A system and method for flue gas purification using a CRS smoke purifier
The CRS smoke purifier system's adaptive purification strategy solves the problem of low purification efficiency of moxibustion smoke under different environmental conditions, achieving a stable and efficient smoke purification effect.
Patent Information
- Application Number
- CN202210884763.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-26
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2042-07-26
AI Technical Summary
Existing moxibustion smoke purification technologies are ineffective under different environmental conditions and lack adaptive adjustment capabilities, resulting in low purification efficiency.
The CRS fume purifier system integrates a fume purifier reactor, a fan, an environmental detector, and a flue gas purification controller. By monitoring environmental conditions in real time, it adjusts the reaction conditions and power within the reactor to achieve an adaptive purification strategy.
It achieves stable and efficient flue gas purification under different environmental conditions, ensuring the accuracy of purification effect and the safe operation of the equipment.
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Figure CN116196743B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of moxibustion smoke purification, specifically to a system and method for smoke purification using a CRS smoke purifier. Background Technology
[0002] Moxibustion, including moxa therapy, is a traditional Chinese external treatment method. It involves burning moxa sticks or cones made from mugwort leaves to stimulate acupoints or specific areas of the body. This heat stimulates the flow of Qi (vital energy) to regulate disordered physiological and biochemical functions, thereby achieving the purpose of disease prevention and treatment. Due to its unique effects of health maintenance, beauty enhancement, and treatment, it has gained widespread attention and is being widely promoted.
[0003] Furthermore, there are currently moxibustion devices on the market designed for moxibustion therapy. These devices place burning moxa sticks or cones in a sealed container, and the heat and medicinal properties are transferred through a mesh screen while preventing the ash from falling. The smoke produced by the burning moxa sticks or cones is extracted through a smoke extraction device, so it will not cause discomfort to the user and allows them to enjoy a smokeless moxibustion experience.
[0004] However, during moxibustion, the smoke is usually discharged through a smoke extraction device or treated by a smoke treatment device. The smoke continuously enters the smoke treatment device for further processing. The smoke produced by burning moxa sticks or cones contains alkanes, esters, alkenes, alcohols, ketones, aldehydes, and aromatic hydrocarbons. Currently, the common methods for treating moxibustion smoke include filtration with filters or electrostatic adsorption, used individually or in combination, but their purification and elimination effects are not ideal. Furthermore, environmental conditions vary significantly across China and even the world. For example, temperature, wind speed, humidity, and sunshine duration differ greatly between southern and northern China. The performance of moxibustion equipment varies under different environmental conditions. Therefore, the ability to automatically learn and adjust operating strategies is also a crucial factor affecting the performance of moxibustion equipment.
[0005] To address the aforementioned problems, this invention proposes a flue gas purification system and method for a CRS smoke purifier. Summary of the Invention
[0006] (1) Technical problems to be solved
[0007] The purpose of this invention is to overcome the shortcomings of the prior art, adapt to practical needs, and provide a flue gas purification system and method for a CRS smoke purifier to solve the above-mentioned technical problems.
[0008] (2) Technical solution
[0009] To achieve the objectives of this invention, the technical solution adopted is as follows:
[0010] A flue gas purification system for a CRS smoke purifier includes: a smoke purifier reactor, a fan, an ambient temperature detector, a ventilation detector, a humidity detector, and a flue gas purification and treatment controller; wherein,
[0011] The inner cavity of the smoke purifier reactor is equipped with a reaction core coated with a reaction material that reacts with the moxibustion smoke to purify it. One end of the inner cavity of the smoke purifier reactor is a smoke inlet, and the other end is a smoke outlet connected to the fan. The smoke obtained during the moxibustion treatment is drawn in by the suction of the fan and flows through the smoke purifier reactor.
[0012] The ambient temperature detector, ventilation detector, and humidity detector are located outside the fume purifier reactor and connected to the flue gas purification controller.
[0013] The flue gas purification and treatment controller includes: a flue gas purification and treatment device processor, a reaction condition detector, and a reaction condition controller; wherein...
[0014] The flue gas purification treatment is equipped with a processor, which pre-sets and stores a real-time environmental condition and smoke-free condition threshold comparison table, a reaction condition enhancement strategy and a reaction condition reduction strategy. It detects real-time environmental condition information under the current environment through an environmental temperature detector, a ventilation detector and a humidity detector, and obtains the real-time normal working condition threshold range under the current conditions according to the real-time environmental condition and smoke-free condition threshold comparison table.
[0015] The reaction condition detector is connected to the processor of the flue gas purification treatment device and is located inside the flue gas purifier reactor. It is a reaction condition detector that monitors the real-time reaction condition values inside the flue gas purifier reactor in real time.
[0016] The reaction condition controller is connected to the flue gas purification treatment device processor and the reaction condition detector. When the flue gas purifier reactor enters normal operation, it continues to collect the real-time reaction condition values and compares them with the real-time normal operation condition threshold range. If the values are less than the real-time normal operation condition threshold range, the power of the reaction condition controller in the flue gas purifier reactor is adjusted according to the preset reaction condition enhancement strategy.
[0017] If the power exceeds the threshold range of the real-time normal operating conditions, the power of the reaction condition controller in the smoke purifier reactor is adjusted according to the preset reaction condition reduction strategy.
