A torsion field quantum energy generating device, energy tube and preparation method thereof

Through the combination of torsion field quantum energy generation device and functional ceramic tube, superimposed torsion field quantum energy is formed, which solves the problem of insufficient energy of natural crystal gems, realizes the preparation of hydrogen-rich water and the removal of pesticide residues, and increases the fatty acid content of vegetable oil.

CN119028695BActive Publication Date: 2025-09-23KANGSTONE ECOLOGICAL TECHNOLOGY (BEIJING) CO LTD
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Patent Information

Application Number
CN202411129436.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-09-23
Estimated Expiration
2044-08-16

AI Technical Summary

Technical Problem

In the existing technology, the torsion field energy of natural crystal gemstones is limited, which makes it difficult to meet the needs of water redox, hydrogen-rich water and elimination of pesticide residues.

Method used

A torsion field quantum energy generating device is used, and components such as lanthanide salt solution, magnets and Fibonacci spiral tubes are used to form a right-handed torsion field. The torsion field quantum energy is superimposed on functional ceramic tubes to prepare functional ceramic tubes with superimposed torsion field quantum energy.

Benefits of technology

The prepared energy tube can prepare hydrogen-rich water, remove pesticide residues, increase the fatty acid content of vegetable oil, achieve the twisting and loosening of the chemical bonds of liquid molecules, and form structured water.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a torsion field quantum energy generation device, an energy tube, and a preparation method thereof. In the device and method provided by the present invention, under the action of a magnetic field, positive and negative ions in a solution of a lanthanide salt rotate in opposite directions around the perpendicular axis of the magnetic field to form a torsion field. This torsion field is then extracted through the right-handed torsion field of the Fibonacci spiral tube, causing the lanthanide salt solution to form a functional liquid with a right-handed torsion field. This liquid is used to treat a functional ceramic tube with a torsion field function composed of materials such as crystal and lanthanide elements. The two torsion fields can be superimposed on the functional ceramic tube, thereby making the functional ceramic tube a functional ceramic tube with superimposed torsion field quantum energy, i.e., the energy tube. The energy tube can be used to prepare hydrogen-rich water, remove pesticide residues, and increase the fatty acid content of vegetable oils.
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Description

Technical Field

[0001] The present invention belongs to the technical field of instruments and equipment, and specifically relates to a torsion field quantum energy generation device, an energy tube and a preparation method thereof. Background Art

[0002] Torsion fields, also known as torsion fields, are generated by spin and / or angular momentum. Any rotating object or particle generates torsion waves and has its own unique torsion field.

[0003] In terms of torsion field energy utilization, CN111939480A discloses a torsion field generating device, CN110818010A discloses an environmental purification torsion field generating device, and CN114162942A discloses a preparation method and preparation device for negative entropy water, as well as negative entropy water. These solutions basically utilize the natural torsion field properties of crystal gemstones to eliminate viruses; improve water quality and taste and pollution treatment of streams, lakes, and seawater; and treat water bodies with negative entropy to order water molecules, which is beneficial to the ordering of human cells and promotes health. Since the energy of pure natural crystal gemstones is limited, if it is necessary to complete the redox reaction of water bodies with higher energy, hydrogen-rich water effect, elimination of pesticide residues, etc., superimposed torsion field quantum energy is required. Summary of the Invention

[0004] In view of the shortcomings of the prior art, the purpose of the present invention is to provide a torsion field quantum energy generation device, an energy tube and a preparation method thereof.

[0005] To achieve this object, the present invention adopts the following technical solutions:

[0006] In a first aspect, the present invention provides a torsion field quantum energy generation device, the torsion field quantum energy generation device comprising:

[0007] An oblate cylindrical container, wherein the top of the oblate cylindrical container is provided with a vent, the bottom is provided with a water outlet, the side wall is provided with a water inlet, and the inlet direction of the water inlet of the oblate cylindrical container is tangent to the side wall of the oblate cylindrical container;

[0008] a first liquid storage tank, the first liquid storage tank being connected to the water inlet of the oblate cylindrical container via a pipe, and the first liquid storage tank being used to store a lanthanide salt solution;

[0009] a water pump, configured to pass the lanthanide salt solution in the first liquid storage tank into the flat cylindrical container;

[0010] A first magnet and a second magnet are respectively arranged above and below the oblate cylindrical container, and are used to generate a magnetic field perpendicular to the upper and lower walls of the oblate cylindrical container;

[0011] A Fibonacci spiral tube, wherein the inner surface of the Fibonacci spiral tube has a Fibonacci spiral, the Fibonacci spiral tube has a first end and a second end, and the first end of the Fibonacci spiral tube is connected to the water outlet of the oblate cylindrical container through a conduit;

[0012] a valve, disposed on the Fibonacci spiral tube, for controlling the opening and closing of the Fibonacci spiral tube;

[0013] a second liquid storage tank having a first water inlet, a second water inlet and a water outlet, wherein the first water inlet of the second liquid storage tank is connected to the second end of the Fibonacci spiral tube;

[0014] a third liquid storage tank having a water inlet, a water outlet, and a vent, wherein the water outlet of the third liquid storage tank is connected to the second water inlet of the second liquid storage tank via a pipe, and a return pump is provided on the pipe for returning the solution in the third liquid storage tank to the second liquid storage tank;

[0015] Multiple functional ceramic tubes are arranged in parallel and connected in series through pipes, one end of the multiple functional ceramic tubes connected in series is connected to the water outlet of the second liquid storage tank, and the other end is connected to the water inlet of the third liquid storage tank.

