Efficient energy-saving methanol generator set
By installing an auxiliary mechanism in the methanol generator set to treat unburned methanol residue with dilute sulfuric acid and potassium permanganate solution, the safety hazards and increased costs caused by incomplete combustion of methanol residue are solved, achieving harmless treatment and resource utilization.
Patent Information
- Application Number
- CN202511376371.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2025-12-19
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing high-efficiency and energy-saving methanol generator sets suffer from incomplete combustion of residual methanol in the event of a fault or air-fuel ratio imbalance, leading to safety hazards and increased costs.
The system includes auxiliary components such as a treatment tank, a storage tank, a servo motor, a stirring plate, and a control valve. It treats the residual liquid with dilute sulfuric acid and potassium permanganate solution to achieve harmless treatment, and then uses the treated liquid as a supplementary fertilizer.
It reduces safety hazards and costs, improves the performance of methanol generator sets, and achieves the harmless treatment and resource utilization of methanol residue.
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Figure CN121159005A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of generators, in particular to a high-efficiency energy-saving methanol generator set. BACKGROUND
[0002] A generator is a device that converts other forms of energy into electrical energy, and its core principle is based on the electromagnetic induction law: through external force to drive the rotor to rotate, make the closed coil cut the magnetic induction line in the magnetic field, and then generate induced electromotive force and output electric energy. However, the traditional power generation method generally faces the problems of high energy consumption and excessive emissions. In this background, methanol gradually enters people's field of vision due to its significant advantages of strong renewability and small combustion pollution. People generally use high-efficiency energy-saving methanol generator sets to efficiently use methanol to generate electricity.
[0003] The existing high-efficiency energy-saving methanol generator set has the following disadvantages:
[0004] When the methanol generator set fails or the air-fuel ratio is out of adjustment, it is easy to cause the methanol to not be completely combusted in the combustion chamber. At this time, part of the methanol does not participate in the reaction and will enter the exhaust pipe with the exhaust gas in the form of unburned methanol vapor, eventually forming a liquid residue containing methanol. The methanol generator set does not have the function of harmless treatment of the residue, and usually needs to be transferred to a suitable place for treatment. This not only increases the safety hazards of residue transfer, but also increases the equipment cost and labor cost of residue transfer, that is, reduces the use effect of the high-efficiency energy-saving methanol generator set.
[0005] Therefore, we propose a high-efficiency energy-saving methanol generator set to solve the problems raised in the above background technology. SUMMARY
[0006] The purpose of the present application is to provide a high-efficiency energy-saving methanol generator set. By setting an auxiliary mechanism, the high-efficiency energy-saving methanol generator set can have the function of harmless treatment of the residue containing methanol. This does not need to transfer the residue containing methanol, which not only can reduce safety hazards, but also can reduce costs, that is, improve the use effect of the high-efficiency energy-saving methanol generator set, so as to solve the problems raised in the above background technology.
[0007] To achieve the above purpose, the present application provides the following technical scheme: a high-efficiency energy-saving methanol generator set, comprising a power generation mechanism, an auxiliary mechanism for treating residue is arranged on the power generation mechanism;
[0008] The auxiliary mechanism comprises a processing tank, a first liquid storage tank and a second liquid storage tank, the output end of the first liquid storage tank is provided with a first hose, the output end of the second liquid storage tank is provided with a second hose, the top of the processing tank is provided with a tank cover, the top of the tank cover is provided with a servo motor, two input ends of the tank cover are respectively provided with a first control valve and a second control valve, another input end of the tank cover is provided with a sealing plug, the bottom of the tank cover is provided with a filter shell, the output end of the servo motor is provided with a rotating rod, the outer surface of the rotating rod is provided with two stirring plates, the lower side of the processing tank is provided with a pH value sensor, the detection end of the pH value sensor is movably penetrated through the lower side of the processing tank, and the output end of the processing tank is provided with a manual valve.
