Hollow structural member for health promotion and method of use thereof

A hollow spherical metal product with activated carbon and ceramic powder generates kinetic energy resonance to enhance health indicators and improve water quality and plant growth, addressing health promotion without artificial energy, as verified by saliva ORP measurements.

JP7830018B1Active Publication Date: 2026-03-16大友庆孝
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2026-03-16

AI Technical Summary

Technical Problem

Existing metal processed products do not effectively promote health and may impose artificial currents or electromagnetic burdens on the body, lacking a natural and effective method to enhance health indicators.

Method used

A hollow spherical metal product containing activated carbon from coconut shells and ceramic fine powder from natural minerals is designed to generate repeated ion vibrations, promoting health through kinetic energy resonance without artificial power or magnetization, using a saliva ORP measuring device to verify health effects.

Benefits of technology

The product effectively reduces oxidative stress as shown by changes in saliva ORP values, enhances water quality, and promotes healthy plant growth, demonstrating its health-promoting benefits without artificial energy sources.

✦ Generated by Eureka AI based on patent content.

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Abstract

We hypothesized that mixing activated carbon fine powder and ceramic fine powder within the hollow spherical structure would enhance the kinetic energy resonance effect, but it is difficult to confirm the health effects of hollow components intended for health promotion. [Solution] A shell is a metal processed product with a hollow structure, and is housed inside the shell. The health benefits of a hollow component for promoting health, characterized by having a mixture of fine powder of activated carbon from the endocarp of coconut shells and fine powder of ceramics produced by firing natural minerals, were verified using a human saliva ORP measuring device, a health indicator.
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Description

Technical Field

[0001] The present invention relates to a hollow member for health promotion and a method of utilizing the same.

Background Art

[0002] In a conventional method for manufacturing a metal processed product, a metal processed product having a groove portion is disclosed by rolling a metal body and removing a shape retaining member after rolling. Or, manufacturing methods for providing a metal processed product capable of reducing the joint portion between metal plates, a heat radiating member, and a developing device in an electrophotographic image forming apparatus are disclosed in Patent Document 1 and Patent Document 2. ...

[0003] Patent Document 1 discloses that, in a method for manufacturing a metal processed product, a metal processed product having a groove portion is manufactured by rolling a metal body with a shape retaining member provided in the groove portion of the metal body and removing the shape retaining member after rolling. Since the removal of the shape retaining member can be easily performed, it is disclosed that manufacturing can be performed in a short time.

[0004] Patent Document 2 discloses that it is possible to provide a metal processed product capable of reducing the joint portion between metal plates, a heat radiating member, and a developing device in an electrophotographic image forming apparatus.

Prior Art Documents

Patent Documents

[0005]

Patent Document 1

Patent Document 2

Summary of the Invention

Problems to be Solved by the Invention

[0006] It aims to provide a metal processed product that has a reducing effect on consumers who use the metal processed product, that is, a metal processed product that leads the state where the body is oxidized to a state of good physical condition in terms of health. [Means for solving the problem]

[0007] The metal product of this invention is manufactured as a hollow spherical metal product, and the hollow structure makes it lightweight and easy to transport to its application. Inside the hollow sphere, activated carbon made from the endocarp of coconut shells and ceramic fine powder made by firing natural minerals such as feldspar, obsidian, and maifan stone are enclosed. It is hypothesized that the activated carbon and ceramic fine powder generate repeated ion vibrations of cathode electron emission, and that these repeated ion vibrations of cathode electron emission are propagated as kinetic energy in all directions, both inside and outside the hollow sphere. The effectiveness of the product of this invention is visualized by measuring the ORP value of saliva, a health indicator, which is a biological response to the biological reaction before and after use. [Effects of the Invention]

[0008] The metal processed products of this invention are not processed products that are used with power supply or manufactured in a way that makes them magnetized, and the primary priority is to avoid placing any burden on the body's health due to artificial currents or electromagnetic forces. The sphere is designed to have a constant center of gravity, making it easy to roll and providing stable movement, while also being able to float in a fluid using airflow or water flow. As mentioned above, the hollow member for health promotion contains activated carbon made from the endocarp of coconut shells and ceramic fine powder made by firing natural minerals such as feldspar, obsidian, and maifan stone. It is hypothesized that the activated carbon and ceramic fine powder generate repeated ion vibrations of cathode electron emission, and that these repeated ion vibrations of cathode electron emission are propagated as kinetic energy in all directions, both inside and outside the hollow sphere structure. To verify this, we used a saliva ORP measuring device, which measures health indicators that arise as a biological response before and after using the processed product of the present invention. The results of the verification of the change in saliva ORP value over time are shown in Tables 1, 3, and 4 below, visually demonstrating its effectiveness.

[0009] Furthermore, as an application of the hollow component for health promotion of the present invention, we conducted verification tests at two poultry farms in Hokkaido to examine the changes over time before and after eating eggs laid by chickens using the metal processed product of the present invention, and also verified the changes over time before and after drinking water from a water tank.

[0010] Next, as an example of its application in paddy fields, the metal processed products of the present invention were used in paddy fields in Tsubame-Sanjo, Niigata Prefecture, and the phenomenon of changes in growth over time was tracked visually. As a result, in paddy fields where the metal processed products of the present invention were used, the water quality was clean, clear, and free from pollution, and the growth of seedlings showed long root spreads and remarkable proliferation of seedlings. On the other hand, in paddy fields where the metal processed products of the present invention were not used, the water quality was polluted with algae growth, and the growth of seedlings showed short root spreads, and growth and proliferation of seedlings were poor. This growth phenomenon is clearly shown in Figure 4, which will be described later.