[0016] In the torsion field quantum energy generation device provided by the present invention, when the lanthanide salt solution enters the flat cylindrical container, it rotates around the flat cylindrical container in the direction tangential to the container wall under the action of a water pump, so that the liquid has right-handed torsion field ability.

[0017] The first and second magnets create a magnetic field perpendicular to the upper and lower walls of the oblate cylindrical container, causing the positive and negative ions in the solution in the container to rotate around the vertical axis of the magnetic field. The positive and negative ions rotate in opposite directions and have equal charges, creating the conditions for the formation of a torsion field. The direction of the liquid's clockwise rotation around the container is offset from the direction of the magnetic field. At this time, the direction of ion movement is also offset from the direction of the magnetic field. The ions move in a clockwise spiral pattern of the liquid, thus creating a right-handed torsion field effect.

[0018] The Fibonacci spiral tube is used as a generator of right-handed torsion field. When the lanthanide salt solution passes through it, the right-handed torsion field is enhanced.

[0019] When a lanthanide salt solution passes through a functional ceramic tube composed of crystal and lanthanide elements, the two torsion field quantum information and energy are superimposed on the functional ceramic tube, thereby strengthening the quantum information and energy of the functional ceramic tube. This forms a functional ceramic tube (referred to as an energy tube) with superimposed torsion field quantum energy.

[0020] In some embodiments of the present invention, the lanthanide salt solution is a lanthanide acetate solution.

[0021] In some embodiments of the present invention, the concentration of the lanthanide salt solution is 1-10 wt %, for example, 1 wt %, 2 wt %, 3 wt %, 5 wt %, 6 wt %, 8 wt % or 10 wt %.

[0022] In some embodiments of the present invention, the magnetic field strength generated by the first magnet and the second magnet is 3500-5000 Gauss (for example, it can be 3500 Gauss, 3800 Gauss, 4000 Gauss, 4200 Gauss, 4500 Gauss, 4800 Gauss or 5000 Gauss, etc.), and the direction of the magnetic field is with the N pole at the bottom and the S pole at the top.

[0023] In some embodiments of the present invention, the water inlet of the oblate cylindrical container has a right-handed direction.

[0024] In some embodiments of the present invention, the Fibonacci spiral tube is formed by casting aluminum.

[0025] In some embodiments of the present invention, the number of the functional ceramic tubes is 3-4.

[0026] In some embodiments of the present invention, the raw materials for preparing the functional ceramic tube include the following components in percentage by mass:

[0027] Aluminum oxide 15-20%, bentonite 8-10%, kaolin 33-55%, water-soluble polymer 8-10%, binder 7-10%, dispersant 5-10%, volcanic ash 3-5%, trigonal crystal 3-5%, hexagonal crystal 3-5%, spodumene powder 1-3% and lanthanide powder 1-4%.

[0028] The weight percentage of aluminum oxide (Al2O3) can be 15%, 16%, 17%, 18%, 19% or 20%.

[0029] The weight percentage of bentonite (Al2O3·4SiO2·H2O) can be 8%, 8.5%, 9%, 9.5% or 10%, etc.

[0030] The weight percentage of kaolin (Al2O3·2SiO2·2H2O) can be 33%, 35%, 38%, 40%, 42%, 45%, 48%, 50%, 52% or 55%, etc.

[0031] The weight percentage of the water-soluble polymer can be 8%, 8.5%, 9%, 9.5% or 10%, etc.

[0032] The weight percentage of the adhesive can be 7%, 7.5%, 8%, 8.5%, 9%, 9.5% or 10%, etc.

[0033] The weight percentage of the dispersant can be 5%, 5.5%, 6%, 6.5%, 7%, 7.5%, 8%, 8.5%, 9%, 9.5% or 10%, etc.

[0034] The weight percentage of volcanic ash can be 3%, 3.2%, 3.5%, 3.8%, 4%, 4.2%, 4.5%, 4.8% or 5%, etc.

[0035] The weight percentage of the trigonal crystal can be 3%, 3.2%, 3.5%, 3.8%, 4%, 4.2%, 4.5%, 4.8% or 5%, etc.

[0036] The weight percentage of the hexagonal crystal can be 3%, 3.2%, 3.5%, 3.8%, 4%, 4.2%, 4.5%, 4.8% or 5%.

[0037] The weight percentage of spodumene powder can be 1%, 1.2%, 1.5%, 1.8%, 2%, 2.2%, 2.5%, 2.8% or 3%, etc.

[0038] The weight percentage of the lanthanide powder can be 1%, 1.2%, 1.5%, 1.8%, 2%, 2.2%, 2.5%, 2.8%, 3%, 3.2%, 3.5%, 3.8% or 4%, etc.

[0039] In some embodiments of the present invention, the bentonite comprises natural bleaching earth and / or sodium bentonite.

[0040] In some embodiments of the present invention, the water-soluble polymer includes one or more of polyvinyl alcohol, polyacrylamide, polyacrylate, starch and gum arabic.

[0041] In some embodiments of the present invention, the binder comprises one or more of polyvinyl alcohol and dextrin;

[0042] In some embodiments of the present invention, the dispersant includes one or more of tetramethylammonium hydroxide and ammonia water;

[0043] In some embodiments of the present invention, the trigonal crystal includes one or more of citrine, amethyst, ruby, sapphire and tourmaline.

