPTION

[0058] The technical solutions in the embodiments of the present application will be described clearly and completely below 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 in the present application, all the other embodiments obtained by those skilled in the art without any creative work fall within the scope of protection of the present application.

[0059] The main component of moxibustion therapy is moxibustion, which is to burn moxa leaves, moxa or moxa sticks to perform moxibustion therapy. In the process of moxibustion therapy, the main volatile components in the smoke generated by burning are ammonia, ethanol, ethylene glycol, acetic acid, acetamide, propionic acid, cyclohexene, methyl furan, butyramide, 3-methyl-butyramide, tetronic acid, pentanol, 2-methyl pentanol, stendione, n-hexylamine, naphthalene, coumaric acid, hydantoin, trimethyl para-diazine, bromoazetidine. There are also some harmful substances such as carbon monoxide, nitrogen oxides, TVOC and tar. At present, there is no precise and efficient moxibustion therapy smoke treatment scheme on the market. Therefore, an efficient, precise and intelligent moxibustion therapy smoke purification treatment method is proposed in this embodiment.

[0060] Specifically, as shown in the flowchart of the method for purifying moxibustion therapy smoke in this embodiment, the method comprises the following steps: Figure 1

[0061] Step 101, in the moxibustion therapy smoke purification treatment controller of the moxibustion therapy smoke treatment equipment, preset the purification reaction control strategy of the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range in the smoke purification reaction process.

[0062] The initial reaction temperature range is the preheating temperature range of the air entering the smoke temperature adjusting chamber when no moxibustion therapy smoke is added. The preheating temperature range does not necessarily coincide with the purification reaction temperature range, because the moxibustion therapy smoke contains a certain amount of energy, which can be used to make the energy in the moxibustion therapy smoke purification process more precise. The suction range directly affects the flow of air or smoke entering the smoke temperature adjusting chamber, and also directly affects the purification reaction temperature conditions such as reaction rate and reaction completeness. Therefore, according to the preset purification reaction control strategy of the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range, the purification reaction control of the moxibustion therapy smoke can be better realized.

[0063] Step 102, the moxibustion therapy smoke purification treatment controller monitors the smoke temperature of the outflow of the smoke temperature adjusting chamber in real time through the temperature monitor located at the outflow of the smoke temperature adjusting chamber.

[0064] The temperature monitor probe can detect the temperature of the outflow of the smoke temperature adjusting chamber and the temperature of the smoke to be reacted in the purification reaction kettle chamber in real time, and convert the temperature into a digital temperature signal and transmit it to the moxibustion therapy smoke purification treatment controller, realizing real-time temperature monitoring of the moxibustion therapy smoke after temperature control.

[0065] Step 103, according to the purification reaction control strategy, control the smoke suction device to suck the smoke into the smoke temperature adjusting chamber in the form of airflow with the suction range of the preheating suction range.​

[0066] Step 104, according to the purification reaction control strategy, control the temperature adjusting device in the flue gas temperature adjusting chamber to adjust the temperature, so that the initial flue gas temperature at the outlet of the flue gas temperature adjusting chamber reaches the initial reaction temperature range.

[0067] Step 105, according to the purification reaction control strategy, control the flue gas suction device to suck the moxibustion flue gas generated in the moxibustion process with a suction force in the reaction suction force range, and pass through the flue gas temperature adjusting chamber in the form of airflow.

[0068] Step 106, according to the purification reaction control strategy, control the temperature adjusting device in the flue gas temperature adjusting chamber to adjust the temperature, so that the moxibustion flue gas reaction temperature at the outlet of the flue gas temperature adjusting chamber reaches the purification reaction temperature range.

[0069] The preset purification reaction control strategy uses the temperature adjusting device in the flue gas temperature adjusting chamber, such as a heating wire controlled by a relay on-off, and also can be a multi-section heating wire controlled by a multi-section relay on-off. The multi-section heating wire can be arranged in parallel and / or in series in the flue gas temperature adjusting chamber. When the flue gas passes through the temperature adjusting chamber, it can receive heat energy to the preset reaction temperature range. When the temperature in the flue gas temperature adjusting chamber is higher than the preset temperature range, the adjusting temperature control device is turned off to reduce the temperature to the preset temperature range. When the temperature in the flue gas temperature adjusting chamber is lower than the preset temperature range, the adjusting temperature control device is turned on to increase the temperature to the preset temperature range.