[0009] Preferably, the output end of the first hose is connected with the input end of the first control valve, the output end of the second hose is connected with the input end of the second control valve, and the output end of the servo motor is movably penetrated through the top of the tank cover.
[0010] Preferably, the power generation mechanism comprises a support, the upper side of the support is provided with a power generator body, the outer surface of the power generator body is provided with a motor, the outer surface of the motor is provided with a radiator, the top of the support is provided with a storage tank, the top of the support is provided with a vaporizer, and the top of the support is provided with an air filter.
[0011] Preferably, the top of the support is provided with an air dryer, the top of the support is provided with a methanol pump, the output end of the storage tank is provided with a flow regulating valve, the output end of the flow regulating valve is provided with an infusion tube, and the input end and the output end of the vaporizer are both provided with a connecting pipe.
[0012] Preferably, the input end and the output end of the air dryer are both provided with a conveying pipe, the input end of the motor is provided with a three-way pipe, the two input ends of the three-way pipe are both provided with an electric valve, and the front surface of the support is provided with a controller.
[0013] Preferably, the bottom of the motor is connected with the upper side of the support, the bottom of the radiator is connected with the upper side of the support, the output end of the infusion tube is connected with the input end of the methanol pump, and the input end of one of the connecting pipes is connected with the output end of the methanol pump.
[0014] Preferably, the output end of the other connecting pipe is connected with the input end of one of the electric valves, the input end of one of the conveying pipes is connected with the output end of the air filter, and the output end of the other conveying pipe is connected with the input end of the other electric valve.
[0015] Preferably, the heat sink is electrically connected with the controller, the vaporizer is electrically connected with the controller, the methanol pump is electrically connected with the controller, the flow regulating valve is electrically connected with the controller, and each electric valve is electrically connected with the controller.
[0016] Preferably, the processing tank is installed on the upper side of the support, the first liquid storage tank and the second liquid storage tank are both installed on the top of the support, and the servo motor is electrically connected with the controller.
[0017] Preferably, the first control valve is electrically connected with the controller, the second control valve is electrically connected with the controller, and the pH value sensor is electrically connected with the controller.
[0018] Compared with the prior art, the present application has the following beneficial effects:
[0019] 1、The auxiliary mechanism is arranged, so that the high-efficiency energy-saving methanol generator set has the harmless treatment function for the residual liquid containing methanol, so that the residual liquid containing methanol does not need to be transferred, which not only reduces the safety hidden danger, but also reduces the cost, that is, improves the use effect of the high-efficiency energy-saving methanol generator set.
[0020] 2、The pH value sensor is started and cooperated with the processing tank, so that the acid-base degree of the liquid in the processing tank is detected.
[0021] 3、The utility model discloses a power generation mechanism can utilize methanol as fuel and carry out power generation operation, when needing to utilize methanol and carry out power generation, at this time, the cooperation of controller, methanol pump, support, liquid delivery pipe, one connecting pipe and flow regulating valve is utilized first, the methanol liquid in the storage tank is extracted and is transported to the inside of vaporizer, the cooperation of the started vaporizer is utilized subsequently, the methanol liquid transported to the inside of vaporizer becomes methanol gas, the cooperation of another connecting pipe, one started electric valve and tee pipe is utilized subsequently, the methanol gas is transported to the inside of engine, the cooperation of the started engine, another started electric valve, tee pipe, two delivery pipes and air dryer is utilized simultaneously, the input end of air filter obtains suction.