[0044] In some embodiments of the present invention, the hexagonal crystal includes one or more of emerald, aquamarine and apatite crystals.

[0045] In some embodiments of the present invention, the mesh size of the spodumene powder is above 200 mesh.

[0046] In some embodiments of the present invention, the lanthanide element powder includes one or more of lanthanum, cerium and praseodymium.

[0047] In some embodiments of the present invention, the mesh size of the lanthanide element powder is above 200 mesh.

[0048] In some embodiments of the present invention, the method for preparing the functional ceramic tube comprises the following steps:

[0049] calcining aluminum oxide, bentonite, and kaolin at 600-700° C. (for example, 600° C., 610° C., 620° C., 630° C., 640° C., 650° C., 660° C., 670° C., 680° C., 690° C., or 700° C.) for 3-5 h (for example, 3 h, 3.2 h, 3.5 h, 3.8 h, 4 h, 4.2 h, 4.5 h, 4.8 h, or 5 h), cooling to room temperature, and then pulverizing and passing through a 200-mesh sieve to obtain a first raw material powder;

[0050] calcining the rhombohedral crystal and the hexagonal crystal in a weight ratio at 800-900° C. (e.g., 800° C., 810° C., 820° C., 830° C., 840° C., 850° C., 860° C., 870° C., 880° C., 890° C., or 900° C.) for 3-5 h (e.g., 3 h, 3.2 h, 3.5 h, 3.8 h, 4 h, 4.2 h, 4.5 h, 4.8 h, or 5 h), cooling to room temperature, grinding, and passing through a 200-mesh sieve to obtain a second raw material powder;

[0051] The first raw material powder, the second raw material powder, spodumene powder, lanthanide powder, water-soluble polymer, binder, dispersant and volcanic ash are mixed, and water accounting for 70-100% (for example, 70%, 75%, 80%, 85%, 90%, 95% or 100%) of the total mass of the raw materials of the functional ceramic tube is added, and the mixture is ground in a ball mill for 30-36 hours (for example, 30 hours, 31 hours, 32 hours, 33 hours, 34 hours, 35 hours or 36 hours, etc.), and allowed to stand to remove floating matter in the water, and then impurities are removed by magnet, and then water is removed and mud is pressed, and the mud is kneaded until the mud has a water weight percentage of 15-18% (for example, 15%, 15.5%, 16%, 16.5%, 17%, 17.5% or 18%, etc.), to prepare a porcelain mud raw material;

[0052] The porcelain clay raw material is made into a ceramic clay tube using a mold, and then calcined at 900-1600°C (for example, it can be 900°C, 1000°C, 1100°C, 1200°C, 1300°C, 1400°C, 1500°C or 1600°C, etc.) for 2-3.5h (for example, it can be 2h, 2.2h, 2.5h, 2.8h, 3h, 3.2h or 3.5h, etc.), and then cooled to obtain the functional ceramic tube.

[0053] In a second aspect, the present invention provides a method for preparing an energy tube, the preparation method being carried out using the torsion field quantum energy generating device as described in the first aspect, the preparation method comprising the steps of:

[0054] charging a lanthanide salt solution into a first liquid storage tank;

[0055] Closing the vent of the oblate cylindrical container and the valve of the Fibonacci spiral tube, and introducing the lanthanide salt solution into the oblate cylindrical container through a water pump, so that the lanthanide salt solution rotates around the axis of the oblate cylindrical container;

[0056] Opening the valve of the Fibonacci spiral tube, allowing the lanthanide salt solution to flow through the second liquid storage tank and the functional ceramic tube in sequence and into the third liquid storage tank;

[0057] The lanthanide salt solution in the third liquid storage tank is refluxed to the second liquid storage tank through a return pump, and the cycle is repeated multiple times;

[0058] The processed functional ceramic tube is taken out, cleaned and dried to obtain the energy tube.

[0059] In the preparation method provided by the present invention, under the action of a magnetic field, positive and negative ions in a solution of a lanthanide salt rotate in opposite directions around the vertical axis of the magnetic field to form a torsion field, which is then derived through the right-handed torsion field of a Fibonacci spiral tube, so that the lanthanide salt solution forms a functional liquid with a right-handed torsion field. The liquid is used to treat a functional ceramic tube with a torsion field function composed of materials such as crystal and lanthanide elements. After the functional ceramic tube passes through three or four layers of the right-handed torsion field functional liquid curved flow field, the two torsion fields are superimposed on the functional ceramic tube, and the functional ceramic tube becomes a functional ceramic tube (i.e., the energy tube) with superimposed torsion field quantum energy.

[0060] In some embodiments of the present invention, the residence time of the lanthanide salt solution in the flat cylindrical container is more than 1 minute.

[0061] In some embodiments of the present invention, the flow rate of the lanthanide salt solution in the functional ceramic tube is 30-50 ml / s; for example, it can be 30 ml / s, 32 ml / s, 35 ml / s, 38 ml / s, 40 ml / s, 42 ml / s, 45 ml / s, 48 ​​ml / s or 50 ml / s, etc.

[0062] In some embodiments of the present invention, the lanthanide salt solution in the third liquid storage tank is refluxed to the second liquid storage tank for 3-5 cycles.

[0063] In a third aspect, the present invention provides an energy tube prepared by the preparation method described in the second aspect.

[0064] In a fourth aspect, the present invention provides a use of the energy tube as described in the third aspect in preparing hydrogen-rich water, removing pesticide residues, and increasing the fatty acid content of vegetable oil.