[0070] Preferably, the flue gas temperature adjusting chamber can also be provided as a double-layer chamber. The heater is placed in the outer chamber, and the inner layer of the flue gas passes through the chamber to be heated by the heater. In the form of separation of the flue gas flow chamber and the heating chamber, the electrical safety in the temperature control chamber is ensured, and the service life of the electrical equipment is prolonged.

[0071] Preferably, the temperature control device can also be a voltage / current regulated heating power regulated temperature control device. When the temperature in the flue gas temperature adjusting chamber is higher than the preset temperature range, the adjusting temperature control device reduces the heating power to reduce the temperature to the preset temperature range. When the temperature in the flue gas temperature adjusting chamber is lower than the preset temperature range, the adjusting temperature control device increases the heating power to increase the temperature to the preset temperature range.

[0072] More preferably, different over-range stages are set in the preset temperature range, and different multi-section heating wires are set to be turned on / off or different multi-section heating wires are set to increase / decrease the heating power in each different over-range stage, so as to realize the temperature stabilization in the preset range in the flue gas temperature adjusting chamber in the form of temperature increase, temperature maintenance and temperature decrease, and ensure the stable temperature condition of the flue gas to be reacted.

[0073] Step 107, the initial treatment moxibustion flue gas reaching the purification reaction temperature range at the outlet of the flue gas temperature adjusting chamber is introduced into the purification reaction kettle pre-provided with the moxibustion flue gas reactant to react, and the reacted gas is discharged.

[0074] In some optional embodiments, as shown in Figure 2 Fig. 2, it is a flowchart of the method of the third moxibustion flue gas purification treatment in the embodiment, which is different from Figure 1 that the temperature adjusting device in the flue gas temperature adjusting chamber is controlled to adjust the temperature according to the purification reaction control strategy, so that the initial flue gas temperature reaching the outlet of the flue gas temperature adjusting chamber reaches the initial reaction temperature range, which is:

[0075] Step 201, according to the purification reaction control strategy, when the flue gas temperature reaching the outlet of the flue gas temperature adjusting chamber is lower than the initial reaction temperature range / purification reaction temperature range, the temperature adjusting device in the flue gas temperature adjusting chamber is controlled to start heating with a preset heating strategy.

[0076] Step 202, when the flue gas temperature reaching the outlet of the flue gas temperature adjusting chamber is higher than the initial reaction temperature range / purification reaction temperature range, the temperature adjusting device in the flue gas temperature adjusting chamber is controlled to cool down with a preset cooling strategy, so that the flue gas temperature reaching the outlet of the flue gas temperature adjusting chamber reaches the initial reaction temperature range / purification reaction temperature range.

[0077] In some optional embodiments, as shown in Fig. 1, it is a flowchart of the method of the first moxibustion flue gas purification treatment in the embodiment, which is different from

[0078] that the initial reaction temperature range / purification reaction temperature range is 300-600℃, and a corresponding temperature range comparison table is preset for the initial reaction temperature range and the purification reaction temperature range, and the purification reaction temperature range is determined according to the initial reaction temperature range and the temperature range comparison table. Figure 3 Figure 2 In some optional embodiments, as shown in Fig. 2, it is a flowchart of the method of the third moxibustion flue gas purification treatment in the embodiment, which is different from

[0079] that in the purification reaction control strategy,

[0080] Step 301, the heating strategy is a multi-section control heating heater heating strategy, and a heating strategy comparison table of the flue gas temperature reaching the outlet of the flue gas temperature adjusting chamber and each section of the heating heater is preset.

[0081] In some optional embodiments, as shown in Figure 4 Fig. 3, it is a flowchart of the method of the fourth moxibustion flue gas purification treatment in the embodiment, which is different from Figure 1 that it further comprises:

[0082] Step 401, detecting the real-time air flow of the inhaled flue gas before the flue gas is inhaled by the flue gas temperature adjusting cavity.

[0083] Step 402, selecting the corresponding preheating suction range and purification reaction suction range according to the real-time air flow and the suction force selection strategy corresponding to the preset air flow and suction force.

[0084] In some optional embodiments, as shown in Figure 5 , it is a flowchart of the method for the fifth moxibustion flue gas purification treatment in the embodiment, and Figure 1 different from the above, it further includes:

[0085] Step 501, making a honeycomb type catalytic carrier according to the preset parameters, and coating the heavy metal catalyst corresponding to the redox reaction of the moxibustion flue gas on the honeycomb type catalytic carrier.