[0018] Furthermore, the flue gas purification and treatment device processor further includes: a working power adjustment strategy lookup table memory; the reaction condition controller further includes: a real-time normal operating power adjustment processor;
[0019] The working power adjustment strategy reference table memory stores a working power adjustment strategy reference table that stores the correspondence between the normal working power adjustment strategy of the reaction condition controller and the environmental condition information in the flue gas reaction in the flue gas reaction in the purifier reactor.
[0020] The real-time normal operating power adjustment processor is connected to the operating power adjustment strategy lookup table memory. It detects real-time environmental conditions under the current environment through an ambient temperature detector, a ventilation detector, and a humidity detector, and obtains the real-time operating power adjustment strategy under the current conditions according to the operating power adjustment strategy lookup table.
[0021] If the real-time reaction condition value is compared with the real-time normal working condition threshold range and falls within the real-time normal working condition threshold range, then the reaction condition controller in the smoke purifier reactor is controlled to adjust the power according to the normal working power adjustment strategy.
[0022] Furthermore, it also includes: a preheating control processor, connected to the reaction condition detector and the reaction condition controller;
[0023] A threshold table for setting the preheating condition threshold range, normal operation condition threshold range and environmental condition information correspondence between the flue gas reaction preheating condition threshold range and the flue gas reaction in the flue gas reactor of the flue gas purifier.
[0024] The real-time environmental conditions under the current environment are detected by an ambient temperature detector, a ventilation detector, and a humidity detector. The real-time preheating condition threshold range under the current conditions is obtained according to the real-time environmental conditions and smoke-free condition threshold comparison table.
[0025] The current real-time reaction condition value is compared with the real-time preheating condition threshold range; when the real-time preheating condition threshold range is reached within the preset preheating time and maintained for the preset preheating duration, the smoke purifier reactor enters normal operation.
[0026] If the real-time preheating condition threshold range is not reached within the preheating time or the preset preheating duration is not maintained, the reaction condition controller of the smoke purifier reactor stops working and generates an alarm signal.
[0027] Furthermore, it also includes: a display control processor, connected to the reaction condition detector, which displays the real-time operating status of the fume purifier reactor via a status indicator display located outside the fume purifier; wherein:
[0028] If the real-time response condition value is less than or greater than the real-time normal working condition threshold range, and the duration value reaches the duration threshold, an alarm signal is generated, the red light of the control status prompt module is turned on, and the buzzer is activated to sound an alarm.
[0029] If the real-time response condition is within the threshold range of the real-time normal working condition, and the duration value reaches the normal working duration threshold, an alarm signal is generated, and the green light of the status indication module is turned on.
[0030] Furthermore, it also includes: a frequency conversion regulation control processor, which is connected to the flue gas purification treatment setting processor, the reaction condition detector and the reaction condition controller, and is set in the real-time normal working condition threshold range including: a preset first threshold, a second threshold and a third threshold;
[0031] If the real-time reaction condition value is less than the first threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to a high-power state.
[0032] If the real-time reaction condition value is between the first threshold and the second threshold, the reaction condition controller in the smoke purifier reactor adjusts the power to the normal power state.
[0033] If the real-time reaction condition value is greater than the second threshold, the reaction condition controller in the smoke purifier reactor will be controlled to stop adjusting the power. From the time the reaction condition controller in the smoke purifier reactor stops adjusting the power, if the real-time reaction condition value is between the second threshold and the third threshold, and the duration reaches the preset frequency conversion adjustment duration threshold, the reaction condition controller in the smoke purifier reactor will be controlled to adjust the power to normal power. If the real-time reaction condition value is greater than the third threshold, and the duration reaches the preset purification duration threshold, the reaction condition controller in the smoke purifier reactor will be controlled to stop adjusting the power.
[0034] A method for purifying flue gas in a CRS smoke purifier includes:
[0035] A smoke purifier reaction vessel is set up, and a reaction material that reacts with the moxibustion smoke to purify the moxibustion smoke is coated on it. The moxibustion smoke obtained during the moxibustion treatment is introduced into the smoke purifier reaction vessel by the suction of a fan.
[0036] The real-time environmental conditions under the current environment are detected by an ambient temperature detector, a ventilation detector, and a humidity detector. The real-time normal working condition threshold range under the current conditions is obtained according to the real-time environmental conditions and smoke-free condition threshold comparison table.
[0037] Real-time reaction condition values within the smoke purifier reactor are monitored in real time using a reaction condition detector located inside the smoke purifier reactor.
[0038] When the smoke purifier reactor enters normal operation, it continues to collect the real-time reaction condition values and compare them with the real-time normal operation condition threshold range; if the values are less than the real-time normal operation condition threshold range, the power of the reaction condition controller in the smoke purifier reactor is adjusted according to the preset reaction condition enhancement strategy.
[0039] If the power exceeds the threshold range of the real-time normal operating conditions, the power of the reaction condition controller in the smoke purifier reactor is adjusted according to the preset reaction condition reduction strategy.
[0040] Furthermore, it also includes:
[0041] A working power adjustment strategy comparison table is set up to establish the correspondence between the normal working power adjustment strategy of the reaction condition controller and the environmental condition information in the flue gas reaction in the purifier reactor.
[0042] The real-time environmental conditions under the current environment are detected by an ambient temperature detector, a ventilation detector, and a humidity detector. The real-time operating power adjustment strategy under the current conditions is obtained according to the operating power adjustment strategy lookup table.