[0011] According to claim 1, the present invention provides a hollow health-promoting component characterized by comprising a shell, which is a hollow metal processed product, and a mixture contained within the shell, comprising fine powder of activated carbon made from carbonized coconut husk endocarp and fine powder of ceramic made from fired natural minerals. The hollow health-promoting component of the present invention contains a mixture of 25g each of fine powder of environmentally friendly activated carbon material produced from the endocarp of coconut husks, which is a sustainable resource, and fine powder of ceramic made from fired natural mineral materials such as feldspar, obsidian, and maifan stone. The coconut husk charcoal has a true density of 2.0-2.2 g / cm³. 3 The true density of the ceramic is 2.2-3.5 g / cm³. 3The mixture consists of fine powders, and true density refers to the apparent density including the voids between particles. The metal used for the hollow member is stainless steel, with a diameter of 5 cm, and a total weight of approximately 90 g including the contained fine powder. The manufacturing method for a hollow metal product is characterized by the activated carbon and ceramic fine powder resonating the kinetic energy of the repeated ion vibrations of cathode electron emission emitted from within the hollow structure with the sphere of the hollow structure, both inward and outward. It was hypothesized that the resonance of kinetic energy due to the mixture of activated carbon fine powder and ceramic fine powder within the hollow spherical structure would be more effective against air, water flow, wind flow, and weak vibrations that are difficult for humans to perceive. To verify this hypothesis, the results of the implementation verification described in Tables 1, 3, 4, 5, 6, and 7 below were obtained. [Brief explanation of the drawing]

[0012] [Figure 1] Hollow components for promoting health. [Figure 2] An example of its use in a poultry farm. [Figure 3] An example diagram of its use in a water tank. [Figure 4] An example diagram showing how to hold a hollow component for health promotion in both hands. [Figure 5] An example of its use in paddy rice cultivation (see diagram). [Figure 6] An example of how to use a potted rose plant. [Figure 7] Diagram showing the configuration of a human saliva ORP measuring device. [Figure 8] Flowchart diagram of a hollow metal product. [Figure 9] Health status chart. [Modes for carrying out the invention]

[0013] The best mode for carrying out the present invention will be described. In order to demonstrate the effectiveness of using the hollow metal product of the present invention in leading to improved health and physical condition in humans, Using a human saliva ORP measuring device certified as a medical device by the Ministry of Health, Labour and Welfare, it was possible to visualize the health effect of reducing the body received from the use of the processed product of the present invention by the human saliva ORP value. And, the results of the verification are shown in Table 1 and Table 3, and it was proved that the reduction significance shown by chance in the implementation verification by a plurality of monitors was not accidental. When utilizing the processed product, the size of the metal processed product with a hollow structure of the present invention is 5 cm in diameter, the shape is a sphere, the weight is about 90 g, and the metal material is stainless steel so that it is lightweight and easy to carry. Due to the spherical shape, it was considered that the resonance of kinetic energy was more effective by mixing the fine powder of coconut shell activated carbon and the fine powder of ceramic in the hollow structure of the sphere due to air, water flow, wind flow, and weak vibration that is difficult for humans to perceive.

[0014] In the implementation verification, the temporal change of the human saliva ORP of the biological reaction before and after eating and drinking with chicken eggs and drinking water obtained by using the metal processed product with a hollow structure and spherical shape of the present invention, and the temporal change of the growth record by visual observation in the growth of paddy rice cultivation and rose pot cultivation were verified. As a result, the methods used to prove the clear effectiveness in the visual daily change observation of the human saliva ORP value of the biological reaction and the growth records of rice cultivation and rose are explained in FIGS. 1 to 8.

[0015] FIG. 1 explains the manufacturing process diagram of a metal processed product with a hollow structure and spherical shape. It is 5 before processing the metal of the sphere with a hollow structure, and it is the upper hollow shape 1 of the semi-circle to be made into a spherical shape. In the lower hollow shape 2 of the semi-circle, in advance, the fine powder 4 of coconut shell activated carbon obtained by carbonizing the endocarp of the coconut shell and the fine powder 3 of ceramic obtained by firing natural minerals are mixed and stored, and it is 9 at the location where the upper part of the semi-circle and the lower part of the semi-circle are welded and joined. The welded and joined sphere has a hollow structure and becomes 6. Subsequently, the entire outer surface of the welded and joined hollow structure 8 of the sphere is mirror-polished, and the fine powder 4 of coconut shell activated carbon obtained by carbonizing the endocarp of the coconut shell and the fine powder 3 of ceramic obtained by firing natural minerals are mixed and stored inside the hollow structure to become the finished product 7.