[0086] Step 502, embedding the honeycomb type catalytic carrier into the reaction kettle with a hollow cavity to form a purification reaction kettle for the moxibustion flue gas fluid purification reaction.

[0087] Optionally, at least one of the metal platinum, the metal cobalt, the cerium-zirconium composite oxide, the metal rhodium, the aluminum oxide, the silicon oxide, the metal palladium and the manganese oxide can be used as the heavy metal catalyst mixed slurry in the method, which is coated on the honeycomb type catalytic carrier, dried and then placed in a furnace for calcination at 580-630°C to obtain the honeycomb type catalytic carrier. In the method, the CxHy, CO, PM and NOx in the moxibustion flue gas (such as the moxa flue gas) can be used as the reducing agent and oxidant in the four-effect catalytic technology, and the CxHy, CO, PM and NOx can be removed simultaneously on the same catalyst bed to achieve the purification treatment of the moxibustion flue gas. The perovskite composite oxide (ABO3) type catalyst has a good effect in simultaneously removing the PM and NOx. The nanoscale rare earth perovskite oxide can be used as the carrier material, and the active component can be the Mn-based type, the Co-based type, the Fe-based type and the Cu-based type.

[0088] In some optional embodiments, as shown in Figure 6 , it is a flowchart of the method for the sixth moxibustion flue gas purification treatment in the embodiment, and Figure 1 different from the above, it further includes:

[0089] Step 601, presetting the flue gas amount corresponding relationship between the moxibustion consumable specification parameters and the generated moxibustion flue gas flow, and the moxibustion flue gas purification parameter corresponding relationship between the moxibustion flue gas flow and the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range.

[0090] Step 602, receiving the specification parameters of the currently used moxibustion consumable, and obtaining the real-time moxibustion flue gas flow according to the flue gas amount corresponding relationship.

[0091] The specification parameters of the moxibustion consumables used can reflect the smoke flow generated during moxibustion and the range of harmful components in the smoke flow, and the moxibustion smoke purification parameters of the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range corresponding to the smoke flow at different stages can efficiently and accurately achieve the treatment of moxibustion smoke.

[0092] Step 603, obtaining the moxibustion smoke flow and the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range according to the corresponding relationship between the real-time moxibustion smoke flow and the moxibustion smoke purification parameters.

[0093] In other optional embodiments, as shown in Figures 7 to 12 Figure 7 is a structural schematic diagram of a moxibustion smoke purification treatment device in this embodiment; Figure 8 is a structural schematic diagram of a smoke reaction temperature control processor in the moxibustion smoke purification treatment device in this embodiment; Figure 9 is another structural schematic diagram of a smoke reaction temperature control processor in the moxibustion smoke purification treatment device in this embodiment; Figure 10 is a structural schematic diagram of a smoke temperature control and purification reaction device in the moxibustion smoke purification treatment device in this embodiment; Figure 11 is a sectional schematic diagram of a purification reaction device in the moxibustion smoke purification treatment device in this embodiment; Figure 12 is a sectional schematic diagram of a smoke temperature control device in the moxibustion smoke purification treatment device in this embodiment. The moxibustion smoke purification treatment device can be used to implement the moxibustion smoke purification treatment method described above.

[0094] Specifically, the moxibustion smoke purification treatment device includes a smoke temperature adjusting cavity 701, a purification reaction kettle 702, a smoke suction mechanism 703 and a moxibustion smoke purification treatment controller 704.

[0095] The smoke temperature adjusting cavity 701 is a hollow smoke flow type cavity connected to the smoke exhaust port of the moxibustion device, such as the moxibustion smoke inlet 713 in the figure. A temperature control device 711 is arranged in the smoke temperature adjusting cavity. The temperature control device 711 is a heating on-off or power controller of a heating wire 714 built in a heat preservation tube cavity. A temperature monitor 712 is arranged at the smoke outlet of the smoke temperature adjusting cavity. The temperature control device 711 and the temperature monitor 712 are communicatively connected to the moxibustion smoke purification treatment controller 704.

[0096] ​The purification reaction kettle 702 is a hollow flue gas flow-through type inner cavity reaction kettle, the cavity is connected to the flue gas temperature adjusting cavity, the honeycomb type reaction carrier 721 is embedded in the purification reaction kettle inner cavity, and the moxibustion flue gas purification reactant is coated and baked on the honeycomb type reaction carrier.

