Fuel gas magnetization system and fuel gas catalysis method thereof

By installing a magnetic field generator of a specific frequency on the gas pipeline, methane molecules are arranged in an orderly manner in the gas boiler, which solves the problems of high energy consumption and large carbon emissions of gas boilers, and realizes the full combustion of gas and energy conservation and emission reduction.

CN120991530APending Publication Date: 2025-11-21JIANGSU JINGKE TOTAL SOLUTIONS LTD
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Patent Information

Application Number
CN202511125507.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-12
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

Existing gas-fired boilers suffer from high energy consumption, large carbon emissions, and incomplete combustion, while gas pipelines cannot effectively improve combustion efficiency.

Method used

By installing harmonic and magnetic field generators of specific frequencies on gas pipelines, the magnetic field can be used to align the spins of methane molecules, increase the distance between molecules and stabilize their arrangement, thereby achieving complete combustion.

Benefits of technology

This improved the calorific efficiency of the gas-fired boiler, reduced gas consumption and carbon emissions, and achieved energy conservation and emission reduction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a fuel gas magnetization system and a fuel gas catalysis method thereof, and solves the problems of insufficient combustion, low boiler thermal efficiency and the like of the existing fuel gas pipeline, and the main scheme is that the fuel gas magnetization system comprises: the fuel gas pipeline, the opposite end of which is a fuel gas inlet and outlet to be communicated with external fuel gas; the two magnetic force generators are symmetrically arranged on the upper side and the lower side of the gas pipe, each magnetic force generator comprises a box body and at least one iron core, the box body is fixed in a hollow mode through an external support, the bottom end of the iron core is exposed out of the bottom face of the box body, and a plurality of coils are wound on the outer wall, arranged in the box body, of the iron core; the coil is wrapped by insulation paste, the box body is filled with circulating condensate water, a copper pipe is wound on the outer wall shaft section, corresponding to the iron core, of the gas pipeline, the upper end and the lower end of the copper pipe abut against and make contact with the iron core in each magnetic force generator, the matcher is electrically connected with the two magnetic force generators, and the matcher is electrically connected with the two magnetic force generators. The magnetic field intensities generated by the two magnetic force generators are matched and consistent; the cooling module comprises a water cooling module and an air cooling module, and the water cooling module is used for being communicated with condensate water in the box body for circulation; and the control cabinet is electrically connected with the magnetic force generators and the cooling module so as to adjust the magnetic field intensity generated by each magnetic force generator and matched cooling required parameters.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of gas boiler equipment, in particular to a gas magnetization system and a gas catalysis method thereof. BACKGROUND

[0002] Gas boiler is widely used in China's economic and social and industrial production, which has brought great benefits to China's economic and social development. However, there are still some problems such as high energy consumption, large carbon emissions, environmental protection and energy saving. The existing gas pipeline can only be used for gas transmission, and the methane molecule structure in the gas is stable, so the contact area with oxygen is limited, so there are problems such as insufficient combustion, high combustion consumption and high carbon emissions.

[0003] Therefore, we propose a gas magnetization system and a gas catalysis method to solve the above problems. SUMMARY

[0004] The technical problem to be solved by the present application is to overcome the defects of the prior art. The present application provides a gas magnetization system and a gas catalysis method, which installs a specific frequency harmonic and magnetic field generator device on the natural gas pipeline. The gas molecule structure and operation mode are stable according to the set requirements, so that the boiler gas is fully combusted, the calorific value efficiency is improved, the gas consumption is reduced, the carbon emissions are reduced, and the benefits are improved.