[0022] 4、The utility model discloses the cooperation of air filter is utilized subsequently, the air in it is filtered, the cooperation of one delivery pipe is utilized subsequently, the air of completing filtering operation is transported to the inside of air dryer, the cooperation of air dryer is utilized subsequently, the air transported to its inside is dried, the cooperation of another delivery pipe, another started electric valve and tee pipe is utilized subsequently, the air of completing drying is transported to the inside of engine, when the dry air and methanol gas are transported to the inside of engine and complete mixing, the started engine is utilized at this time, the mixed gas in its inside is combusted and expands, the chemical energy of methanol is converted into rotary mechanical energy, and the rotary mechanical energy is transmitted to the rotor of generator body, and the generator body is based on electromagnetic induction law and converts mechanical energy into electric energy, and the power generation operation of methanol is completed. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a perspective view of a kind of high-efficiency energy-saving methanol generator set of the utility model;
[0024] Figure 2 It is another angle perspective view of a kind of high-efficiency energy-saving methanol generator set of the utility model;
[0025] Figure 3 It is the structure schematic view of a kind of high-efficiency energy-saving methanol generator set of the utility model;
[0026] Figure 4 It is another angle structure schematic view of a kind of high-efficiency energy-saving methanol generator set of the utility model;
[0027] Figure 5 It is the partial perspective view of the power generation mechanism of a kind of high-efficiency energy-saving methanol generator set of the utility model;
[0028] Figure 6 It is another angle partial perspective view of the power generation mechanism of a kind of high-efficiency energy-saving methanol generator set of the utility model;
[0029] Figure 7 It is a high-efficiency energy-saving methanol generator set auxiliary mechanism part of the application sectional view;
[0030] Figure 8 It is a high-efficiency energy-saving methanol generator set auxiliary mechanism part of the application sectional view;
[0031] In the figure: 1, generating mechanism; 101, support; 102, generator body; 103, engine; 104, radiator; 105, storage tank; 106, vaporizer; 107, air filter; 108, air dryer; 109, methanol pump; 110, flow regulating valve; 111, infusion tube; 112, connecting pipe; 113, conveying pipe; 114, tee; 115, electric valve; 116, controller; 2, auxiliary mechanism; 201, processing tank; 202, first liquid storage tank; 203, second liquid storage tank; 204, first hose; 205, second hose; 206, tank cover; 207, servo motor; 208, first control valve; 209, second control valve; 210, sealing plug; 211, filter shell; 212, rotating rod; 213, stirring plate; 214, pH sensor; 215, manual valve. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying 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. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work are within the protection scope of the present application.
[0033] Embodiment one: please refer to Figures 1-4 , Figure 7 and Figure 8 , the present application provides a technical solution: a kind of high-efficiency energy-saving methanol generator set, including generating mechanism 1, generating mechanism 1 is provided with auxiliary mechanism 2 for processing residual liquid;
[0034] The auxiliary mechanism 2 comprises a processing tank 201, a first liquid storage tank 202 and a second liquid storage tank 203, the output end of the first liquid storage tank 202 is provided with a first hose 204, the output end of the second liquid storage tank 203 is provided with a second hose 205, the top of the processing tank 201 is provided with a tank cover 206, the top of the tank cover 206 is provided with a servo motor 207, two input ends of the tank cover 206 are respectively provided with a first control valve 208 and a second control valve 209, another input end of the tank cover 206 is provided with a sealing plug 210, the bottom of the tank cover 206 is provided with a filter shell 211, the output end of the servo motor 207 is provided with a rotating rod 212, the outer surface of the rotating rod 212 is provided with two stirring plates 213, the lower side of the processing tank 201 is provided with a pH value sensor 214, the detection end of the pH value sensor 214 is movably penetrated through the lower side of the processing tank 201, the output end of the processing tank 201 is provided with a manual valve 215, the output end of the first hose 204 is connected with the input end of the first control valve 208, the output end of the second hose 205 is connected with the input end of the second control valve 209, the output end of the servo motor 207 is movably penetrated through the top of the tank cover 206, the processing tank 201 is installed on the upper side of the support 101, the first liquid storage tank 202 and the second liquid storage tank 203 are both installed on the top of the support 101, the servo motor 207 is electrically connected with the controller 116, the first control valve 208 is electrically connected with the controller 116, the second control valve 209 is electrically connected with the controller 116, and the pH value sensor 214 is electrically connected with the controller 116.