[0043] If the real-time reaction condition value is compared with the real-time normal working condition threshold range and falls within the real-time normal working condition threshold range, then the reaction condition controller in the smoke purifier reactor is controlled to adjust the power according to the normal working power adjustment strategy.
[0044] Furthermore, it also includes:
[0045] On the controller that monitors the reaction of the smoke purifier in real time, a smoke purifier condition threshold comparison table is set to correspond the preheating condition threshold range, the normal operation condition threshold range, and the environmental condition information of the flue gas reaction in the smoke purifier reactor.
[0046] The real-time environmental conditions under the current environment are detected by an ambient temperature detector, a ventilation detector, and a humidity detector. The real-time preheating condition threshold range under the current conditions is obtained according to the real-time environmental conditions and smoke-free condition threshold comparison table.
[0047] The current real-time reaction condition value is compared with the real-time preheating condition threshold range; when the real-time preheating condition threshold range is reached within the preset preheating time and maintained for the preset preheating duration, the smoke purifier reactor enters normal operation.
[0048] If the real-time preheating condition threshold range is not reached within the preheating time or the preset preheating duration is not maintained, the reaction condition controller of the smoke purifier reactor stops working and generates an alarm signal.
[0049] Furthermore, it also includes:
[0050] The operating status of the fume purifier reactor is displayed in real time via a status indicator display located outside the fume purifier; among which:
[0051] If the real-time response condition value is less than or greater than the real-time normal working condition threshold range, and the duration value reaches the duration threshold, an alarm signal is generated, the red light of the control status prompt module is turned on, and the buzzer is activated to sound an alarm.
[0052] If the real-time response condition is within the threshold range of the real-time normal working condition, and the duration value reaches the normal working duration threshold, an alarm signal is generated, and the green light of the status indication module is turned on.
[0053] Furthermore, the real-time normal operating condition threshold range includes a preset first threshold, a second threshold, and a third threshold;
[0054] If the real-time reaction condition value is less than the first threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to a high-power state.
[0055] If the real-time reaction condition value is between the first threshold and the second threshold, the reaction condition controller in the smoke purifier reactor adjusts the power to the normal power state.
[0056] If the real-time reaction condition value is greater than the second threshold, the reaction condition controller in the smoke purifier reactor will be controlled to stop adjusting the power. From the time the reaction condition controller in the smoke purifier reactor stops adjusting the power, if the real-time reaction condition value is between the second threshold and the third threshold, and the duration reaches the preset frequency conversion adjustment duration threshold, the reaction condition controller in the smoke purifier reactor will be controlled to adjust the power to normal power. If the real-time reaction condition value is greater than the third threshold, and the duration reaches the preset purification duration threshold, the reaction condition controller in the smoke purifier reactor will be controlled to stop adjusting the power.
[0057] (3) Beneficial effects:
[0058] This invention can adjust the threshold range of normal working conditions in real time according to the ambient temperature of the smoke purifier reactor. Based on the feedback of real-time internal purification data, it can adjust the on / off state and power of the smoke purification device in the smoke purifier reactor by comparing it with the preset smoke purification condition threshold range. This ensures a more stable smoke purification effect in the smoke purifier reactor and forms a normal working cycle for the smoke purifier. This control method is more intelligent and can more accurately purify the moxibustion smoke according to actual needs. Attached Figure Description
[0059] Figure 1 This is a system diagram of a flue gas purification system and method for a CRS smoke purifier according to the present invention;
[0060] Figure 2 This is a schematic diagram of the structure of the smoke purification device in the smoke purification system of a CRS smoke purifier according to the present invention;
[0061] Figure 3 A system diagram showing the flue gas purification system and method of a CRS smoke purifier according to the present invention, which includes a processor for the flue gas purification process.
[0062] Figure 4 This is a system diagram of the real-time normal operation power adjustment processor of the flue gas purification system and method of the CRS smoke purifier of the present invention.
[0063] Figure 5 This is a system diagram of the preheating control processor for the flue gas purification system and method of a CRS smoke purifier according to the present invention;
[0064] Figure 6 This is a system diagram of the display control processor for a flue gas purification system and method for a CRS smoke purifier according to the present invention;
[0065] Figure 7 This is a system diagram of the frequency conversion control processor for the flue gas purification system and method of the CRS smoke purifier of the present invention;
[0066] Figure 8 This is a flowchart illustrating the comparison of threshold ranges under normal operating conditions for a flue gas purification system and method of a CRS smoke purifier according to the present invention.
[0067] Figure 9 This is a schematic diagram of the normal operation power adjustment process of the flue gas purification system and method of the CRS smoke purifier of the present invention.
[0068] Figure 10 This is a flowchart illustrating the comparison of preheating condition threshold ranges for a flue gas purification system and method for a CRS smoke purifier according to the present invention.
[0069] Figure 11 This is a flowchart illustrating the operation of the control processor in the flue gas purification system and method of the CRS smoke purifier of the present invention.
[0070] Figure 12 This is a schematic diagram of the process for comparing the first threshold, the second threshold, and the third threshold in the flue gas purification system and method of the CRS smoke purifier of the present invention.