[0097] The flue gas suction mechanism 703 is an adjustable suction fan cavity connected to the inner cavity of the purification reaction kettle, which drives the flue gas to flow through the flue gas temperature adjusting cavity and the inner cavity of the purification reaction kettle, and then discharges the reacted gas; the adjustable suction fan is communicatively connected to the moxibustion flue gas purification treatment controller.

[0098] The moxibustion flue gas purification treatment controller 704 can be an all-in-one controller such as a PLC all-in-one controller, etc., including: a moxibustion flue gas treatment setting processor 741, a moxibustion flue gas temperature monitoring processor 742, a flue gas suction processor 743, and a flue gas reaction temperature control processor 744. The moxibustion flue gas treatment setting processor 741 is connected with the moxibustion flue gas temperature monitoring processor 742, the flue gas suction processor 743, and the flue gas reaction temperature control processor 744, and presets the purification reaction control strategy of the initial reaction temperature range, the purification reaction temperature range, the preheating suction range, and the purification reaction suction range in the moxibustion flue gas purification reaction process.

[0099] The moxibustion flue gas temperature monitoring processor 742 is connected with the temperature monitor 712, and controls the real-time monitoring of the flue gas temperature at the outlet of the flue gas temperature adjusting cavity.

[0100] The flue gas suction processor 743 is connected with the flue gas suction mechanism 703, and controls the flue gas suction device according to the purification reaction control strategy, so that the moxibustion flue gas generated in the moxibustion process is sucked in with the suction range of the preheating suction range, and flows through the flue gas temperature adjusting cavity in the form of gas flow.

[0101] The flue gas suction processor 743 is connected with the flue gas suction mechanism 703, and controls the flue gas suction device according to the purification reaction control strategy, so that the moxibustion flue gas generated in the moxibustion process is sucked in with the suction range of the preheating suction range, and flows through the flue gas temperature adjusting cavity in the form of gas flow.

[0102] The flue gas suction processor 743 is connected with the flue gas suction mechanism 703, and controls the flue gas suction device according to the purification reaction control strategy, so that the moxibustion flue gas generated in the moxibustion process is sucked in with the suction range of the preheating suction range, and flows through the flue gas temperature adjusting cavity in the form of gas flow.

[0103] The flue gas reaction temperature control processor 744 is connected with the moxibustion flue gas treatment setting processor 741, the moxibustion flue gas temperature monitoring processor 742, and the flue gas suction processor 743, and controls the temperature adjusting device in the flue gas temperature adjusting cavity according to the purification reaction control strategy, so that the initial flue gas temperature at the outlet of the flue gas temperature adjusting cavity reaches the initial reaction temperature range.

[0104] According to the purification reaction control strategy, the temperature control device in the flue gas temperature adjusting chamber is controlled to adjust the temperature, so that the moxibustion flue gas reaction temperature at the outlet of the flue gas temperature adjusting chamber reaches the purification reaction temperature range.

[0105] The flue gas reaction temperature control processor 744 can include a flue gas reaction temperature rising processing unit 7441 and a flue gas reaction temperature falling processing unit 7442. The flue gas reaction temperature rising processing unit 7441 is connected with the moxibustion flue gas temperature monitoring processor 741 and the flue gas suction processor 743. According to the purification reaction control strategy, when the flue gas temperature at the outlet of the flue gas temperature adjusting chamber is lower than the initial reaction temperature range / purification reaction temperature range, the temperature control device in the flue gas temperature adjusting chamber is controlled to start rising according to a preset rising strategy.

[0106] The flue gas reaction temperature falling processing unit 7442 is connected with the moxibustion flue gas temperature monitoring processor 741 and the flue gas suction processor 743. When the flue gas temperature at the outlet of the flue gas temperature adjusting chamber is higher than the initial reaction temperature range / purification reaction temperature range, the temperature control device in the flue gas temperature adjusting chamber is controlled to fall according to a preset falling strategy, so that the flue gas temperature at the outlet of the flue gas temperature adjusting chamber reaches the initial reaction temperature range / purification reaction temperature range.

[0107] The embodiment also provides a readable storage medium, and the readable storage medium stores a computer program. The computer program is executed by a processor to implement the steps of the moxibustion flue gas purification processing method.

[0108] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by a computer program instructing relevant hardware, and the computer program can be stored in a non-volatile computer readable storage medium. When the computer program is executed, the processes of the above-mentioned embodiments of the methods can be included. Any reference to memory, storage, database or other medium used in each embodiment provided by the present application can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. As an illustration but not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0109] Those skilled in the art can clearly understand that, for the convenience and brevity of description, only the division of the above-mentioned functional units and modules is exemplified, and in actual application, the above-mentioned functions can be completed by different functional units and modules according to needs, that is, the internal structure of the device is divided into different functional units or modules to complete all or part of the functions described above.