[0035] In this embodiment, when the methanol-containing residual liquid generated by the methanol power generation needs to be harmlessly treated, the sealing plug 210 is first removed, and then the methanol-containing residual liquid is released into the inside of the filter shell 211 through the other input end of the tank cover 206 for filtering, and the filtered residual liquid is directly released into the inside of the treatment tank 201. Then the sealing plug 210 is reset to the original position, and then the controller 116 is turned on, and the pH value sensor 214 is set to the acid-base threshold value and the single operation time of the second control valve 209. Then the controller 116 starts the servo motor 207 and the pH value sensor 214. At this time, the starting servo motor 207 drives the rotating rod 212 to rotate under the cooperation of the tank cover 206, and the rotating rod 212 drives the two stirring plates 213 to rotate in the inside of the treatment tank 201. Then a proper amount of dilute sulfuric acid solution is injected into the inside of the first liquid storage tank 202, and then a proper amount of potassium permanganate solution is injected into the inside of the second liquid storage tank 203. Then the controller 116 starts the first control valve 208. At this time, the dilute sulfuric acid solution in the first liquid storage tank 202 is slowly released into the inside of the treatment tank 201 under the cooperation of the first soft pipe 204, the starting first control valve 208 and the tank cover 206. At the same time, the starting pH value sensor 214 detects the acidity and alkalinity of the liquid in the treatment tank 201 under the cooperation of the treatment tank 201, and transmits the detected acidity and alkalinity data to the controller 116 in the form of an electric signal. The controller 116 compares the received acidity and alkalinity data with the previously set acidity and alkalinity threshold value. When the acidity and alkalinity data received by the controller 116 is higher than the previously set acidity and alkalinity threshold value, the dilute sulfuric acid solution in the first liquid storage tank 202 continues to be slowly released into the inside of the treatment tank 201. When the acidity and alkalinity data received by the controller 116 is within the previously set acidity and alkalinity threshold value range, the controller 116 directly closes the first control valve 208 and the pH value sensor 214. Then the controller 116 starts the second control valve 209. At this time, the potassium permanganate solution in the second liquid storage tank 203 is slowly released into the inside of the treatment tank 201 under the cooperation of the second soft pipe 205, the starting second control valve 209 and the tank cover 206. When the operation time of the second control valve 209 reaches, the controller 116 directly closes the second control valve 209. At this time, the color of the solution in the treatment tank 201 is purple red, and the two rotating stirring plates 213 continue to stir the mixed solution in the treatment tank 201. Then the color of the solution in the treatment tank 201 is observed. When the purple red color in the solution in the treatment tank 201 completely disappears, the above operation steps are continued until the solution in the treatment tank 201 is stirred and the purple red color does not disappear within 30 seconds, which means that the methanol in the residual liquid has been completely oxidized and removed. Then the sealing plug 210 is removed, and the methanol-containing residual liquid is dropped into the inside of the treatment tank 201 until the purple red color of the liquid in the treatment tank 201 just disappears.Then the valve of the manual valve 215 is opened to release the liquid in the processing tank 201, and the released liquid is diluted to be used as a supplemental fertilizer.