[0005] To solve the above technical problems, the technical scheme adopted by the present application is: a gas magnetization system, comprising:

[0006] A gas pipeline, the opposite end is a gas inlet and outlet to connect the external gas;

[0007] A magnetic force generator, including two and symmetrically placed on the upper and lower sides of the gas pipe, each of the magnetic force generators includes a box body and at least one iron core, the box body is fixed by a hollow external support, the bottom end of the iron core is exposed to the bottom surface of the box body, the outer wall of which is provided with a plurality of coils, the coils are covered with insulating glue, the box body is filled with circulating condensate water, and the copper pipe is wound on the outer wall shaft section of the iron core corresponding to the gas pipeline,

[0008] A matcher electrically connected with the two magnetic force generators to match the magnetic field strength generated by the two magnetic force generators;

[0009] A cooling module, including a water cooling module and an air cooling module, the water cooling module is used to communicate and circulate with the condensate water in the box body;

[0010] A control cabinet is electrically connected to the magnetic field generators and the cooling module to adjust the magnetic field strength generated by each magnetic field generator and the matching cooling required parameters.

[0011] Further, the gas pipeline is made of high-temperature-resistant, corrosion-resistant, oxidation-resistant and high-pressure-resistant glass steel material. The shaft body is a flat open columnar structure with an inner diameter length of 350-550 mm.

[0012] Further, a valve is installed on the box to control the flow of condensed water.

[0013] Further, the system also includes a water quality monitoring and management unit to monitor the condensed water, which is neutral soft water.

[0014] Further, the magnetic field generator can be connected to an external waste heat recovery device to recover waste heat.

[0015] Further, the system also includes a cloud monitoring unit to record and correct the parameters of each device unit of the system.

[0016] According to the above-mentioned gas magnetization method of the gas magnetization system:

[0017] S1, the power supply is controlled by the control cabinet. According to the inner diameter interval of the gas pipeline, the corresponding current and voltage are matched to adjust the magnetic field strength generated by the magnetic field generator;

[0018] S2, the control cabinet controls the water cooling module to circulate the condensed water in the box, adjusts the flow of condensed water and the air volume in the air cooling module to adjust the temperature of the condensed water to not exceed 50 degrees, and simultaneously detects the pH value of the condensed water through the water quality monitoring and management unit to add reagents to ensure that the pH of the condensed water is neutral;

[0019] S3, when the magnetic field generator reaches the corresponding magnetic field strength, the upper and lower magnetic field strengths are matched through the matcher;

[0020] S4, the gas pipeline is connected to the gas pipeline. The C and H molecules of methane in the gas are affected by the strong magnetic field. The spin direction of the hydrogen atoms of methane is consistent, and a certain stable repulsive force is generated between the methane molecules to increase the distance between the methane molecules. In this way, the C and H molecules are orderly arranged and combined in the strong magnetic field. Methane enters the subsequent external combustion device, and the contact area of oxygen increases to achieve complete combustion.

[0021] Further, in step S1, the voltage adjustment range is 40-80V, the current adjustment range is 5-25A, and the magnetic field strength generated by the magnetization is 2000-10000GS.

[0022] Further, in step S3, the matcher is PSG-11A.

[0023] Compared with the prior art, the beneficial effects of the present application include: by installing a harmonic wave and magnetic field generator of a specific frequency on the gas pipeline, the hydrogen molecular spin direction of methane is made consistent, a certain stable repulsive force is generated between methane molecules, the distance between methane molecules is increased and stabilized into the combustion device, oxygen contact is increased to achieve the purpose of full combustion; the process of continuous combination and mutual repulsion of C molecules and H molecules during magnetization is from randomness to regularity, and through the gas magnetization unit, small molecule treatment unit, catalytic filler unit, safety guarantee unit, synchronous detection unit, gas energy-saving cloud platform monitoring, etc., the properties are stable. BRIEF DESCRIPTION OF DRAWINGS

[0024] The disclosure of the present application will be described with reference to the accompanying drawings. It should be appreciated that the drawings are only for illustrative purposes, and are not intended to limit the scope of protection of the present application. In the drawings, the same reference numerals are used to refer to the same parts. Among them:

[0025] Figure 1 The overall process schematic diagram of the gas magnetization system according to one embodiment of the present application is schematically shown;

[0026] Figure 2 The overall structure schematic diagram of the magnetic force generator according to one embodiment of the present application is schematically shown;

[0027] Figure 3 The molecular structure diagram of methane before and after catalysis according to one embodiment of the present application is schematically shown.