[0071] The attached figures are labeled as follows:
[0072] 101. Fume purifier reactor; 102. Fan; 103. Ambient temperature detector; 104. Ventilation detector; 105. Humidity detector; 106. Flue gas purification and treatment controller; 201. Reaction condition detector; 301. Fume inlet. Detailed Implementation
[0073] The following is in conjunction with the appendix Figure 1-12 The present invention is further illustrated by the embodiments:
[0074] The main component of moxibustion is moxibustion itself, which involves burning mugwort leaves, moxa wool, or moxa cones. The fumes produced during this process contain primarily volatile components such as ammonia, ethanol, ethylene glycol, acetic acid, acetamide, propionic acid, cyclohexene, methylfuran, butyramide, 3-methyl-butyramide, quaternary keto acids, pentanol, 2-methylpentanol, styrone, n-hexylamine, naphthalene, caprylic acid, hydantoin, trimethyl-p-diazabenzene, and bromo-diazacyclobutane. Other harmful substances include carbon monoxide, nitrogen oxides, TVOC, and tar. Currently, there are no precise and efficient solutions for treating moxibustion fumes on the market. Therefore, this embodiment proposes a highly efficient, precise, and intelligent CRS smoke purifier system and method for smoke purification.
[0075] Specifically, such as Figure 1 , Figure 2 and Figure 3 As shown, a flue gas purification system for a CRS smoke purifier includes: a smoke purifier reactor 101, a fan 102, an ambient temperature detector 103, a ventilation detector 104, a humidity detector 105, and a flue gas purification and treatment controller 106; wherein,
[0076] The inner cavity of the smoke purifier reactor is equipped with a reaction core coated with a reaction material that reacts with the moxibustion smoke to purify it. One end of the inner cavity of the smoke purifier reactor is the smoke inlet 301, and the other end is the smoke outlet connected to a fan. The smoke obtained during the moxibustion treatment is introduced by the suction of the fan and flows through the smoke purifier reactor for purification.
[0077] The smoke purifier has a power supply inside, which is electrically connected to the smoke purification controller, fan, ambient temperature detector, ventilation detector and humidity detector. The smoke purifier shell has a switch button that is electrically connected to the power supply.
[0078] An ambient temperature detector, a ventilation detector, and a humidity detector are installed outside the fume purifier reactor and connected to the flue gas purification and treatment controller.
[0079] The flue gas purification and treatment controller includes: a flue gas purification and treatment device processor, a reaction condition detector 201, and a reaction condition controller;
[0080] Among them, the reaction conditions of the reaction condition detector are one or a combination of temperature, gas flow rate, and oxygen flow rate. For example, if the reaction condition is temperature data, the reaction condition detector can be a type K thermocouple, used to monitor the temperature during the purification process of moxibustion smoke.
[0081] The flue gas purification treatment is equipped with a processor, which pre-sets and stores real-time environmental conditions and a threshold comparison table for clean smoke conditions, as well as strategies for improving and reducing reaction conditions. It detects real-time environmental conditions under the current environment through environmental temperature detectors, ventilation detectors, and humidity detectors, and obtains the real-time normal working condition threshold range under the current conditions based on the real-time environmental conditions and the threshold comparison table for clean smoke conditions.
[0082] Among them, the real-time environmental condition information in the flue gas purification and treatment processor is set to be automatically updated once every preset time period. Preferably, the preset time period is set to three days, and the real-time environmental condition information is updated every three days.
[0083] The reaction condition detector is connected to the processor of the flue gas purification treatment device and is located inside the flue gas purifier reactor. It is a reaction condition detector that monitors the real-time reaction condition values inside the flue gas purifier reactor.
[0084] The reaction condition controller is connected to the flue gas purification treatment set processor and reaction condition detector. When the flue gas purifier reactor enters the normal working state, it continues to collect real-time reaction condition values and compares them with the real-time normal working condition threshold range. If the value is less than the real-time normal working condition threshold range, the power of the reaction condition controller in the flue gas purifier reactor is adjusted according to the preset reaction condition enhancement strategy.
[0085] If the power exceeds the threshold range of real-time normal operating conditions, the power of the reaction condition controller in the smoke purifier reactor will be adjusted according to the preset reaction condition reduction strategy.
[0086] In the reaction condition controller, the power adjustment element can be a heating wire and a relay, and the relay controls the on / off state of the heating wire / or adjusts the power of the heating wire.
[0087] Furthermore, an automatic fuse controller is installed on the electrical connection circuit between the heating wire and the relay. The automatic fuse controller can automatically melt when the temperature of the smoke purifier casing reaches 60 degrees Celsius, thereby disconnecting the electrical connection circuit between the heating wire and the relay. This device is a protective fuse setting to prevent accidental high temperature damage to the machine or causing danger.
[0088] Furthermore, such as Figure 1 and Figure 4 As shown, the flue gas purification treatment set processor also includes: a working power adjustment strategy reference table memory; the reaction condition controller also includes: a real-time normal working power adjustment processor;
[0089] The working power adjustment strategy comparison table memory stores the corresponding relationship between the normal working power adjustment strategy of the controller and the environmental condition information in the flue gas reaction in the purifier reactor.
[0090] The real-time normal operating power adjustment processor is connected to the operating power adjustment strategy lookup table memory. It detects real-time environmental conditions under the current environment through ambient temperature detectors, ventilation detectors, and humidity detectors, and obtains the real-time operating power adjustment strategy under the current conditions according to the operating power adjustment strategy lookup table.
[0091] If the real-time reaction condition value is compared with the real-time normal operating condition threshold range, and it falls within the real-time normal operating condition threshold range, then the reaction condition controller inside the smoke purifier reactor will adjust the power according to the normal operating power adjustment strategy.