[0016] Figure 2 illustrates an example of the utilization of a spherical metal workpiece with a hollow structure in a poultry farm. Water 10 flowing into the water storage tank 11 (the shape and container material are not limited) from the water source 10 drawn into the poultry farm submerges the metal workpiece 8, and the water 10-a obtained thereby is made to flow into the water line of the chicken's drinking area so that a large number of chickens 13 can drink it efficiently. The enlarged view 15 of the finished product of the metal workpiece is a finished product 7 obtained by mirror-polishing the outer surface of the spherical body of the welded hollow structure 8 and mixing fine powder 4 of an environmentally friendly activated carbon material made from the endocarp of coconut shells, a sustainable resource, and ceramic fine powder 3 obtained by firing natural mineral materials such as feldspar, obsidian, and biotite, and is utilized for use in the water line and food line of the chicken's drinking area. The metal workpiece 8 is placed in the chicken feed 14 stored in a container 12 (the shape and container material are not limited) for storing the chicken feed, and after stirring the chicken feed 14 in the container 12, after more than 30 minutes have passed, the chicken feed 14 scattered on the chicken feeding area line is made to be eaten efficiently by a large number of chickens 13. As a result of verifying the eggs laid by the chickens that ate and drank in this way using a monitor, as shown in Table 1 described later, as a biological reaction before and after eating the eggs obtained using the metal workpiece 8, the comparison of the human saliva ORP value showed a clear redox effect.

[0017] Figure 3 illustrates an example of the utilization in a water tank. After opening the lid 16 on the upper part of the water tank 17 and filling the water tank 17 (the shape and container material are not limited) with water, the spherical metal workpiece 8 with a hollow structure is submerged for more than 10 minutes. As a result of verifying the water obtained from the drain opening 18 of the water tank 17 using a monitor, as shown in Table 3 described later, as a biological reaction before and after drinking the water obtained using the metal workpiece 8, the comparison of the human saliva ORP value showed a clear redox effect.

[0018] Figure 4 illustrates an example of touching the hollow member for health promotion by enclosing it with both hands, as shown in Figure 52. The hollow member for health promotion of the present invention is touched by the right hand 53 and left hand 54, which are human body parts, using the palms 56 of the right hand and the palms 57 of the left hand, and further using the pads of the fingers 58 of both hands, so as to enclose the hollow member for health promotion 8 with the palms and fingertips of both hands. The hollow member is a finished product 8, containing a mixture of environmentally friendly coconut stalk activated carbon fine powder 4 and ceramic fine powder 3 obtained by firing naturally derived mineral materials such as feldspar, obsidian, and maifan stone. The ORP value, which is the oxidation-reduction potential, is measured by taking saliva from a subject after they have touched the subject's palms and fingertips, and the change in the ORP value is determined. The ORP value after the subject's body parts have touched the member is compared to the ORP value before touching, and it is confirmed whether the ORP value has decreased in the negative direction compared to the ORP value before touching. We focused on the idea that the health effects of the hollow member 8 could be understood by measuring them with a human saliva ORP measuring device. We then considered that the health-promoting hollow member 8 provides beneficial effects on health in all situations. By touching it to the palms and fingertips of both hands to determine if it is good for the body, even without eating or drinking, the unique frequencies emitted from the health-promoting hollow member 8 are instantly transmitted to the brain via the transcutaneous respiration function of the palms through the skin and mucous membranes. The stimulation from the brain is instantly absorbed by the blood and lymphatic systems, allowing the body to select frequencies—whether vibration or electromagnetic waves—that are comfortable for it. The usefulness of this method is shown in Table 4 below.

[0019] Figure 5 illustrates an example of its application in paddy rice cultivation. This is the water inlet 20-a for drawing water into the paddy field. The application of the metal processed product 8 of the present invention is an example in which the daily changes in growth were visually observed in four locations in a paddy field with an area of ​​approximately 2000 square meters, and the results are clear visual observations made one month after planting seedlings. The reason for visually observing the changes in growth over time in two paddy fields where the metal processed product 8 was used and in two paddy fields where it was not used was to prove that the difference in growth results was not merely a coincidence, and to verify the implementation in four paddy fields. This is the location of the water inlet 20-a for drawing water in, and the metal processed product 8 is immersed in this water inlet 20-a so that the resonance of the frequency kinetic energy of the activated carbon fine powder and ceramic fine powder within the spherical hollow structure with the slight vibration caused by the water flow is more effective. This is the outflow water inlet 20-b for draining water from the paddy field. In one paddy field, the metal processed product 8 was placed in a total of six locations: one in the center of the field, one at each of the four corners, and one at the water inlet 20-a. These were secured in hemp mesh bags to prevent them from being washed away by wind and rain, and tied to support poles. Visual observations of the changes in growth over time showed that in the paddy fields where the metal processed product 8 was used, the roots of the seedlings were thick and long as shown in 21-a, the water quality was clear and transparent with no pollution as shown in 21-b, the number of seedlings increased from 3-4 to more than 10 as shown in 21-c, and the water in the paddy field remained clear. As shown in 21-g, the propagated seedlings grew so densely that the gaps between the seedling rows were no longer visible, demonstrating remarkable growth. On the other hand, as shown in 21-d, the roots of the seedlings in the paddy field where the metal processed product 8 was not used were short and thin, the water quality was poor with algae proliferation as shown in 21-e, and the water lacked clarity due to water pollution. As shown in 21-f, no propagation was observed in the seedlings planted in groups of 3-4. There was no significant change in the propagation of seedlings, and the gaps between the seedling rows were large as shown in 21-h. By utilizing the metal processed product 8 of the present invention, clean water flowing from the mountains entered the paddy field for the verification through 20-a, and the paddy field for the verification was not polluted, and clear, clean water quality was clearly demonstrated by visual observation. The reason for using the metal processed product 8 of the present invention in paddy rice cultivation is that the period from planting to harvesting is long, spanning six months, and it is not possible to confirm the effectiveness of the reduction effect by consuming the harvested rice in a short period of a few weeks, like with chicken egg production.