[0065] The energy tube provided by the present invention has the superimposed right-handed torsion field energy and the high-frequency effects of the lanthanide elements and crystals themselves, which can twist and loosen the chemical bonds of liquid molecules, such as changing the hydrogen bond angle of water to form "structured water." It can pull some water molecules apart into hydrogen ions and OH ions, and has both reducing and oxidizing effects. Therefore, its application can make drinking water into small-molecule water and hydrogen-rich water; it can be used to irrigate crops and Chinese herbal medicines to remove pesticide residues; and it can increase the content of saturated fatty acids and unsaturated fatty acids in vegetable oils.

[0066] In a fifth aspect, the present invention provides a relay function ceramic tube (referred to as relay function ceramic tube) for torsion field energy supplementation, wherein the raw materials for preparing the relay function ceramic tube include the following components in percentage by mass:

[0067] Aluminum oxide 15-20%, bentonite 8-10%, kaolin 33-55%, water-soluble polymer 8-10%, binder 7-10%, dispersant 5-10%, volcanic ash 3-5%, trigonal crystal 3-5%, spodumene powder 1-3% and lanthanide powder 1-4%.

[0068] In some embodiments of the present invention, the bentonite comprises natural bleaching earth and / or sodium bentonite.

[0069] In some embodiments of the present invention, the water-soluble polymer includes one or more of polyvinyl alcohol, polyacrylamide, polyacrylate, starch and gum arabic.

[0070] In some embodiments of the present invention, the binder comprises one or more of polyvinyl alcohol and dextrin;

[0071] In some embodiments of the present invention, the dispersant includes one or more of tetramethylammonium hydroxide and ammonia water;

[0072] In some embodiments of the present invention, the trigonal crystal includes one or more of citrine, amethyst, ruby, sapphire and tourmaline.

[0073] In some embodiments of the present invention, the hexagonal crystal includes one or more of emerald, aquamarine and apatite crystals.

[0074] In some embodiments of the present invention, the mesh size of the spodumene powder is above 200 mesh.

[0075] In some embodiments of the present invention, the lanthanide element powder includes one or more of lanthanum, cerium and praseodymium.

[0076] In some embodiments of the present invention, the mesh size of the lanthanide element powder is above 200 mesh.

[0077] In some embodiments of the present invention, the method for preparing the relay function ceramic tube comprises the following steps:

[0078] Aluminum oxide, bentonite and kaolin are calcined at 600-700°C for 3-5 hours according to weight ratio, cooled to room temperature and then crushed, and passed through a 200-mesh sieve to obtain a first raw material powder;

[0079] calcining the trigonal crystal at 800-900°C for 3-5 hours according to weight ratio, cooling to room temperature, grinding, and passing through a 200-mesh sieve to obtain a second raw material powder;

[0080] The first raw material powder, the second raw material powder, spodumene powder, lanthanide element powder, a water-soluble polymer, a binder, a dispersant and volcanic ash are mixed, and water accounting for 70-100% of the total weight of the raw materials of the functional ceramic tube is added. The mixture is ground in a ball mill for 30-36 hours, allowed to stand to remove floating matter in the water, and then impurities are removed using a magnet. After that, the mixture is dehydrated and pressed into a mud, and the mud is kneaded until the weight percentage of water in the mud is 15-18%, thereby preparing a porcelain mud raw material;

[0081] The ceramic clay raw material is made into a ceramic clay tube using a mold, and then calcined at 900-1600° C. for 2-3.5 hours, and then cooled to obtain the relay function ceramic tube.

[0082] Compared with the prior art, the present invention has the following beneficial effects:

[0083] The torsion field quantum energy generation device provided by the present invention can be used to prepare a functional ceramic tube (i.e., an energy tube) with superimposed torsion field quantum energy, and the preparation method is simple. The prepared energy tube has superimposed torsion field quantum energy and can be used to prepare hydrogen-rich water, remove pesticide residues, and increase the fatty acid content of vegetable oil. BRIEF DESCRIPTION OF THE DRAWINGS

[0084] Figure 1 A schematic structural diagram of a torsion field quantum energy generating device provided in Example 1 of the present invention;

[0085] Figure 2 The water treated by the energy tube provided by the embodiment of the present invention 17 NMR spectrum of O;

[0086] The accompanying drawings are marked as follows: 1-flat cylindrical container, 2-first magnet, 3-second magnet, 4-water inlet of the flat cylindrical container, 5-water pump, 6-valve, 7-conduit, 8-Fibonacci spiral tube, 9-second liquid storage tank, 10-elbow, 11-functional ceramic tube, 12-third liquid storage tank, 13-vent of the third liquid storage tank, 14-vent of the flat cylindrical container, 15-return pump, 16-first liquid storage tank. DETAILED DESCRIPTION

[0087] The technical solution of the present invention will be further described below with reference to the accompanying drawings and through specific embodiments. It should be understood by those skilled in the art that the specific embodiments are merely to help understand the present invention and should not be regarded as specific limitations of the present invention.