[0092] Furthermore, such as Figure 1 and Figure 5 As shown, it also includes: a preheating control processor, which is connected to the reaction condition detector and the reaction condition controller;
[0093] A table showing the threshold ranges for preheating conditions, normal operating conditions, and environmental conditions in the flue gas reaction vessel of the flue gas purifier is provided.
[0094] The real-time environmental conditions under the current environment are detected by an ambient temperature detector, a ventilation detector, and a humidity detector. The real-time preheating condition threshold range under the current conditions is obtained based on the real-time environmental conditions and smoke-free condition threshold comparison table.
[0095] The current real-time reaction condition value is compared with the real-time preheating condition threshold range; when the real-time preheating condition threshold range is reached within the preset preheating time and maintained for the preset preheating duration, the smoke purifier reactor enters normal operation.
[0096] If the real-time preheating condition threshold range is not reached within the preheating time or the preset preheating duration is not maintained, the reaction condition controller of the smoke purifier reactor will stop working and generate an alarm signal.
[0097] During the preheating stage, by setting the preheating duration and preheating time, the operating status of the smoke purifier reactor can be judged during the control of reaction conditions, making the equipment reaction regulation more intelligent. As shown above, if the reaction conditions inside the smoke purifier reactor are in an excessively low state for a long time, while the reaction condition controller is in a high-power state, it indicates that there is a problem with the reaction status of the equipment itself, and it is necessary to stop operation and find the problem.
[0098] Furthermore, such as Figure 1 and Figure 6 As shown, it also includes: a display control processor, which is connected to the reaction condition detector and displays the operating status of the fume purifier reactor in real time through a status indicator display located outside the fume purifier;
[0099] The status indicator display consists of an RGB indicator light and a buzzer. The RGB indicator light is a tri-color light with yellow, green and red colors.
[0100] The status indicator also includes a display screen for showing the operating data of the smoke purifier;
[0101] The operational data includes: the operating status of the smoke suppressor, such as: preheating, do not turn off the power or normal operation; and information such as the operating speed.
[0102] Furthermore, the status display also includes an administrator module with a password, allowing users to view and modify operational data.
[0103] You can view operational data such as the cumulative working time of the smoke purifier and the working time of the day;
[0104] The operating data can be modified, such as the preset preheating condition threshold range, normal operating condition threshold range, preheating duration threshold, preheating duration threshold, and normal operating time threshold on the flue gas purification and treatment controller.
[0105] in:
[0106] If the real-time response condition value is less than or greater than the real-time normal working condition threshold range, and the duration value reaches the duration threshold, an alarm signal is generated, the red light of the control status indicator module illuminates, and the buzzer is activated to sound an alarm.
[0107] If the real-time response condition is within the threshold range of the real-time normal working condition, and the duration value reaches the normal working duration threshold, an alarm signal is generated, and the green light of the control status indicator module illuminates.
[0108] The device's current operating status can be indicated by different displays on the status indicator, and corresponding operations can be performed accordingly.
[0109] It also includes a cooling fan connected to the flue gas purification controller to divert heat from the flue gas purifier to the outside, and the power supply is electrically connected to the cooling fan and the status display.
[0110] The cooling fan and the blower are both set with a shutdown time threshold. When they receive an electrical signal from the flue gas purification controller to shut down, they will only shut down after the set shutdown time threshold has been reached from the time the shutdown signal is received.
[0111] Furthermore, such as Figure 1 and Figure 7 As shown, it also includes: a frequency converter control processor, which is connected to the flue gas purification treatment set processor, the reaction condition detector and the reaction condition controller, and is set to a real-time normal working condition threshold range including: a preset first threshold, a second threshold and a third threshold;
[0112] If the real-time reaction condition value is less than the first threshold, the reaction condition controller inside the smoke purifier reactor will adjust the power to a high-power state.
[0113] If the real-time reaction condition value is between the first threshold and the second threshold, the reaction condition controller in the smoke purifier reactor will adjust the power to the normal power state.
[0114] When the reaction condition controller switches from the high-power reaction in the preheating stage to the normal-power reaction in the smoke-free stage, the real-time reaction condition value and the second threshold can provide a buffer period for the switching stage, slowing down the reaction rate in the reactor, so that the reaction conditions in the reactor during the normal smoke-free process can be stably controlled within the smoke-free stage.
[0115] If the real-time reaction condition value is greater than the second threshold, the power adjustment of the reaction condition controller in the smoke purifier reactor will be stopped. From the time the power adjustment of the reaction condition controller in the smoke purifier reactor stops, if the real-time reaction condition value is between the second and third thresholds and the duration reaches the preset frequency conversion adjustment duration threshold, the power adjustment of the reaction condition controller in the smoke purifier reactor will be in normal power mode. If the real-time reaction condition value is greater than the third threshold and the duration reaches the preset purification duration threshold, the power adjustment of the reaction condition controller in the smoke purifier reactor will be stopped.
[0116] like Figure 8 As shown, this embodiment illustrates a method for purifying flue gas using a CRS smoke purifier. The method includes the following steps:
[0117] A smoke purifier reaction vessel is set up, and a reaction material that reacts with the moxibustion smoke to purify the smoke is coated on it. The smoke obtained during the moxibustion treatment is introduced into the smoke purifier reaction vessel by the suction of a fan.