[0020] Figure 6 illustrates an example of its use in potted roses. It shows the results of visual observation of the growth of roses planted in terracotta pots 19-d. The roses planted using the metal processed product 8 have healthy leaves and beautifully bloomed flowers 19-a. The processed product 8 was attached to the base of the potted rose as shown in 19-e, and its growth was visually observed. The roses did not wilt or fall off. Powdery mildew control is important when planting roses. On the other hand, as shown in the photograph, in potted plants that do not use the metal processed product 8, powdery mildew occurs as shown in the illustrations 19-b or 19-c. As shown in rose powdery mildew 19-b, white powdery spots appear on the surface of the leaves, and as the symptoms progress, the entire leaf may turn white and wither. Flower bud formation is incomplete, and if branches affected by powdery mildew are not cut off, the infection will spread, making beautiful blooms impossible. The finished product 7 is made by mixing and storing fine powder 4 of environmentally friendly activated carbon material manufactured from the inner pericarp of coconut shells, a sustainable resource, with fine ceramic powder 3 made by firing naturally derived mineral materials such as feldspar, obsidian, and maifan stone. Thus, the difference in effectiveness was clearly demonstrated through practical verification on multiple potted roses, so that the effectiveness of the metal processed product would not be questioned as merely a coincidence.

[0021] Figure 7 shows a human saliva ORP measuring device in which the indicator electrode used in the method for visualizing biological reactions is a pure gold electrode. This allowed for accurate reception of information from the saliva, which is the sample solution of the subject in the present invention. The improved and evolved human saliva ORP measuring device 36, with its improved indicator electrode (pure gold electrode), enabled the visualization of the health effects of using the metal processed product 8 of the present invention using the ORP value, a health indicator. The human saliva ORP measuring device 36 has three measurement boxes 42, each with the same configuration between the two electrodes, a reference electrode 32 and an indicator electrode 26. The enlarged view of the suction box shows the configuration between the reference electrode (silver-silver chloride) 32 and the indicator electrode (pure gold electrode) 26. The two opposing reference electrodes 32 and indicator electrode 26 calculate the electrolyte concentrations of all salivary components and the activity ratio of oxidized and reduced forms, and measure the potential difference between oxidation and reduction. A KCl solution 34 facilitates the exchange of positive and negative electrons of the saliva ORP between the saliva 23 impregnated on the cotton swab and the reference electrode opposite it. A liquid junction 30, which is the contact point between the saliva-impregnated and wet cotton swab 23, draws a minute amount of KCl solution 34 into the liquid junction 30 via capillary action, and a positive and negative electron exchange occurs between the two electrodes, the reference electrode 32 and the indicator electrode 26, via the KCl solution 34. The oxidation-reduction potential (mV) potential difference is calculated and the measurement result is displayed on the liquid crystal display 39. This is a tank lid 33 for storing the KCl solution, a shaft 22 for a cotton swab to be impregnated with saliva, a cotton portion 23 of the saliva-impregnated cotton swab, a sample tank base 24 into which the saliva-impregnated cotton swab is inserted, a 25 where the head portion of the saliva-impregnated cotton swab 23 and the indicator electrode 26 make contact, and the indicator electrode 26 is fixedly bonded to the bottom 29 of the sample tank. This is a point 27 where the indicator electrode 26 and the lead wire 28 are bonded together; this is a point 31 where the reference electrode 32 and the lead wire 28 are bonded together; this is an oxidation-reduction potential mV measuring unit 35 that calculates the potential difference by the exchange of positive and negative electrons between the reference electrode 32 and the indicator electrode 26 using a KCl solution; this is a measurement start button 38; this is a measurement result print button 37; this is a liquid crystal unit 39 that displays the measurement result calculated by the oxidation-reduction potential mV measuring unit 35; this is an liquid crystal unit 40 that displays the year and time; this is a thermal print of the measurement result; and the configuration between the reference electrode and the indicator electrode is provided in three measurement boxes 42.

[0022] Figure 8 is a flowchart illustrating the application of the metal processed product of the present invention. The material 45 enclosed within the hollow metal processed product is activated carbon made from the endocarp of coconut shells and ceramic fine powder obtained by firing natural minerals such as feldspar, obsidian, and maifan stone. The measuring device used to confirm the health effects of using the hollow spherical metal processed product is a human saliva ORP measuring device 46. The processed shapes 47 used for the applications of the hollow metal processed product of the present invention are spherical, cubic, bottle-shaped, conical, elliptical, cylindrical, pyramidal, or dome-shaped. Applications include soil application 48, water purification application 49, livestock and pet breeding application 50, and it is hoped that it will contribute to the purification of the natural environment.

[0023] Figure 9 is a chart showing the numerical representation of human saliva ORP health status as a health indicator, published in a paper by Igaku-Shoin, where the oxidation-reduction boundary range value for human saliva is 40-50 mV, indicated by 1-a. Thus, the health effects of using the metal processed product of the present invention can be determined by the following: If the ORP value of the human saliva of the subject is 40 mV or less within the oxidation-reduction boundary range of human saliva, the subject's body is reduced and in good health. If it is 50 mV or more, it can be determined whether the subject's body is oxidized and in poor health. If the saliva ORP value falls within the oxidation-reduction boundary range, follow-up observation is performed by comparing the initially measured ORP value of the subject's saliva with the ORP value of the subject's saliva after a predetermined time has elapsed. If the ORP value after the predetermined time has elapsed, it can be determined that the subject is in good health if it has decreased, and in poor health if it has increased. [Examples]