[0088] Example 1

[0089] This embodiment provides a torsion field quantum energy generation device, the structural diagram of which is shown in FIG. Figure 1 Shown, including:

[0090] An oblate cylindrical container 1, wherein the top of the oblate cylindrical container 1 is provided with a vent 14, the bottom is provided with a water outlet, and the side wall is provided with a water inlet 4, and the inlet direction of the water inlet 4 of the oblate cylindrical container 1 is tangent to the side wall of the oblate cylindrical container 1;

[0091] A first liquid storage tank 16, the first liquid storage tank 16 is connected to the water inlet 4 of the flat cylindrical container 1 through a pipeline, and the first liquid storage tank 16 is used to store a lanthanide salt solution;

[0092] A compressor water pump 5 is used to pass the lanthanide salt solution in the first liquid storage tank 16 into the flat cylindrical container 1;

[0093] The first magnet 2 and the second magnet 3 are respectively arranged above and below the flat cylindrical container 1, and are used to generate a magnetic field perpendicular to the upper and lower walls of the flat cylindrical container 1;

[0094] A Fibonacci spiral tube 8, wherein the inner surface of the Fibonacci spiral tube 8 has a Fibonacci spiral line, and the Fibonacci spiral tube 8 has a first end and a second end, and the first end of the Fibonacci spiral tube 8 is connected to the water outlet of the flat cylindrical container 1 through a conduit 7;

[0095] a valve 6 , provided on the Fibonacci spiral tube 8 , for controlling the opening and closing of the Fibonacci spiral tube 8 ;

[0096] A second liquid storage tank 9 has a first water inlet, a second water inlet and a water outlet, wherein the first water inlet of the second liquid storage tank 9 is connected to the second end of the Fibonacci spiral tube 8;

[0097] The third liquid storage tank 12 has a water inlet, a water outlet and a vent 13. The water outlet of the third liquid storage tank 12 is connected to the second water inlet of the second liquid storage tank 9 via a pipe, and a return pump 15 is provided on the pipe for returning the solution in the third liquid storage tank 12 to the second liquid storage tank 9;

[0098] Multiple functional ceramic tubes 11 are arranged in parallel with each other and connected in series through a bend pipe 10. The bend pipe 10 is detachable. One end of the multiple functional ceramic tubes connected in series is connected to the water outlet of the second liquid storage tank 9, and the other end is connected to the water inlet of the third liquid storage tank 12.

[0099] Wherein, the inlet direction of the water inlet 4 of the flat cylindrical container 1 is right-handed;

[0100] The magnetic field strength generated by the first magnet 2 and the second magnet 3 is 4000 gauss, and the magnetic field direction is with the N pole at the bottom and the S pole at the top;

[0101] The Fibonacci spiral tube 8 is formed by aluminum casting;

[0102] The number of the functional ceramic tubes 11 is four.

[0103] The raw materials for preparing the functional ceramic tube 11 include the following components in percentage by mass:

[0104] Aluminum oxide 16%, bentonite (natural bleaching earth) 10%, kaolin 40%, water-soluble polymer (polyvinyl alcohol) 7%, binder (dextrin) 7%, dispersant (tetramethylammonium hydroxide) 5%, volcanic ash (CAS1332-09-8) 3%, trigonal crystal (citrine) 5%, hexagonal crystal (emerald) 3%, 200 mesh spodumene powder 1% and 200 mesh lanthanide (lanthanum) powder 3%.

[0105] The preparation method of the functional ceramic tube 11 is as follows:

[0106] Aluminum oxide, bentonite and kaolin were calcined at 650° C. for 4 hours according to weight ratio, cooled to room temperature and then crushed, and passed through a 200-mesh sieve to obtain a first raw material powder;

[0107] The rhombic crystal and the hexagonal crystal were calcined at 850° C. for 4 h according to the weight ratio, cooled to room temperature, ground, and passed through a 200-mesh sieve to obtain a second raw material powder;

[0108] The first raw material powder, the second raw material powder, spodumene powder, lanthanide element powder, a water-soluble polymer, a binder, a dispersant and volcanic ash are mixed, and water accounting for 100% of the total weight of the raw materials of the functional ceramic tube is added. The mixture is ground in a ball mill for 35 hours, allowed to stand for 24 hours, floating matter in the water is removed, impurities are removed by magnet, and then water is removed and pressed. The mixture is kneaded until the water content by weight of the mud is 16%, thereby preparing a porcelain mud raw material;

[0109] The ceramic clay raw material is made into a ceramic clay tube using a mold, and the ceramic clay tubes are arranged vertically and evenly in a box body of a sintering functional ceramic tube. Each ceramic clay tube is evenly heated by a sintering furnace blower, and then calcined at 1350° C. for 3.5 hours to ensure that the inner and outer walls of the ceramic clay tubes are stable and uniform;

[0110] After sintering is completed, the product is cooled for 2 hours, unloaded from the furnace, and the formed functional ceramic tube is taken out. The sintering quality is inspected and qualified products are made into products according to size requirements using a centerless grinder, a flat grinder, a chamfering machine, and a polishing machine. The product is then cleaned and dried to obtain the functional ceramic tube.

[0111] Example 2

[0112] This embodiment provides an energy tube and a preparation method thereof. The preparation method is performed using the torsion field quantum energy generation device provided in Example 1, and the specific steps are as follows:

[0113] Dissolve 5 wt% of cerium acetate, 5 wt% of gadolinium acetate, and 5 wt% of erbium acetate in 15 liters of pure water to obtain a lanthanide salt solution, which is then placed in an 18-liter first liquid storage tank 16;

[0114] Close the vent 14 of the oblate cylindrical container 1 and the valve 6 of the Fibonacci spiral tube 8, start the compressor water pump 5 to a pressure of 2.5 atmospheres, inject the lanthanide salt solution into the oblate cylindrical container 1, and rotate the lanthanide salt solution around the axis of the oblate cylindrical container 1 until it is filled with 15 liters of liquid. After a one-minute pause, open the valve 6;

[0115] The lanthanide salt solution flows into the second liquid storage tank 9. When the liquid in the second liquid storage tank 9 is filled to the liquid inlet of the bend pipe 10, the gas pressure has been consumed, and the liquid begins to flow into the functional ceramic tube 11 by gravity, and then flows into the third liquid storage tank 12.