[0118] The real-time environmental conditions under the current environment are detected by an ambient temperature detector, a ventilation detector, and a humidity detector. The threshold range of the real-time normal working conditions under the current conditions is obtained according to the real-time environmental conditions and smoke-free conditions threshold comparison table.
[0119] The operating condition threshold range of the fume purifier reactor can be adaptively adjusted according to the environmental conditions of different regions. Compared with a single range setting, the user experience of the fume purifier reactor embodied by this technical solution is better and more intelligent.
[0120] Real-time reaction condition values inside the fume purifier reactor are monitored by a reaction condition detector located inside the fume purifier reactor.
[0121] When the fume purifier reactor enters normal operation, it continues to collect real-time reaction condition values and compares them with the real-time normal operation condition threshold range; if the values are less than the real-time normal operation condition threshold range, the power of the reaction condition controller in the fume purifier reactor is adjusted according to the preset reaction condition enhancement strategy.
[0122] If the power exceeds the threshold range of real-time normal operating conditions, the power of the reaction condition controller in the smoke purifier reactor will be adjusted according to the preset reaction condition reduction strategy.
[0123] When the reaction condition controller is adjusted to temperature data, if the temperature is below the real-time normal operating condition threshold range, the heating wire in the fume purifier reactor can be controlled to be heated at high power so that the temperature of the reactor reaches the temperature range that can purify the flue gas and the flue gas purification operation can be performed. If the temperature is above the real-time normal operating condition threshold range, the heating wire in the fume purifier reactor can be controlled to be in a non-heating state to avoid the components inside the equipment being burned out due to excessive temperature.
[0124] This adjustment setting can prevent the reaction conditions inside the smoke purifier reactor from being too low or too high, which could affect the smoke purification effect or damage the components inside the equipment, thus ensuring that the smoke purifier reactor can stably achieve the smoke purification effect.
[0125] Furthermore, such as Figure 9 As shown, it also includes:
[0126] A table showing the working power adjustment strategy comparison between the normal working power adjustment strategy of the controller for the reaction conditions in the flue gas reaction in the purifier reactor and the corresponding environmental condition information;
[0127] The real-time environmental conditions under the current environment are detected by the ambient temperature detector, ventilation detector and humidity detector, and the real-time working power adjustment strategy under the current conditions is obtained according to the working power adjustment strategy comparison table.
[0128] If the real-time reaction condition value is compared with the real-time normal working condition threshold range, and it falls within the real-time normal working condition threshold range, then the reaction condition controller in the smoke purifier reactor will adjust the power according to the normal working power adjustment strategy.
[0129] This adjustment setting can further ensure the stability of reaction conditions in the fume purifier reactor during the fume purification process.
[0130] Furthermore, such as Figure 10 As shown, it also includes:
[0131] On the controller that monitors the reaction of the smoke purifier in real time, set a smoke purifier condition threshold comparison table that corresponds to the preheating condition threshold range, the normal operation condition threshold range, and environmental condition information of the flue gas reaction in the smoke purifier reactor.
[0132] The real-time environmental conditions under the current environment are detected by an ambient temperature detector, a ventilation detector, and a humidity detector. The real-time preheating condition threshold range under the current conditions is obtained based on the real-time environmental conditions and smoke-free condition threshold comparison table.
[0133] The current real-time reaction condition value is compared with the real-time preheating condition threshold range; when the real-time preheating condition threshold range is reached within the preset preheating time and maintained for the preset preheating duration, the smoke purifier reactor enters normal operation.
[0134] If the real-time preheating condition threshold range is not reached within the preheating time or the preset preheating duration is not maintained, the reaction condition controller of the smoke purifier reactor will stop working and generate an alarm signal.
[0135] Before carrying out normal flue gas purification work, the threshold range of preheating conditions is compared. The reaction conditions in the flue gas purifier reactor are reached and stabilized within a certain preheating condition range. This completes the preheating and allows for more accurate control of the stability of the reaction conditions during the adjustment process. During the preheating stage, the reaction condition controller can be kept in high-power heating mode, which increases the heating rate and shortens the waiting time for the equipment to purify the flue gas.
[0136] Furthermore, such as Figure 11 As shown, it also includes:
[0137] The operating status of the fume purifier reactor is displayed in real time via a status indicator display located outside the fume purifier; among which:
[0138] If the real-time response condition value is less than or greater than the real-time normal working condition threshold range, and the duration value reaches the duration threshold, an alarm signal is generated, the red light of the control status indicator module illuminates, and the buzzer is activated to sound an alarm.
[0139] If the real-time response condition value is less than the normal working condition threshold range and the duration value has not reached the duration threshold, the control status prompt module will display yellow, indicating that the smoke purifier is still in the normal preheating stage.
[0140] If the real-time response conditions are within the threshold range of the real-time normal working conditions, and the duration value reaches the normal working duration threshold, an alarm signal is generated, and the green light of the control status indicator module illuminates.
[0141] Furthermore, such as Figure 12 As shown, the real-time normal operating condition threshold range includes a preset first threshold, a second threshold, and a third threshold;
[0142] If the real-time reaction condition value is less than the first threshold, the reaction condition controller inside the smoke purifier reactor will adjust the power to a high-power state.
[0143] If the real-time reaction condition value is between the first threshold and the second threshold, the reaction condition controller in the smoke purifier reactor will adjust the power to the normal power state.