[0036] Embodiment two: according to Figures 1-6 As shown in the figure, the power generation mechanism 1 includes a support 101, the upper side of the support 101 is provided with a generator body 102, the outer surface of the generator body 102 is provided with an engine 103, the outer surface of the engine 103 is provided with a radiator 104, the top of the support 101 is provided with a storage tank 105, the top of the support 101 is provided with a vaporizer 106, the top of the support 101 is provided with an air filter 107, the top of the support 101 is provided with an air dryer 108, the top of the support 101 is provided with a methanol pump 109, the output end of the storage tank 105 is provided with a flow regulating valve 110, the output end of the flow regulating valve 110 is provided with a liquid delivery pipe 111, the input end of the vaporizer 106 and the output end of the vaporizer 106 are both provided with a connecting pipe 112, the input end of the air dryer 108 and the output end of the air dryer 108 are both provided with a conveying pipe 113, the input end of the engine 103 is provided with a three-way pipe 114, the two input ends of the three-way pipe 114 are both provided with an electric valve 115, the front surface of the support 101 is provided with a controller 116, the bottom of the engine 103 is installed on the upper side of the support 101, the bottom of the radiator 104 is installed on the upper side of the support 101, the output end of the liquid delivery pipe 111 is installed on the input end of the methanol pump 109, the input end of one of the connecting pipes 112 is installed on the output end of the methanol pump 109, the output end of the other connecting pipe 112 is installed on the input end of one of the electric valves 115, the input end of one of the conveying pipes 113 is installed on the output end of the air filter 107, the output end of the other conveying pipe 113 is installed on the input end of the other electric valve 115, the radiator 104 is electrically connected with the controller 116, the vaporizer 106 is electrically connected with the controller 116, the methanol pump 109 is electrically connected with the controller 116, the flow regulating valve 110 is electrically connected with the controller 116, and each electric valve 115 is electrically connected with the controller 116.
[0037] When the controller 116 is connected with the external power supply, the appropriate amount of methanol liquid is injected into the storage tank 105, the controller 116 is connected with the engine 103, the controller 116 is turned on, the target flow value of the flow regulating valve 110 is set according to the actual situation, the controller 116 starts the methanol pump 109, the vaporizer 106, the flow regulating valve 110, the two electric valves 115 and the engine 103, the methanol pump 109 is started and works with the support 101, the liquid delivery pipe 111, one of the connecting pipes 112 and the started flow regulating valve 110 to pump the methanol liquid in the storage tank 105 into the vaporizer 106, the methanol liquid in the vaporizer 106 is changed into methanol gas with the started vaporizer 106, the methanol gas enters the engine 103 through the other connecting pipe 112, one of the started electric valves 115 and the three-way pipe 114, the started engine 103 works with the other started electric valve 115, the two delivery pipes 113 and the air dryer 108 to make the air filter 107 get suction, the air filter 107 sucks the air in the environment into it for filtration, the filtered air enters the air dryer 108 through one of the delivery pipes 113 for drying, the dried air enters the engine 103 through the other delivery pipe 113, the other electric valve 115 and the three-way pipe 114, when the air and the methanol gas are mixed in the engine 103, the engine 103 burns and expands the mixed gas to convert the chemical energy of methanol into rotary mechanical energy, the engine 103 transmits the rotary mechanical energy to the rotor of the generator body 102, the generator body 102 converts the mechanical energy into electrical energy based on the electromagnetic induction law, and the power generation of methanol is completed.
[0038] The whole mechanism achieves the following effects and working principles:
[0039] The power generation stage, when the need to use methanol power generation, at this time first connected with the controller 116 and external power supply, then injected into the storage tank 105 inside the appropriate amount of methanol liquid, then the controller 116 and engine 103 connected, after opening the controller 116, and set the target flow value of the flow regulating valve 110 according to the actual situation, then use the controller 116 to start the methanol pump 109, vaporizer 106, flow regulating valve 110, two electric valves 115 and engine 103, the methanol pump 109 will be started in the bracket 101, infusion tube 111, one of the connecting pipe 112 and the cooperation of the starting flow regulating valve 110, the methanol liquid in the storage tank 105 inside will be pumped out and delivered to the inside of the vaporizer 106, while the methanol liquid delivered to the inside of the vaporizer 106 will be changed into methanol gas under the cooperation of the starting vaporizer 106, and then the methanol gas will enter the inside of the engine 103 under the cooperation of the other connecting pipe 112, one of the starting electric valve 115 and the three-way pipe 114, while the starting engine 103 will make the input end of the air filter 107 get suction under the cooperation of the other starting electric valve 115, two delivery pipes 113 and air dryer 108, while the air filter 107 that gets suction can suck the air in the environment into its inside for filtering, and then the filtered air will enter the inside of the air dryer 108 for drying under the cooperation of one of the delivery pipes 113, and then the dried air will enter the inside of the engine 103 under the cooperation of the other delivery pipe 113, the other electric valve 115 and the three-way pipe 114, when the air and methanol gas complete mixing in the inside of the engine 103, the engine 103 can burn and expand the mixed gas in its inside, so as to convert the chemical energy of methanol into rotary mechanical energy, and then the engine 103 will transfer the rotary mechanical energy to the rotor of the generator body 102, and the generator body 102 will convert the mechanical energy into electrical energy based on the electromagnetic induction law, that is, the methanol power generation operation is completed.