[0028] Reference numerals in the drawings: 1, gas pipeline; 2, magnetic force generator; 3, box; 4, iron core; 5, copper pipe. DETAILED DESCRIPTION

[0029] It is easy to understand that, according to the technical scheme of the present application, one of ordinary skill in the art can propose a plurality of structure modes and implementation modes which can be replaced with each other without changing the essential spirit of the present application. Therefore, the following specific embodiments and drawings are only exemplary descriptions of the technical scheme of the present application, and should not be regarded as the whole or as a limitation or restriction on the technical scheme of the present application.

[0030] According to one embodiment of the present application, the combination Figures 1-2 is shown.

[0031] For the overall system structure, the set of equipment is composed of radio frequency power supply, matcher, direct current power supply, control refusal, cloud platform control system, air cooler, water pump, water tower, air conditioner, water temperature flow meter, specially-made glass steel gas pipeline, stainless steel box, iron outer frame, cable and other equipment.

[0032] The gas magnetization system is used to make the gas in the gas boiler fully burn, improve the thermal efficiency, reduce the boiler energy consumption, and reduce the pollution caused by the carbon dioxide emission to the environment. In the development process of the system, the main difficulties are how to match each device unit of the equipment, how to generate a magnetized "strong field", how to make the magnetized "strong field" from unstable to stable, and how to make the magnetized "strong field" from uncontrollable to controllable according to the actual needs of the working conditions.

[0033] Firstly, the generation of the magnetic field and the matching of each unit of the equipment, specifically, in the embodiment, a gas magnetization system comprises:

[0034] A gas pipeline, the opposite end of which is a gas inlet and outlet to connect with external gas;

[0035] A magnetic force generator, which is composed of two and symmetrically arranged on the upper and lower sides of the gas pipeline, each of the magnetic force generators comprises a box body and at least one iron core, the box body is fixed by an external support, the bottom end of the iron core is exposed to the bottom surface of the box body, the outer wall of which is provided with a plurality of coils, the coils are covered with insulating glue, the box body is filled with circulating condensed water, and the copper pipe is arranged on the outer wall shaft section of the iron core corresponding to the gas pipeline,

[0036] A matcher, which is electrically connected with the two magnetic force generators to match the magnetic field strength generated by the two magnetic force generators;

[0037] A cooling module, which comprises a water cooling module and an air cooling module, the water cooling module is used to communicate and circulate with the condensed water in the box body;

[0038] A control cabinet, which is electrically connected with the magnetic force generator and the cooling module to adjust the magnetic field strength generated by each magnetic force generator and the cooling required parameters matched.

[0039] The corresponding magnetization steps are as follows:

[0040] S1, the power supply is controlled by the control cabinet, the corresponding current and voltage are matched according to the inner diameter interval of the gas pipeline, the magnetic field strength generated by the magnetic force generator is adjusted;

[0041] S2, the control cabinet controls the water cooling module to circulate the condensed water in the box body, adjusts the flow of the condensed water and the air volume of the air cooling module to adjust the temperature of the condensed water not to exceed 50 degrees, and synchronously detects the PH value of the condensed water through the water quality monitoring and management unit to add reagent to ensure that the PH value of the condensed water is neutral;

[0042] S3, after the magnetic force generator reaches the corresponding magnetic field strength, the upper and lower two magnetic field strengths are matched by the matcher;

[0043] S4, gas pipeline intake, C, H molecules corresponding to methane in the gas are affected by the strong magnetic field through the pipeline, the hydrogen atoms of methane have the same spin direction, a certain stable repulsive force is generated between the methane molecules to increase the distance between the methane molecules, and then the C, H molecules are orderly arranged and combined in the strong magnetic field process. Methane enters the subsequent external combustion device, and the oxygen contact area is increased to realize sufficient combustion.