[0110] The above embodiments are only used to illustrate the technical solutions of the present application, but not limit it; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should be included in the protection scope of the present application.

Claims

1. A method for moxibustion smoke purification treatment, characterized in that, The application relates to a moxibustion smoke purification treatment controller. The moxibustion smoke purification treatment controller is used for monitoring the temperature of the smoke flowing out of the smoke temperature adjusting cavity in real time through a temperature monitor arranged at the position of the smoke flowing out of the smoke temperature adjusting cavity. The smoke suction device is controlled according to the purification reaction control strategy, and the moxibustion smoke generated in the moxibustion process is sucked into the smoke temperature adjusting cavity in the form of airflow. The temperature of the smoke flowing out of the smoke temperature adjusting cavity is controlled according to the purification reaction control strategy. The temperature of the smoke flowing out of the smoke temperature adjusting cavity is controlled according to the purification reaction control strategy. The initial treatment moxibustion smoke flowing out of the smoke temperature adjusting cavity and reaching the purification reaction temperature range is introduced into a purification reaction kettle provided with a moxibustion smoke reactant to react, and the reacted gas is discharged. ​ ​ 2. The method of moxa smoke purification according to claim 1, wherein, The initial reaction temperature range / purification reaction temperature range is 300-600℃; and a corresponding temperature range correspondence table is preset for the initial reaction temperature range and the purification reaction temperature range, and the purification reaction temperature range is determined according to the initial reaction temperature range and the temperature range correspondence table.

3. The method of moxa smoke purification according to claim 1, wherein, Also comprising: Detecting the real-time gas flow of the inhaled flue gas before the flue gas temperature adjusting cavity inhales the flue gas; According to the preset suction force selection strategy corresponding to the gas flow and suction force and the real-time gas flow, a corresponding preheating suction force range and purification reaction suction force range are selected.

4. The method of moxa smoke purification according to claim 1, wherein, According to the preset parameters, a honeycomb type catalytic carrier is prepared, a heavy metal catalyst corresponding to the oxidation-reduction reaction of moxibustion flue gas is coated and baked on the honeycomb type catalytic carrier; and the honeycomb type catalytic carrier is embedded into a reaction kettle with a hollow cavity to form the purification reaction kettle for the moxibustion flue gas fluid purification reaction.

5. The method of moxa smoke purification according to claim 4, wherein, Also comprising: At least one of metal platinum, metal cobalt, cerium-zirconium composite oxide, metal rhodium, aluminum oxide, silicon oxide, metal palladium and manganese oxide is used as the heavy metal catalyst mixed slurry, which is coated on the honeycomb type catalytic carrier, dried and then baked at 580-630℃ to prepare the honeycomb type catalytic carrier.

6. The method of moxa smoke purification according to any one of claims 1 to 5, wherein, The moxibustion consumable specification parameters and the flue gas amount corresponding relationship of the generated moxibustion flue gas flow are preset, and the moxibustion flue gas flow and the moxibustion flue gas purification parameter corresponding relationship of the initial reaction temperature range, the purification reaction temperature range, the preheating suction force range and the purification reaction suction force range; The specification parameters of the currently used moxibustion consumable are received, and the real-time moxibustion flue gas flow is obtained according to the flue gas amount corresponding relationship; The moxibustion flue gas flow and the initial reaction temperature range, the purification reaction temperature range, the preheating suction force range and the purification reaction suction force range are obtained according to the real-time moxibustion flue gas flow and the moxibustion flue gas purification parameter corresponding relationship.