[0144] If the real-time reaction condition value is greater than the second threshold, the power of the reaction condition controller in the smoke purifier reactor will be stopped. If the real-time reaction condition value is between the second and third thresholds and the duration reaches the preset frequency conversion adjustment duration threshold, the power of the reaction condition controller in the smoke purifier reactor will be in normal power mode. If the real-time reaction condition value is greater than the third threshold and the duration reaches the preset purification duration threshold, the power of the reaction condition controller in the smoke purifier reactor will be stopped.
[0145] By setting a purification time threshold during the normal reaction phase, misjudgments of the instantaneous reaction state can be avoided. As shown above, a reaction state may exist for a certain period of time, but when the threshold is exceeded and the time is reached, the reaction condition controller must be shut down. This prevents unexpected situations from occurring and avoids situations where the reaction conditions exceed the threshold and then drop below the threshold, but the reaction condition controller has already executed the corresponding reaction condition control strategy, making the use of the equipment more intelligent.
[0146] Beneficial effects of this invention:
[0147] This invention can adjust the threshold range of normal working conditions in real time according to the ambient temperature of the smoke purifier reactor. Based on the feedback of real-time internal purification data, it can adjust the on / off state and power of the smoke purification device in the smoke purifier reactor by comparing it with the preset smoke purification condition threshold range. This ensures a more stable smoke purification effect in the smoke purifier reactor and forms a normal working cycle for the smoke purifier. This control method is more intelligent and can more accurately purify the moxibustion smoke according to actual needs.
[0148] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of the present invention based on the above embodiments and make different extensions and variations, but as long as they do not depart from the spirit of the present invention, they are all within the protection scope of the present invention.
Claims
1. A system for flue gas cleaning of a CRS clean smoke device, characterized in that, The smoke purifier comprises a reaction kettle, a fan, an environmental temperature detector, a ventilation detector, a humidity detector, and a smoke purification treatment controller. The reaction kettle is internally provided with a reaction core coated with a reaction material for purifying the moxa smoke. The environmental temperature detector, the ventilation detector, and the humidity detector are arranged outside the reaction kettle and connected to the smoke purification treatment controller. The smoke purification treatment controller comprises a smoke purification treatment setting processor, a reaction condition detector, and a reaction condition controller. The smoke purification treatment setting processor is provided with a real-time environmental condition and a smoke purification condition threshold value comparison table, a reaction condition improvement strategy, and a reaction condition reduction strategy. The reaction condition detector is connected to the smoke purification treatment setting processor and arranged inside the reaction kettle to detect the real-time reaction condition value. The reaction condition controller is connected to the smoke purification treatment setting processor and the reaction condition detector. If the real-time reaction condition value is less than the real-time normal working condition threshold value range, the reaction condition controller in the reaction kettle is controlled to adjust the power according to the preset reaction condition improvement strategy. If the real-time reaction condition value is greater than the real-time normal working condition threshold value range, the reaction condition controller in the reaction kettle is controlled to adjust the power according to the preset reaction condition reduction strategy.
2. The system for flue gas cleaning of a CRS scrubber according to claim 1, characterized in that, The smoke purification treatment setting processor further comprises a working power adjustment strategy comparison table storage. The reaction condition controller further comprises a real-time normal working power adjustment processor. The working power adjustment strategy comparison table storage stores a working power adjustment strategy comparison table of the preset normal working power adjustment strategy of the reaction condition controller in the smoke reaction in the reaction kettle and the corresponding relationship with the environmental condition information. The real-time normal working power adjustment processor is connected to the working power adjustment strategy comparison table storage and detects the real-time environmental condition information under the current environment according to the working power adjustment strategy comparison table to obtain the real-time working power adjustment strategy under the current condition. If the real-time reaction condition value is compared with the real-time normal working condition threshold value range and located in the real-time normal working condition threshold value range, the reaction condition controller in the reaction kettle is controlled to adjust the power according to the normal working power adjustment strategy.
3. The system for flue gas cleaning of a CRS scrubber according to claim 1, characterized in that, Further comprising: a preheating control processor connected with the reaction condition detector and the reaction condition controller; Setting the preheating condition threshold range of the flue gas reaction in the smoke purifier reactor, the normal working condition threshold range and the corresponding relationship of the environmental condition information of the smoke purifier condition threshold table; Detecting the real-time environmental condition information under the current environment through the environmental temperature detector, the ventilation detector and the humidity detector, and obtaining the real-time preheating condition threshold range under the current condition according to the real-time environmental condition and the smoke purifier condition threshold table; Comparing the current real-time reaction condition value with the real-time preheating condition threshold range; when the real-time preheating condition threshold range is reached within the preset preheating time and maintained for a preset preheating duration, the smoke purifier reactor enters normal working condition; When the real-time preheating condition threshold range is not reached within the preheating time or maintained for a preset preheating duration, the reaction condition controller of the smoke purifier reactor stops working and generates an alarm signal.
4. The system for flue gas cleaning of a CRS scrubber according to claim 1, characterized in that, Further comprising: A display control processor connected with the reaction condition detector, which displays the running state of the smoke purifier reactor in real time through the state prompt display located outside the smoke purifier; wherein: If the real-time reaction condition value is less than or greater than the real-time normal working condition threshold range, and the duration value reaches the duration threshold, an alarm signal is generated to control the state prompt module to turn on the red light and the buzzer to alarm; If the real-time reaction condition is within the real-time normal working condition threshold range, and the duration value reaches the normal working duration threshold, an alarm signal is generated to control the state prompt module to turn on the green light.