[0044] The specific matching process is further illustrated in detail below in combination with embodiments:

[0045] 1. The gas pipeline requires a diameter of 350 mm to 550 mm. By matching the current of 40 V to 80 V and the voltage (5 A-25 A), the magnetic intensity of about 2000 GS to 10000 GS is generated according to the needs of the working conditions;

[0046] 2. After the composite gas intelligent electromagnetic activation generator (device) reaches the magnetic field strength, the C+H molecules of the gas pass through the pipeline and are affected by the strong magnetic field, and regular activities are generated, and then the C+H molecules are orderly arranged and combined in the strong magnetic field process;

[0047] 3. The composite gas intelligent electromagnetic activation device (generator) will generate a certain amount of heat, which will change with the change of seasonal temperature, and the change of temperature will cause fluctuations in the operation of the device. In order to make the overall operation of the device stable, it is necessary to circulate the cooling water to control the temperature of the cooling water below 50 degrees to ensure the corrosion resistance and durability of the device. The water tank is also equipped with a valve to control the size of the water flow to adjust the water temperature. According to the size of the water flow, the air cooler, water pump, water tower, air conditioner, and water flow meter are selected;

[0048] 4. Water quality monitoring and management unit, the device runs smoothly and has high requirements for circulating water. High acidity and alkalinity can cause corrosion of the device and aging of the wires, which will affect the smooth operation of the device. Therefore, it is appropriate to use neutral soft water. Regular water quality testing should be done to add appropriate chemicals to prevent the adverse effects of high acidity and alkalinity of the water on the device;

[0049] 5. Device synchronous detection and gas energy-saving intelligent cloud monitoring system unit, according to the device running condition, timely correction of each working condition device unit parameter, cloud monitoring platform realizes remote monitoring.

[0050] For example Figure 3As shown, the electromagnetic activation "field" is generated by the composite gas intelligent electromagnetic activation generator (device), which is composed of carbon C molecules and hydrogen H molecules formed by methane, C is in the center position, and H is around C; under normal circumstances, the free movement of each methane is random and irregular, and the macroscopic performance is not charged, a specific frequency harmonic and magnetic field generator (composite natural gas magnetization equipment) is installed on the gas pipeline to make the spin direction of the hydrogen molecules of methane consistent, and a certain stable repulsive force is generated between the methane molecules, so that the distance between the methane molecules is increased and stabilized into the combustion device, the oxygen contact is increased to achieve the purpose of full combustion; the process from randomness to regularity is continuously combined and repelled between C molecules and H molecules, through the gas magnetization unit, the small molecule treatment unit, the catalytic filler unit, the safety guarantee unit, the synchronous detection unit, the gas energy-saving cloud platform monitoring, etc., the properties are stable.

[0051] For the magnetic field strength matching process, the following experimental data is used as a reference:

[0052]

[0053] In cooperation with subsequent external boiler and other combustion equipment, the corresponding research data shows that when the stable control range of the magnetic field strength is near 3200GS, the gas boiler reduces energy consumption by 2%-5% per hour, and in the application and large cubic scene boiler use scene, it can achieve very objective energy saving and economic benefit.

[0054] As shown above, the present application is to install a specific frequency harmonic and magnetic field generator device on the natural gas pipeline. The gas molecule structure and operation mode is stable according to the set requirements, so that the boiler gas is fully burned, the calorific value efficiency is improved, the gas consumption is reduced, the carbon emission is reduced, and the benefit is improved.