7. A device for moxibustion smoke purification treatment, characterized in that, Comprising: The flue gas temperature adjusting cavity, the purification reaction kettle, the flue gas suction mechanism and the moxibustion flue gas purification treatment controller; wherein, The flue gas temperature adjusting cavity is a hollow flue gas flow type cavity connected to the flue gas outlet of the moxibustion equipment, a temperature control device is arranged in the flue gas temperature adjusting cavity, and a temperature monitor is arranged at the flue gas outlet of the flue gas temperature adjusting cavity, and the temperature control device and the temperature monitor are communicatively connected to the moxibustion flue gas purification treatment controller; The purification reaction kettle is a hollow flue gas flow type inner cavity reaction kettle, the cavity of which is connected to the flue gas temperature adjusting cavity, and a honeycomb type reaction carrier is embedded in the inner cavity of the purification reaction kettle, and a moxibustion flue gas purification reaction substance is coated and baked on the honeycomb type reaction carrier; The flue gas suction mechanism is an adjustable suction fan cavity connected to the inner cavity of the purification reaction kettle, which drives the flue gas to flow through the flue gas temperature adjusting cavity and the inner cavity of the purification reaction kettle and then discharges the reacted gas; the adjustable suction fan is communicatively connected to the moxibustion flue gas purification treatment controller; The moxibustion flue gas purification treatment controller comprises a moxibustion flue gas treatment setting processor, a moxibustion flue gas temperature monitoring processor, a flue gas suction processor and a flue gas reaction temperature control processor. The moxibustion flue gas treatment device is provided with a processor connected with the moxibustion flue gas temperature monitoring processor, the flue gas suction processor and the flue gas reaction temperature control processor, and the processor is configured to control the initial reaction temperature range, the purification reaction temperature range, the preheating suction range and the purification reaction suction range in the purification reaction process. The moxibustion flue gas temperature monitoring processor is connected with the temperature monitor, and controls the real-time monitoring of the flue gas temperature at the outlet of the flue gas temperature adjusting chamber. The flue gas suction processor is connected with the flue gas suction mechanism, and controls the flue gas suction device according to the purification reaction control strategy, so that the flue gas is sucked into the flue gas temperature adjusting chamber in the form of airflow under the suction force in the preheating suction range. The flue gas suction processor is connected with the flue gas suction mechanism, and controls the flue gas suction device according to the purification reaction control strategy, so that the flue gas is sucked into the flue gas temperature adjusting chamber in the form of airflow under the suction force in the preheating suction range. The processor is configured to control the initial treatment moxibustion flue gas flowing out of the flue gas temperature adjusting chamber and reaching the purification reaction temperature range to be introduced into the purification reaction kettle provided with the moxibustion flue gas reactant for reaction, and the gas after the reaction is discharged. The flue gas reaction temperature control processor is connected with the moxibustion flue gas temperature monitoring processor and the flue gas suction processor, and is configured to control the temperature adjusting device in the flue gas temperature adjusting chamber according to the purification reaction control strategy, so that the flue gas can be heated to the preset reaction temperature range when the flue gas passes through the temperature adjusting chamber, the heating is turned off to reduce the temperature to the preset temperature range when the temperature in the flue gas temperature adjusting chamber is higher than the preset temperature range, and the heating is turned on to increase the temperature to the preset temperature range when the temperature in the flue gas temperature adjusting chamber is lower than the preset temperature range. The flue gas reaction temperature control processor is connected with the moxibustion flue gas temperature monitoring processor and the flue gas suction processor, and is configured to control the temperature adjusting device in the flue gas temperature adjusting chamber according to the purification reaction control strategy, so that the flue gas can be heated to the preset reaction temperature range when the flue gas passes through the temperature adjusting chamber, the heating is turned off to reduce the temperature to the preset temperature range when the temperature in the flue gas temperature adjusting chamber is higher than the preset temperature range, and the heating is turned on to increase the temperature to the preset temperature range when the temperature in the flue gas temperature adjusting chamber is lower than the preset temperature range.

8. The device for moxibustion smoke purification treatment according to claim 7, characterized in that, The flue gas reaction temperature control processor comprises a flue gas reaction temperature rising processing unit and a flue gas reaction temperature falling processing unit. The flue gas reaction temperature rising processing unit is connected with the moxibustion flue gas temperature monitoring processor and the flue gas suction processor, and is configured to control the temperature adjusting device in the flue gas temperature adjusting chamber to start heating according to the preset temperature rising strategy when the flue gas temperature at the outlet of the flue gas temperature adjusting chamber is lower than the initial reaction temperature range / purification reaction temperature range. The flue gas reaction temperature reduction processing unit is connected with the moxibustion flue gas temperature monitoring processor and the flue gas suction processor, and when the flue gas temperature at the outlet of the flue gas temperature adjusting cavity is higher than the initial reaction temperature range / purification reaction temperature range, the temperature control device in the flue gas temperature adjusting cavity is controlled to reduce the temperature according to a preset temperature reduction strategy, so that the flue gas temperature at the outlet of the flue gas temperature adjusting cavity reaches the initial reaction temperature range / purification reaction temperature range.

Citation Information

Patent Citations

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