[0116] When the liquid stored in the third liquid storage tank 12 is submerged in the return pump 15, the return pump 15 starts working and returns the liquid to the second liquid storage tank 9. When the liquid in the second liquid storage tank 9 is filled to 2 / 3, the liquid continues to be transported to the functional ceramic tube 11 by gravity. At a flow rate of 50 ml / s, 15 liters of liquid flow into the third liquid storage tank 12 in 5 minutes, and this process is repeated 4 times.

[0117] After completion, the elbow 10 is disassembled, and the treated functional ceramic tube 11 is taken out. It is then cleaned with clean water, the pH value of the cleaning solution is about 7, and then dried in an oven at 50-80°C, taken out, and packaged into a finished product in a plastic film bag. The treated functional ceramic tube 11 is an energy tube, which has the ability to transmit superimposed torsion field quantum energy and information.

[0118] Example 3

[0119] The present embodiment provides a relay function ceramic tube for torsion field energy supplementation (referred to as relay function ceramic tube) and a preparation method thereof, wherein the relay function ceramic tube includes the following components in percentage by mass:

[0120] Aluminum oxide 16%, bentonite (natural bleaching earth) 10%, kaolin 40%, water-soluble polymer (polyvinyl alcohol) 7%, binder (dextrin) 7%, dispersant (tetramethylammonium hydroxide) 7%, volcanic ash (CAS1332-09-8) 5%, trigonal crystal (citrine) 4%, 200 mesh spodumene powder 1% and 200 mesh lanthanide (lanthanum) powder 3%.

[0121] The preparation method of the relay function ceramic tube is as follows:

[0122] Aluminum oxide, bentonite and kaolin were calcined at 650° C. for 4 hours according to weight ratio, cooled to room temperature and then crushed, and passed through a 200-mesh sieve to obtain a first raw material powder;

[0123] The trigonal crystal was calcined at 850° C. for 4 h according to the weight ratio, cooled to room temperature, ground, and passed through a 200-mesh sieve to obtain a second raw material powder;

[0124] The first raw material powder, the second raw material powder, spodumene powder, lanthanide element powder, a water-soluble polymer, a binder, a dispersant and volcanic ash are mixed, and water accounting for 100% of the total weight of the raw materials of the functional ceramic tube is added. The mixture is ground in a ball mill for 35 hours, allowed to stand for 24 hours, floating matter in the water is removed, impurities are removed by magnet, and then water is removed and pressed. The mixture is kneaded until the water content by weight of the mud is 16%, thereby preparing a porcelain mud raw material;

[0125] The ceramic clay raw material is made into a ceramic clay tube using a mold, and the ceramic clay tubes are arranged vertically and evenly in a box body of a sintering functional ceramic tube. Each ceramic clay tube is evenly heated by a sintering furnace blower, and then calcined at 1350° C. for 3.5 hours to ensure that the inner and outer walls of the ceramic clay tubes are stable and uniform;

[0126] After sintering is completed, the product is cooled for 2 hours, unloaded from the furnace, and the formed functional ceramic tube is taken out. The sintering quality is inspected and qualified products are made into products according to size requirements using a centerless grinder, a flat grinder, a chamfering machine, and a polishing machine. Then, the product is cleaned and dried to obtain the relay functional ceramic tube.

[0127] Application Example 1

[0128] The energy tube prepared in Example 2 was used to treat bottled drinking water and was used by Beijing Zhongke Optical Analysis Chemical Technology Research Institute (Food Laboratory) 17 O NMR detection, the spectrum is as follows Figure 2 The test report shows that the number of water molecules with a half-width frequency of 40.3Hz is 4-5, and the quality of the water is high-quality small molecule water, because the quality of high-quality Bama water is 17 The H NMR half-width frequency is 56Hz, with a water molecule count of 5-6. Typical bottled drinking water has a 110Hz frequency, with a water molecule count of 13-14. Water quality testing revealed chloride levels of 1.16mg / L, while the standard allowable value is 250mg / L; total hardness of 3.22mg / L, while the standard allowable value is 450mg / L; heavy metal content was <0.0001mg / L for mercury, <0.001mg / L for lead, <0.0025mg / L for lead, <0.01mg / L for lead, <0.001mg / L for hexavalent chromium, <0.001mg / L for chromium, <0.5mg / L for cadmium, <0.0005mg / L for cadmium, <0.005mg / L for cadmium, and <0.001mg / L for arsenic, <0.001mg / L for arsenic, and no E. coli or other microorganisms were detected. Therefore, it is very safe and delicious. And according to the test of Beijing Qingxi Technology Research Institute, the water also contains 4.42434 mg / kg of hydrogen, about 4.42 ppm (the internationally recognized hydrogen content reaches 1.6 ppm and is considered hydrogen-rich water) and has a resonance frequency of 2617 Hz, which is actually functional water.