[0024] The examples in Table 1 utilize hollow components for health promotion, which are spherical metal processed materials. The hollow spheres are shells, and within these hollow components for health promotion, equal amounts of 25g each are encapsulated: fine powder of environmentally friendly activated carbon material manufactured from the inner pericarp of coconut shells, a sustainable resource, and fine ceramic powder produced by firing naturally derived mineral materials such as feldspar, obsidian, and maifan stone. The true density of the coconut shell charcoal is 2.0~2.2g / cm³. 3 The true density of the ceramic is 2.2-3.5 g / cm³. 3 The mixture is a fine powder, and true density refers to the apparent density including the voids between particles. The metal of the hollow member is stainless steel, with a diameter of 5 cm, and a total weight of approximately 90 g including the contained fine powder. Using the hollow member for health promotion of the present invention in a poultry farm, two types of chicken eggs, red-shelled and white-shelled, were collected from subjects before and after eating boiled eggs. Long-term measurements over 90 minutes using a human saliva ORP measuring device showed a clearly stronger reducing effect compared to before eating, as shown in Table 1.

[0025] [Table 1]

[0026] In the examples shown in Table 2, commercially available eggs that did not utilize the hollow component for health promotion of the present invention were purchased, and saliva samples were collected from subjects before and after eating boiled eggs of two types: red-shelled eggs and white-shelled eggs. The 90-minute long-term measurement using a human saliva ORP measuring device showed a clear difference in saliva ORP values ​​compared to the values ​​before eating, compared to the saliva ORP values ​​shown in Table 1. In the verification before and after eating the aforementioned commercially available eggs, the saliva ORP value 1 minute after eating showed a slight reducing tendency compared to the saliva ORP value before eating, but as time progressed, the saliva ORP value showed an oxidizing tendency compared to the saliva ORP value before eating. The comparison between Table 1, which was verified by eating eggs laid using the hollow component of the present invention, and Table 2, which was verified by eating commercially available eggs that did not use the hollow component, clearly demonstrated the effectiveness of the reducing effect.

[0027] [Table 2]

[0028] In the examples shown in Table 3, the implementation was verified using the metal processed product as drinking water in a water tank and using commercially available mineral water, with the help of monitors. The results of comparing these two types of drinking water showed a clear difference in values ​​compared to saliva ORP values ​​when measuring the ORP values ​​over a 90-minute period using a human saliva ORP analyzer, after collecting saliva from subjects before and after drinking the water from the water tank and the mineral water, respectively. Subjects who drank water from the water tank using the metal processed product showed reduced ORP values ​​immediately after drinking, and a strong reducing ORP value was maintained even after 90 minutes. On the other hand, subjects who drank mineral water showed a slightly reducing ORP value compared to the ORP value before drinking, but it was shown that over time the value increased towards oxidation compared to before drinking.

[0029] [Table 3]

[0030] In the examples shown in Table 4, the time-dependent changes before and after holding a hollow sphere in the palms of both hands were verified. It was hypothesized that the frequency emitted from the hollow sphere would be instantly transmitted to the brain via the skin and mucous membranes through the transcutaneous respiration function of the palms and fingertips of both hands, and that the stimulation from the brain would be instantly absorbed by the blood and lymphatic systems, allowing the body to select whether the frequency, vibration, or electromagnetic wave is comfortable or not. This would allow for a simple confirmation of the health effects through the transcutaneous respiration function without drinking water obtained by immersing the hollow sphere in water. Therefore, in a verification of the time-dependent changes when the hollow sphere was held in the palms and fingertips of both hands for 2 minutes, it was shown that the saliva ORP value did not return to the value before contact, but rather decreased to the reducing side after 5 minutes and 30 minutes. Furthermore, comparing the verification results in Tables 3 and 4 with those in Tables 5, 6, and 7 described later, the comparison of activated carbon made from the endocarp of coconut shells and ceramic fine powder made from fired natural minerals such as feldspar, obsidian, and maifan stone with the salivary ORP values ​​of those who drank the drinking water in Tables 5, 6, and 7, which were in direct contact with water, shows that, as shown in Tables 3 and 4, the activated carbon made from the endocarp of coconut shells and ceramic fine powder made from fired natural minerals such as feldspar, obsidian, and maifan stone, which were enclosed within the hollow member, were not immersed in water. As considered, the resonance of the kinetic energy of the activated carbon fine powder and the ceramic fine powder within the hollow structure produced a greater effect. Consequently, the salivary ORP values ​​after drinking water obtained using the sphere of the hollow member, or after contact with a part of the human body, clearly showed that it led the body in a reducing direction.

[0031] [Table 4]

[0032] In the example shown in Table 5, only fine activated carbon powder made from the endocarp of coconut shells was placed in a paper filter, commercially available mineral water was poured into the paper filter, and saliva samples were collected from subjects before and after drinking the resulting water. The 60-minute time-lapse measurements using a human salivary ORP measuring device are shown in Table 5. As can be seen, the salivary ORP values ​​of the subjects shown in Table 5 do not return to the pre-drinking values ​​and show a reduction trend. However, when compared with the salivary ORP values ​​of subjects who drank water using the hollow spherical member shown in Table 3, the difference in values ​​clearly shows the effect of the coconut stalk activated carbon powder and ceramic powder mixture, which are enclosed within the hollow spherical member and not immersed in water.