[0055] Similarly, the magnetization system can also be associated through the cloud monitoring platform, including real-time monitoring, intelligence, storage, big data, fusion application, data sharing with third-party platforms and real-time calling of third parties, which can realize networked monitoring, video live sharing, video analysis and identification, etc. The intelligent cloud monitoring platform is a data collection and data processing operation platform, which has a large number of access devices and large data processing capacity. The heat generated by the magnetization generator in the system can also be recycled through an external heat recovery structure, and the corresponding structure and cloud design can refer to the existing structure on the market, which will not be described here.

[0056] The technical scope of the present application is not limited to the content in the above description, and those skilled in the art can make various modifications and changes to the above embodiments without departing from the technical idea of the present application, and these modifications and changes should be within the protection scope of the present application.

Claims

1. A gas magnetization system, characterized by, It comprises: a gas pipeline with a gas inlet and outlet at both ends to connect with external gas; a magnetic force generator, which is composed of two and symmetrically arranged on the upper and lower sides of the gas pipeline, each of which comprises a box and at least one core, the box is fixed by an external support, the bottom of the box is exposed to the bottom surface, the outer wall of which is embedded in the box and is provided with a plurality of coils, the coils are covered with insulating glue, the box is filled with circulating condensed water, and the gas pipeline is provided with a copper pipe on the outer wall shaft section corresponding to the core, and the upper and lower ends of the copper pipe are in contact with the core in each magnetic force generator, a matcher electrically connected with the two magnetic force generators to match the magnetic field strength generated by the two magnetic force generators; a cooling module, which comprises a water cooling module and an air cooling module, and the water cooling module is used to circulate the condensed water in the box; a control cabinet electrically connected with the magnetic force generator and the cooling module to adjust the magnetic field strength generated by each magnetic force generator and the matching cooling required parameters.

2. The gas magnetization system of claim 1, characterized in that The gas pipeline is made of special glass steel material with high temperature resistance, corrosion resistance, oxidation resistance and high pressure resistance, and the shaft body is a flat open columnar structure with an inner diameter length of 350-550mm.

3. The gas magnetization system of claim 1, wherein: The box is provided with a valve to control the flow of condensed water.

4. The gas magnetization system of claim 1, wherein: The system also comprises a water quality monitoring and management unit to monitor the condensed water, which is neutral soft water.

5. The gas magnetization system of claim 1, wherein: The magnetic force generator can be connected with an external waste heat recovery device to recover waste heat.

6. The gas magnetization system of claim 1, wherein: The system also comprises a cloud monitoring unit to record and correct the parameters of each device unit of the system.

7. A gas magnetization method of the gas magnetization system according to any one of claims 1-5: S1, the power supply is controlled by the control cabinet, the corresponding current and voltage are matched according to the inner diameter interval of the gas pipeline, and the magnetic field strength generated by the magnetic force generator is adjusted; S2, the control cabinet controls the water cooling module to circulate the condensed water in the box, adjusts the flow of the condensed water and the air volume of the air cooling module to adjust the temperature of the condensed water to be less than 50 degrees, and detects the PH value of the condensed water through the water quality monitoring and management unit to add reagent to ensure that the PH value of the condensed water is neutral; S3, after the magnetic force generator reaches the corresponding magnetic field strength, the upper and lower magnetic field strengths are matched through the matcher; S4, the gas pipeline is provided with a gas inlet, and the C and H molecules of methane in the gas are affected by the strong magnetic field, the spin direction of the hydrogen atoms of methane is consistent, and a certain stable repulsive force is generated between the methane molecules to increase the distance between the methane molecules, so that the C and H molecules are orderly arranged and combined in the strong magnetic field, and the methane enters the subsequent external combustion device, and the contact area of oxygen is increased to realize sufficient combustion.

8. A method of gas magnetization according to claim 7, characterized by the fact that: In step S1, the voltage adjustment range is 40-80V, the current adjustment range is 5-25A, and the magnetic field strength generated by the magnetization is 2000-10000GS.

9. A method of gas magnetization according to claim 7, characterized by the fact that: In step S3, the matcher is PSG-11A.