[0129] Application Example 2

[0130] Equip the energy tube prepared in Example 2 with a stainless steel outer sleeve with a threaded connector. Screw it onto the output connector of an agricultural irrigation pump, or connect the two with a flange. Then connect the outlet rubber belt hose to irrigate the farmland. Dig a 60 cm deep rectangular pit in the center of a field of at least 2 mu (approximately 1.5 acres) and bury the relay function ceramic tube prepared in Example 3. Cover it with soil and continue irrigation. When irrigation is complete, leave the relay function ceramic tube buried in the soil until the autumn harvest is complete, then remove it, clean it, and store it for future use.

[0131] After testing, the wolfberries planted in the farmland contained methamidophos (<0.05mg / kg), methyl parathion (<0.02mg / kg), parathion (<0.02mg / kg), monocrotophos (<0.03mg / kg), phosphamidon (<0.05mg / kg), benzyl hexachloride (the sum of α-BHC, β-BHC, γ-BHC, and δ-BHC is <0.1mg / kg), DDT (ρρ′-DDE, ρρ′-DDD, oρ′-DDT, ρρ′-D No pesticide residues such as DT, sum of which is <0.1mg / kg), chlorpyrifos (<0.02mg / kg), herbicide ether (<0.05mg / kg), dieldrin (<0.05mg / kg), aldrin (<0.05mg / kg), benzylphos (<0.02mg / kg), fonofos (<0.02mg / kg), and cadusafos (<0.02mg / kg) were detected. The reference method is 2341 of the general rule 2 of Part IV of the Pharmacopoeia of the People's Republic of China 2015 edition.

[0132] Quality testing of goji berries treated with energy tubes and relay-function ceramic tubes revealed that their properties met pharmacopoeial standards, their microscopic structure was consistent with pharmacopoeia standards, and their composition was consistent with pharmacopoeia standards by liquid chromatography. This indicates that the performance of the goji berries remained unchanged. Quality testing revealed: moisture content 11.3%, compared to pharmacopoeia standards of 15%; total ash content 4.5%, compared to pharmacopoeia standards of 5%; sulfur dioxide residue 3 ppm, compared to pharmacopoeia standards of ≤150 ppm; extract content 69.2%, compared to pharmacopoeia standards of ≥55%; and glucose content 2%, compared to pharmacopoeia standards of ≥1.8%. This indicates that the quality of the goji berries improved after treatment, and pesticide residues were reduced.

[0133] Application Example 3

[0134] The soybean oil was treated with the energy tube prepared in Example 2 and the oil composition was compared with that of soybean oil produced in Japan. The results are shown in Table 1.

[0135] Table 1

[0136]

[0137]

[0138] From the data in Table 1, it can be seen that Japanese soybean oil contains 14.9 μg / kg of saturated fatty acids, 22.1 μg / kg of monounsaturated fatty acids, 55.8 μg / kg of polyunsaturated fatty acids, and 77.9 μg / kg of total unsaturated fatty acids.

[0139] After processing, domestic soybean oil contained 15.505 μg / kg of saturated fatty acids, 21.6777 μg / kg of monounsaturated fatty acids, 62.2518 μg / kg of polyunsaturated fatty acids, and 83.9295 μg / kg of total unsaturated fatty acids.

[0140] The total unsaturated fatty acid content of the processed domestic soybean oil was 83.9295 μg / kg, which was higher than the 77.9 μg / kg of Japanese soybean oil; the total fatty acid content of the processed domestic soybean oil was 99.4345 μg / kg, which was higher than the 92.8 μg / kg of Japanese soybean oil.

[0141] Application Example 4

[0142] The energy tube prepared in Example 2 was used to treat the original Huazhen peanut oil. The changes in the main oil components before and after treatment are shown in Table 2.

[0143] Table 2

[0144]

[0145]

[0146]

[0147] Conclusion: After two treatments and tests: 1. The total saturated fatty acids dropped from nearly 19% to about 18.6; 2. The total unsaturated fatty acids increased from 80.9% to 81.3%; 3. The increase in total fatty acids shows that the torsion field treatment can improve the quality of edible oil, which is beneficial to the human body in improving cardiovascular blood flow, increasing nutrition, facilitating human absorption, and improving edible value.

[0148] The foregoing description is intended only to provide specific embodiments of the present disclosure, intended to enable those skilled in the art to understand and implement the present disclosure. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present disclosure. Therefore, the present disclosure is not intended to be limited to the embodiments described herein, but rather to be construed in the broadest manner consistent with the principles and novel features disclosed herein.

Claims

1. A torsion field quantum energy generating device, characterized in that, The torsion field quantum energy generating device comprises: An oblate cylindrical container, wherein the top of the oblate cylindrical container is provided with a vent, the bottom is provided with a water outlet, the side wall is provided with a water inlet, and the inlet direction of the water inlet of the oblate cylindrical container is tangent to the side wall of the oblate cylindrical container; a first liquid storage tank, the first liquid storage tank being connected to the water inlet of the oblate cylindrical container via a pipe, and the first liquid storage tank being used to store a lanthanide salt solution; a water pump, configured to pass the lanthanide salt solution in the first liquid storage tank into the flat cylindrical container; A first magnet and a second magnet are respectively arranged above and below the oblate cylindrical container, and are used to generate a magnetic field perpendicular to the upper and lower walls of the oblate cylindrical container; A Fibonacci spiral tube, wherein the inner surface of the Fibonacci spiral tube has a Fibonacci spiral, the Fibonacci spiral tube has a first end and a second end, and the first end of the Fibonacci spiral tube is connected to the water outlet of the oblate cylindrical container through a conduit; a valve, disposed on the Fibonacci spiral tube, for controlling the opening and closing of the Fibonacci spiral tube; a second liquid storage tank having a first water inlet, a second water inlet and a water outlet, wherein the first water inlet of the second liquid storage tank is connected to the second end of the Fibonacci spiral tube; a third liquid storage tank having a water inlet, a water outlet, and a vent, wherein the water outlet of the third liquid storage tank is connected to the second water inlet of the second liquid storage tank via a pipe, and a return pump is provided on the pipe for returning the solution in the third liquid storage tank to the second liquid storage tank; Multiple functional ceramic tubes are arranged in parallel and connected in series through pipes, one end of the multiple functional ceramic tubes connected in series is connected to the water outlet of the second liquid storage tank, and the other end is connected to the water inlet of the third liquid storage tank.