[0033] [Table 5]

[0034] In the example shown in Table 6, only ceramic fine powder, obtained by firing naturally derived mineral materials such as feldspar, obsidian, and maifan stone, was placed in a paper filter. Commercial mineral water was poured into the paper filter, and saliva samples were collected from subjects before and after drinking the resulting water. The 60-minute time-lapse measurements, taken using a human saliva ORP measuring device, are shown in Table 6. As can be seen, the saliva ORP values ​​of the subjects shown in Table 6 do not return to the pre-drinking values ​​and show a reduction trend. However, when compared with the saliva ORP values ​​of subjects who drank water using the hollow spherical component shown in Table 3, the difference in values ​​clearly shows the effect of the coconut stalk activated carbon fine powder and ceramic fine powder mixture, which are enclosed within the hollow spherical component and not immersed in water.

[0035] [Table 6]

[0036] In the examples shown in Table 7, a mixture of activated carbon fine powder made from the endocarp of coconut shells and ceramic fine powder obtained by firing naturally derived mineral materials such as feldspar, obsidian, and maifan stone was placed in a paper filter. Commercial mineral water was poured into the paper filter, and saliva samples were collected from subjects before and after drinking the resulting water. The 60-minute time-lapse measurements using a human saliva ORP measuring device are shown in Table 7. From these results, a difference in saliva ORP values ​​was observed in Tables 5, 6, and 7 when the coconut stalk fine powder and ceramic fine powder enclosed in the hollow spheres shown in Tables 1, 3, and 4 were used without being immersed in water, compared to when the water obtained after immersion in water was consumed. Therefore, the effectiveness of the hollow member for health promotion and its utilization method of the present invention was clearly demonstrated.

[0037] [Table 7]

[0038] This section explains the reasons for developing the hollow component for health promotion and its utilization method according to the present invention. The hollow metal product has a spherical shape, and inside it is a mixture of fine powder of environmentally friendly activated carbon material manufactured from the inner pericarp of coconut shells, a sustainable resource, and fine ceramic powder obtained by firing naturally derived mineral materials such as feldspar, obsidian, and maifan stone. The spherical shape of the hollow structure allows the repeated ion vibrations of cathode electron emission emitted from within the hollow structure by the sphere to resonate with kinetic energy in all directions, both inside and outside the hollow structure. By creating a spherical metal product with this characteristic hollow structure, the fine powder of activated carbon material from coconut shells and the fine ceramic powder obtained by firing naturally derived mineral materials contained within the hollow structure are not immersed in water. Within the aforementioned hollow structure, as a hollow component for promoting health and its utilization method, we considered that utilizing natural principles, the kinetic energy resonance achieved by mixing fine powder of coconut stalk activated carbon and fine ceramic powder within the spherical hollow structure would be more effective, in response to air, water flow, wind flow, and weak vibrations that are difficult for humans to perceive. We considered that manufacturing products by artificially adding electrical energy or magnetizing metal products would be a burden on the natural environment. In order to prove the effectiveness of our focus on manufacturing that is closer to nature, we obtained the results of the implementation verification shown in Tables 1 to 7, and further, in Figures 5 and 6, which were obtained through visual observation.

[0039] The shape of the hollow metal product is not limited to a spherical shape, but is characterized by having a hollow structure inside the shape, and being spherical, square, rectangular, circular, cylindrical, cubic, bottle-shaped, rhombic, shallow, deep, conical, elliptical, cubic, cylindrical, pyramidal, or dome-shaped. It was considered that the kinetic energy resonance of the frequency of the activated carbon fine powder and ceramic fine powder inside the hollow structure would be more effective, and the results of the implementation verification with a spherical shape as an example are shown in Tables 1, 3, and 4, as well as with commercially available eggs that do not use the metal product of the present invention (Table 2) and with commercially available drinking water (Table 3). Furthermore, the effectiveness is shown in Figures 1 to 9.

[0040] The selection of materials for metal processing in this invention prioritized metals with excellent corrosion resistance that are resistant to rusting and corrosion. Gold, platinum, titanium, and stainless steel were considered as potential metal materials. However, from the perspective of price, corrosion resistance, and strength, stainless steel was chosen among the candidate metals due to its low cost and superior corrosion resistance and strength. If the aforementioned metal candidates become cheaper than stainless steel, we would like to add gold, platinum, and titanium to the metal processing materials of this invention. Therefore, the metal processing material is not limited to stainless steel. This is because titanium is lightweight, strong, and highly corrosion-resistant; pure gold and platinum are resistant to chemicals such as acids and alkalis, and are resistant to rusting and corrosion. Depending on the application, it may be necessary to use metal processing materials even if they are more expensive. The saliva ORP values ​​before and after eating shown in Tables 1 and 3, the saliva ORP values ​​before and after holding the hollow member in both hands on a part of the human body shown in Table 4, and the material used in the practical verification by visual observation shown in Figures 4 and 5 is stainless steel.

[0041] In a method of utilizing metal processed products, the processed product is a hollow spherical metal processed product, and the target applications of the metal processed product are soil improvement, such as improvement of rice paddy soil, vegetable field soil, fruit field soil, tea plantation soil, botanical garden soil, home garden soil, road soil, rooftop planting soil greening, park soil improvement, soil for growing ornamental plants, soil for growing bonsai, schoolyard soil improvement, or soil improvement for residential construction sites. This is a method of utilizing hollow components for health promotion, and includes examples of use in a poultry farm (Figure 2) and water in a water tank (Figure 3). The effectiveness of the metal processed product of the present invention has been demonstrated in the application examples, specifically in the rice paddy field shown in Figure 5 and the potted rose planting example shown in Figure 6, suggesting that it can be used for soil improvement in a wide range of situations.