[0040] When the methanol-containing residual liquid generated by the methanol power generation needs to be treated, the sealing plug 210 is removed, and the methanol-containing residual liquid is released into the filter shell 211 through the other input end of the tank cover 206 for filtration. The filtered residual liquid is directly released into the treatment tank 201. Then, the sealing plug 210 is reset to its original position. The controller 116 is turned on, and the pH threshold of the pH sensor 214 and the single operation time of the second control valve 209 are set. Then, the controller 116 starts the servo motor 207 and the pH sensor 214. The servo motor 207 is started and rotates the rotating rod 212 under the cooperation of the tank cover 206. The rotating rod 212 drives the two stirring plates 213 to rotate in the treatment tank 201. Then, an appropriate amount of dilute sulfuric acid solution is injected into the first storage tank 202, and an appropriate amount of potassium permanganate solution is injected into the second storage tank 203. Then, the controller 116 starts the first control valve 208. The dilute sulfuric acid solution in the first storage tank 202 is slowly released into the treatment tank 201 through the cooperation of the first soft pipe 204, the started first control valve 208, and the tank cover 206. The started pH sensor 214 detects the acidity and alkalinity of the liquid in the treatment tank 201 and transmits the detected data to the controller 116 in the form of an electric signal. The controller 116 compares the received data with the preset acidity and alkalinity threshold. When the received data is higher than the preset threshold, the dilute sulfuric acid solution in the first storage tank 202 continues to be slowly released into the treatment tank 201. When the received data is within the preset threshold range, the controller 116 directly closes the first control valve 208 and the pH sensor 214. Then, the controller 116 starts the second control valve 209. The potassium permanganate solution in the second storage tank 203 is slowly released into the treatment tank 201 through the cooperation of the second soft pipe 205, the started second control valve 209, and the tank cover 206. When the operation time of the second control valve 209 reaches, the controller 116 directly closes the second control valve 209. The color of the solution in the treatment tank 201 is purple red, and the two rotating stirring plates 213 continue to stir the mixed solution in the treatment tank 201. Then, the color of the solution in the treatment tank 201 is observed. When the purple red color in the solution completely fades, the above operation steps are continued until the solution does not fade within 30 seconds after stirring, indicating that the methanol in the residual liquid has been completely oxidized and removed. Then, the sealing plug 210 is removed, and the methanol-containing residual liquid is added to the treatment tank 201 until the purple red color of the solution in the treatment tank 201 just fades.Then open the valve of the manual valve 215, release the liquid in the processing tank 201, and then dilute the released liquid, which can be used as a supplemental fertilizer.
[0041] The controller 116, the generator body 102, the engine 103, the radiator 104, the vaporizer 106, the air filter 107, the air dryer 108, the methanol pump 109, the flow regulating valve 110, the electric valve 115, the servo motor 207, the first control valve 208, the second control valve 209 and the pH sensor 214 are all prior arts, and their working principles are all disclosed technologies, and their models can be selected according to actual conditions, and thus will not be explained in detail here.