5. The system for flue gas cleaning of a CRS scrubber according to any one of claims 1 to 4, characterized in that, Further comprising: A frequency regulation control processor connected with the flue gas purification processing setting processor, the reaction condition detector and the reaction condition controller, which sets the real-time normal working condition threshold range to include: a preset first threshold, a second threshold and a third threshold; If the real-time reaction condition value is less than the first threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a high-power state; If the real-time reaction condition value is between the first threshold and the second threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a normal power state; If the real-time reaction condition value is greater than the second threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a stop state; from the time when the reaction condition controller in the smoke purifier reactor adjusts the power to be in a stop state, if the real-time reaction condition value is between the second threshold and the third threshold, and the duration value reaches the preset frequency regulation duration threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a normal power state; if the real-time reaction condition value is greater than the third threshold, and the duration value reaches the preset purification duration threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a stop state.
6. A method of flue gas cleaning for a CRS clean smoke device, characterized by, Including: The net smoke reactor reaction kettle is provided with a reaction material for purifying the moxibustion smoke, and the moxibustion smoke in the moxibustion process is introduced into the net smoke reactor reaction kettle by the suction of the fan; The real-time environmental condition information under the current environment is detected by the environmental temperature detector, the ventilation detector and the humidity detector, and the real-time normal working condition threshold range under the current condition is obtained according to the real-time environmental condition and the net smoke condition threshold table; The real-time reaction condition value in the net smoke reactor reaction kettle is monitored by the reaction condition detector located in the net smoke reactor reaction kettle; When the net smoke reactor reaction kettle enters the normal working state, the real-time reaction condition value is continuously collected and compared with the real-time normal working condition threshold range; if the real-time reaction condition value is less than the real-time normal working condition threshold range, the reaction condition controller in the net smoke reactor reaction kettle is controlled according to the preset reaction condition increasing strategy to adjust the power; If the real-time reaction condition value is greater than the real-time normal working condition threshold range, the reaction condition controller in the net smoke reactor reaction kettle is controlled according to the preset reaction condition decreasing strategy to adjust the power.
7. The method of flue gas cleaning of a CRS scrubber according to claim 6, characterized in that, Further comprising: A working power adjustment strategy comparison table of the normal working power adjustment strategy of the reaction condition controller in the smoke reaction in the net smoke reactor reaction kettle and the environmental condition information is set; The real-time environmental condition information under the current environment is detected by the environmental temperature detector, the ventilation detector and the humidity detector, and the real-time working power adjustment strategy under the current condition is obtained according to the working power adjustment strategy comparison table; If the real-time reaction condition value is compared with the real-time normal working condition threshold range and located in the real-time normal working condition threshold range, the reaction condition controller in the net smoke reactor reaction kettle is controlled according to the normal working power adjustment strategy to adjust the power.
8. The method of flue gas cleaning of a CRS scrubber according to claim 6, characterized in that, Further comprising: A net smoke condition threshold comparison table of the preheating condition threshold range, the normal working condition threshold range of the smoke reaction in the net smoke reactor reaction kettle and the environmental condition information is set on the controller for monitoring the net smoke reactor reaction in real time; The real-time environmental condition information under the current environment is detected by the environmental temperature detector, the ventilation detector and the humidity detector, and the real-time preheating condition threshold range under the current condition is obtained according to the real-time environmental condition and the net smoke condition threshold comparison table; The current real-time reaction condition value is compared with the real-time preheating condition threshold range; when the real-time preheating condition threshold range is reached and maintained for a preset preheating duration within the preheating time, the net smoke reactor reaction kettle enters the normal working state; If the real-time preheating condition threshold range is not reached or maintained for a preset preheating duration within the preheating time, the reaction condition controller of the net smoke reactor reaction kettle stops working and generates an alarm signal.
9. The method of flue gas cleaning of a CRS scrubber according to claim 6, characterized in that, Further comprising: The running state of the net smoke reactor reaction kettle is displayed in real time by the state prompt display located outside the net smoke reactor; wherein: If the real-time reaction condition value is less than or greater than the real-time normal working condition threshold range and the duration value reaches the duration threshold, an alarm signal is generated, the red light of the state prompt module is turned on, and the buzzer is turned on to alarm. If the real-time reaction condition is within the real-time normal working condition threshold range and the duration value reaches the normal working duration threshold, an alarm signal is generated to control the state prompt module green light to be on.
10. The method of claim 6 to 9, wherein the method is characterized in that: The real-time normal working condition threshold range includes a preset first threshold, a second threshold and a third threshold; If the real-time reaction condition value is less than the first threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a high power state; If the real-time reaction condition value is between the first threshold and the second threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a normal power state; If the real-time reaction condition value is greater than the second threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a stop state; from the time when the reaction condition controller in the smoke purifier reactor is adjusted to be in a stop state, if the real-time reaction condition value is between the second threshold and the third threshold and the duration value reaches a preset frequency conversion adjustment duration threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a normal power state; if the real-time reaction condition value is greater than the third threshold and the duration value reaches a preset purification duration threshold, the reaction condition controller in the smoke purifier reactor is controlled to adjust the power to be in a stop state.
Citation Information
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