[0042] In this method of utilizing metal processed products, the processed product is a hollow spherical metal processed product, and the target applications for the metal processed product are water purification, specifically for use in water treatment plants, water supply facilities, water pipes, water for raising tropical fish, water for raising freshwater fish, water for hydroponics, water in water tanks, artificial lakes (including dam lakes), beaches, swimming pool facilities, aquarium water, tap water, hot spring water, agricultural water, industrial water, river water, or clear stream water in mountain villages. This method of utilizing hollow components for health promotion is characterized by its use in these applications. As shown in Tables 1 and 3, which display saliva ORP values ​​before and after consumption, the effectiveness of the metal processed product of the present invention has been demonstrated in the cases of use in chicken drinking water and feed, rice paddy fields, and water tank water, where the product is consumed. Therefore, it is believed that it can be used to improve water quality in a wide range of situations.

[0043] In this method of utilizing metal processed products, the processed product is a hollow spherical metal processed product, and the target of use of the metal processed product is to use it in animal husbandry, specifically for water purification required for raising livestock, dogs, cats, or aquatic animals. As demonstrated in the examples of use in drinking water and feed for chickens at a poultry farm in Figure 2 and in the example of use in water tanks in Figure 3, the effectiveness of the metal processed product of the present invention in terms of consumption has been shown, suggesting that it can be used to improve the health of livestock, pets, and aquatic animals in all kinds of situations. Furthermore, it is believed that it can be used to help maintain the health of all animals.

[0044] In this method of utilizing metal processed products, the processed product is a hollow spherical metal processed product, and the target of use of the metal processed product is to use it as an agricultural product by placing it inside storage boxes or containers for vegetables, fruits, rice, wheat, or processed foods. This method of utilizing hollow components for health promotion is considered to be useful in producing food that nourishes the body.

[0045] In this method of utilizing metal processed products, the processed products are hollow metal processed products, and the target of use for these metal processed products is to use them for plant growth, specifically by placing them at the base of bonsai, potted plants, ornamental plants, medicinal plants, or trees and flowers in botanical gardens. This method of utilizing hollow components for health promotion is thought to be useful for mental and visual healing and for purifying the air in indoor spaces. Fresh flower petals, fresh leaves, flower arrangements, fresh leaves (without extracting essential oil), fresh leaf compresses, or fragrance.

[0046] In this method of utilizing metal processed products, the processed product is a hollow metal processed product, and the target of use of the metal processed product is to utilize the freshness of freshly cut plants, such as fresh flower petals, fresh leaves, ikebana, flower arrangements, fresh leaf compresses without extracting essential oils from fresh leaves, or as an aroma, by bringing the freshly cut plants into contact with the hollow components for health promotion. As shown in the example of use of potted roses in Figure 6, in ikebana and flower arrangements, fresh flowers absorb water well and their beauty lasts longer. Freshly cut herb leaves can be used to utilize their fragrance and components, and it is thought that this helps to preserve the beauty of the plants and the healing effects they possess.

[0047] The applicant for this invention has already filed the following patents to confirm the effects on human health (for example, Patent No. 6142122, Patent No. 6251878, Patent No. 6253171, Patent No. 6454836, Patent No. 7065236, Patent No. 7065247, Patent No. 7282990, and Patent No. 7336166). [Industrial applicability]

[0048] The metal processed products of this invention utilize natural principles, and it is hypothesized that the kinetic energy resonance of activated carbon fine powder and ceramic fine powder within the spherical hollow structure is more effective in response to air, water flow, wind currents, and weak vibrations that are difficult for humans to perceive. Rather than using processed products that operate on electricity or products that are magnetized, this invention aims to avoid manufacturing that burdens the natural environment, and instead contribute to a healthier lifespan by positively impacting the health of consumers and the manufacturers themselves. Improving pollution in the natural environment is an urgent task, and this invention is considered to be of great benefit. [Explanation of Symbols]