[0042] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can make modifications to the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to some of the technical features, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A high-efficiency and energy-saving methanol generator set, comprising a power generation mechanism (1), characterized in that: The power generation mechanism (1) is equipped with an auxiliary mechanism (2) for treating residual liquid. The auxiliary mechanism (2) includes a processing tank (201), a first storage tank (202), and a second storage tank (203). A first hose (204) is installed at the output end of the first storage tank (202), and a second hose (205) is installed at the output end of the second storage tank (203). A tank cover (206) is installed on the top of the processing tank (201), and a servo motor (207) is installed on the top of the tank cover (206). A first control valve (208) and a second control valve (209) are respectively installed on two input ends of the tank cover (206). The other input end of the can lid (206) is provided with a sealing plug (210), the bottom of the can lid (206) is provided with a filter shell (211), the output end of the servo motor (207) is provided with a rotating rod (212), the outer surface of the rotating rod (212) is provided with two stirring plates (213), the lower side of the processing tank (201) is provided with a pH sensor (214), and the detection end of the pH sensor (214) moves through the lower side of the processing tank (201). The output end of the processing tank (201) is provided with a manual valve (215).
2. The high-efficiency energy-saving methanol generator set according to claim 1, characterized in that: The output end of the first hose (204) is installed with the input end of the first control valve (208), the output end of the second hose (205) is installed with the input end of the second control valve (209), and the output end of the servo motor (207) moves through the top of the can lid (206).
3. The high-efficiency energy-saving methanol generator set according to claim 1, characterized in that: The power generation mechanism (1) includes a bracket (101), a generator body (102) is mounted on the upper side of the bracket (101), an engine (103) is provided on the outer surface of the generator body (102), a radiator (104) is provided on the outer surface of the engine (103), a storage tank (105) is mounted on the top of the bracket (101), a vaporizer (106) is mounted on the top of the bracket (101), and an air filter (107) is mounted on the top of the bracket (101).
4. The high-efficiency energy-saving methanol generator set according to claim 3, characterized in that: An air dryer (108) is installed on the top of the support (101), a methanol pump (109) is installed on the top of the support (101), a flow regulating valve (110) is installed at the output end of the storage tank (105), an infusion pipe (111) is installed at the output end of the flow regulating valve (110), and a connecting pipe (112) is installed at both the input end and the output end of the vaporizer (106).
5. The high-efficiency energy-saving methanol generator set according to claim 4, characterized in that: The air dryer (108) has a delivery pipe (113) installed at both its input and output ends. The engine (103) has a three-way pipe (114) installed at its input end. Both input ends of the three-way pipe (114) are equipped with electric valves (115). The bracket (101) has a controller (116) installed on its front surface.
6. The high-efficiency energy-saving methanol generator set according to claim 4, characterized in that: The bottom of the engine (103) is mounted on the upper side of the bracket (101), the bottom of the radiator (104) is mounted on the upper side of the bracket (101), the output end of the infusion pipe (111) is mounted on the input end of the methanol pump (109), and the input end of one of the connecting pipes (112) is mounted on the output end of the methanol pump (109).
7. The high-efficiency energy-saving methanol generator set according to claim 5, characterized in that: The output end of another of the connecting pipes (112) is connected to the input end of one of the electric valves (115), the input end of one of the delivery pipes (113) is connected to the output end of the air filter (107), and the output end of the other delivery pipe (113) is connected to the input end of another electric valve (115).
8. The high-efficiency energy-saving methanol generator set according to claim 5, characterized in that: The radiator (104) is electrically connected to the controller (116), the vaporizer (106) is electrically connected to the controller (116), the methanol pump (109) is electrically connected to the controller (116), the flow regulating valve (110) is electrically connected to the controller (116), and each of the electric valves (115) is electrically connected to the controller (116).
9. The high-efficiency energy-saving methanol generator set according to claim 5, characterized in that: The processing tank (201) is installed on the upper side of the bracket (101), the first liquid storage tank (202) and the second liquid storage tank (203) are both installed on the top of the bracket (101), and the servo motor (207) is electrically connected to the controller (116).
10. The high-efficiency energy-saving methanol generator set according to claim 5, characterized in that: The first control valve (208) is electrically connected to the controller (116), the second control valve (209) is electrically connected to the controller (116), and the pH sensor (214) is electrically connected to the controller (116).