2. The torsion field quantum energy generating device according to claim 1, wherein The lanthanide salt solution is a lanthanide acetate solution; And / or, the concentration of the lanthanide salt solution is 1-10 wt%.

3. The torsion field quantum energy generating device according to claim 1, wherein The magnetic field strength generated by the first magnet and the second magnet is 3500-5000 Gauss, and the magnetic field direction is N pole at the bottom and S pole at the top; The water inlet of the flat cylindrical container has a right-hand direction; And / or, the Fibonacci spiral tube is formed by aluminum casting; And / or, the number of the functional ceramic tubes is 3-4.

4. The torsion field quantum energy generating device according to claim 1, wherein The raw materials for preparing the functional ceramic tube include the following components in percentage by mass: Aluminum oxide 15-20%, bentonite 8-10%, kaolin 33-55%, water-soluble polymer 8-10%, binder 7-10%, dispersant 5-10%, volcanic ash 3-5%, trigonal crystal 3-5%, hexagonal crystal 3-5%, spodumene powder 1-3% and lanthanide powder 1-4%.

5. The torsion field quantum energy generating device according to claim 4, wherein The bentonite includes natural bleaching earth and / or sodium bentonite; and / or, the water-soluble polymer comprises one or more of polyvinyl alcohol, polyacrylamide, polyacrylate, starch and gum arabic; and / or, the binder comprises one or more of polyvinyl alcohol and dextrin; and / or, the dispersant comprises one or more of tetramethylammonium hydroxide and ammonia water; And / or, the trigonal crystal includes one or more of citrine, amethyst, ruby, sapphire and tourmaline; And / or, the hexagonal crystals include one or more of emerald, aquamarine and apatite crystals; And / or, the mesh size of the spodumene powder is greater than 200 mesh; and / or, the lanthanide element powder includes one or more of lanthanum, cerium and praseodymium; And / or, the mesh size of the lanthanide powder is above 200 mesh.

6. according to the torsion field quantum energy generation device described in claim 4 or 5, it is characterized in that, The preparation method of the functional ceramic tube comprises the following steps: Aluminum oxide, bentonite and kaolin are calcined at 600-700°C for 3-5 hours according to weight ratio, cooled to room temperature and then crushed, and passed through a 200-mesh sieve to obtain a first raw material powder; calcining the rhombohedral crystal and the hexagonal crystal at 800-900° C. for 3-5 hours according to the weight ratio, cooling to room temperature, grinding, and passing through a 200-mesh sieve to obtain a second raw material powder; The first raw material powder, the second raw material powder, spodumene powder, lanthanide element powder, a water-soluble polymer, a binder, a dispersant and volcanic ash are mixed, and water accounting for 70-100% of the total weight of the raw materials of the functional ceramic tube is added. The mixture is ground in a ball mill for 30-36 hours, allowed to stand to remove floating matter in the water, and then impurities are removed using a magnet. After that, the mixture is dehydrated and pressed into a mud, and the mud is kneaded until the weight percentage of water in the mud is 15-18%, thereby preparing a porcelain mud raw material; The ceramic clay raw material is made into a ceramic clay tube using a mold, and then calcined at 900-1600° C. for 2-3.5 hours, and cooled to obtain the functional ceramic tube.

7. A method for preparing an energy tube, characterized in that: The preparation method is carried out using the torsion field quantum energy generating device according to any one of claims 1 to 6, and the preparation method comprises the following steps: charging a lanthanide salt solution into a first liquid storage tank; Closing the vent of the oblate cylindrical container and the valve of the Fibonacci spiral tube, and introducing the lanthanide salt solution into the oblate cylindrical container through a water pump, so that the lanthanide salt solution rotates around the axis of the oblate cylindrical container; Opening the valve of the Fibonacci spiral tube, allowing the lanthanide salt solution to flow through the second liquid storage tank and the functional ceramic tube in sequence and into the third liquid storage tank; The lanthanide salt solution in the third liquid storage tank is refluxed to the second liquid storage tank through a return pump, and the cycle is repeated multiple times; The processed functional ceramic tube is taken out, cleaned and dried to obtain the energy tube.

8. The preparation method according to claim 7, characterized in that The flow rate of the lanthanide salt solution in the functional ceramic tube is 30-50 ml / s; And / or, the lanthanide salt solution in the third liquid storage tank is refluxed to the second liquid storage tank for 3-5 cycles.

9. An energy tube, characterized in that: The product is prepared by the preparation method according to claim 7 or 8.

10. Use of the energy tube according to claim 9 in preparing hydrogen-rich water, removing pesticide residues, and increasing the fatty acid content of vegetable oil.

Citation Information

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