[0049] 1. A semicircular, hollow upper section. 1-a The oxidation-reduction boundary of physical condition. 2. The lower half of the semicircle is hollow. 3. Fine ceramic powder. 4. Fine powder of activated carbon from coconut stalks. 5. Before it becomes a hollow sphere. 6. Hollow structure joined by welding. 7. The mirror-polished, hollow sphere is complete. 8. A hollow structure welded together, containing fine powder of coconut stalk activated carbon and fine powder of ceramic. 9. Points where welding will be performed. 10. A water source that draws water into the poultry farm. 10-a Water obtained by immersing the metal product in the water that has flowed in. 11. Water storage tank. 12. A container for storing chicken feed. 13. A large number of chickens. 14. Chicken feed. 15. Enlarged view of a finished metal product. 16. Water tank lid. 17. Water stored in the water tank. 18. Water tank drain tap. 19-a A rose in full bloom. 19-b Powdery mildew causes spots on the leaves. 19-c An illustration of leaves that have withered due to advanced powdery mildew. 19-d Unglazed pot. 19-e Use hollow components by placing them at the base of rose seedlings. 20-a Water inlet for drawing in water. 20-b A water outlet for draining water. 21-a Seedlings grown in paddy fields using hollow components have thick and long roots. 21-b Rice paddies using hollow components have clear, transparent water with no pollution. 21-c The number of rice seedlings in paddy fields using hollow components has increased to more than 10. 21-d Seedling roots in paddy fields where hollow members are not used are thin and short. 21-e In rice paddies where hollow components are not used, the water quality is polluted and lacks clarity due to the proliferation of algae. 21-f No change in the proliferation of rice plants in paddy fields without the use of hollow components. 21-g In paddy fields using hollow components, seedlings have proliferated and the rows of seedlings are densely packed. 21-h No change in seedlings in paddy fields without hollow members; the gaps between seedling rows are wide. 22. The shaft of a saliva-impregnated cotton swab. 23. The cotton portion of a saliva-soaked cotton swab. 24. The base of the sample tank into which the cotton swab is inserted. 25. The head portion of the indicator electrode (pure gold electrode) that the saliva-impregnated cotton swab comes into contact with. 26 Indicator electrode (pure gold electrode). 27. The point where the indicator electrode and lead wire are connected. 28 Lead wires. 29. The bottom of the sample tank. 30 Liquid junction. 31. Points to be glued and joined. 32. Reference electrode (silver-silver chloride). 33. Tank lid for storing KCl solution. 34 KCl solution. 35. Redox potential mV calculation and measurement unit. 36. Human saliva ORP measuring device. 37. Print measurement results button. 38. Start button for measurement. 39. LCD display showing measurement results. 40. LCD display showing the year and time. 41. Thermal print of measurement results. 42 Measurement box. 45. A material to be embedded inside a hollow metal product. 46. ​​Confirmation method using a human saliva ORP measuring device. 47. Processing shapes used for the application of hollow metal processed products. 48. Utilization of hollow metal processed products in soil. 49. Utilization of hollow metal components for water purification. 50. Utilization of hollow metal components in livestock and pet farming. 52 An example diagram showing how to hold a hollow member in your hands. 53. The right hand, a part of the human body. 54. The left hand, a part of the human body. 56. The palm of the right hand, a part of the human body. 57. The palm of the left hand, a part of the human body. 58. The pads of the fingers on both hands.

Claims

1. A shell structure formed by joining two semicircular hollow shells, which are metalworking products, and Inside the aforementioned shell The material is a fine powder of activated carbon made from the carbonized inner pericarp of coconut shells, It contains a material made of finely powdered ceramics produced by firing feldspar, obsidian, and maifan stone. The materials enclosed within the aforementioned shell are not directly exposed to air or water. A hollow structural member for promoting health, characterized in that the spherical shell allows cathode electrons emitted from the coconut stalk activated carbon powder and cathode electrons emitted from the fine powder of ceramics obtained by firing feldspar, obsidian, and maifan stone to propagate kinetic energy through the hollow spherical shell in all directions due to the ionic vibration of cathode electrons.

2. Using a human saliva ORP oxidation-reduction potential (ORP) measuring device to confirm the impact on health, The oxidation-reduction potential of the subject's saliva was measured. Before the subject touches or uses the object of the hollow member for health promotion, This is the oxidation-reduction potential obtained by collecting saliva from subjects after they have touched or used the product. Measure the ORP value and determine its change. By confirming whether the change in the ORP value increases in the negative potential direction, The health-promoting hollow structural member according to claim 1, characterized in that the health-promoting effect is confirmed by determining whether the aforementioned object leads to a reduction in the body, resulting in good health, or leads to an oxidation in the body, resulting in poor health.

3. The hollow structural member for promoting health according to Claim 1, characterized in that the material of the hollow shell is gold, platinum, titanium, or stainless steel.

4. In a method for utilizing the hollow structural member for health promotion described in claims 1 to 3 above, A method for utilizing a hollow structural member for health promotion, characterized by its use in soil applications such as improving rice paddy soil, vegetable field soil, fruit orchard soil, tea plantation soil, botanical garden soil, home garden soil, road soil, rooftop planting soil greening, park soil, soil for growing ornamental plants, soil for growing bonsai, schoolyard soil improvement, or soil improvement for residential construction sites.

5. A method for utilizing the hollow structural member for health promotion described in claims 1 to 3, characterized in that it is used for water purification in water treatment plants, water supply facilities, water pipes, water for raising tropical fish, water for raising freshwater fish, water for hydroponics, water in water tanks, artificial lakes (including dam lakes), beaches, water for swimming pool facilities, water for aquariums, tap water, hot spring water, agricultural water, industrial water, river water, or clear stream water in mountain villages.

6. A method for utilizing a hollow structural member for health promotion according to claims 1 to 3, characterized in that, as an application for breeding, it is used for water purification required for the breeding of livestock, dogs, cats, or fish and shellfish.

7. A method for utilizing a hollow structural member for health promotion according to claims 1 to 3, characterized in that, as an application of agricultural products, the member is placed inside a storage box or container for vegetables, fruits, rice, wheat, or processed foods.

8. In the method for utilizing the hollow structural member for health promotion described in claims 1 to 3, the target of the metal processed product is: A method for utilizing a hollow structural member for health promotion, characterized by its use in plant growth, such as by placing it at the base of bonsai, potted plants, ornamental plants, medicinal plants, or trees and flowers in botanical gardens.

9. In the method for utilizing the hollow structural member for health promotion described in claims 1 to 3, the target of the metal processed product is: A method for utilizing a hollow structural component for health promotion, characterized by using freshly cut plants by bringing them into contact with the material, such as using fresh flower petals, fresh leaves, flower arrangements, or fresh leaf compresses without extracting essential oils from the leaves, or using them as an aroma.

Citation Information

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