Stone meteorite soaking water and water quality characteristics and efficacy thereof
Meteorite-infused water is prepared by soaking meteorite raw materials with room temperature cold water to remove harmless heavy metals. This solves the safety risks and lack of quality standards of meteorite-infused water products, provides functional drinking water with clear health benefits, and fills a market gap.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 陈山山
- Filing Date
- 2026-04-02
- Publication Date
- 2026-06-02
Smart Images

Figure CN122126949A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of natural meteorite water treatment technology, specifically to a type of water soaked in stony meteorite and its water quality characteristics and effects. Background Technology
[0002] Natural meteorites are natural solid materials originating from outer space. During their interstellar formation and fall, they acquire a variety of cosmogenic characteristic elements, natural minerals, and unique isotopic compositions not found in Earth's native water bodies. Some types of stony meteorites (including tektites) can slowly, controllably, and safely release water-soluble minerals and trace elements into water through room temperature soaking, thereby creating functional water bodies with special water quality characteristics. This provides a new direction for the development of high-end functional drinking water using natural raw materials.
[0003] Currently available drinking water, purified water, and natural mineral water are limited by the nature of their water sources and industrial processing techniques. They generally suffer from a lack of diverse mineral types and functional active ingredients, and can only meet basic drinking needs. They cannot meet the diverse and high-end demands of today's consumers for healthy and functional drinking water.
[0004] Currently, existing technologies for meteorite water generally suffer from the following technical deficiencies: First, the meteorite raw materials are not rigorously screened for harmful heavy metals, posing a risk to drinking safety. Second, most are prepared using heating, boiling, and high-temperature extraction methods, which easily damage the structure of natural minerals and active ingredients in the water, resulting in the loss of natural properties. Third, there are no systematic and clear limitations on the conventional water quality indicators, characteristic identifying components, and isotopic markers of meteorite water, leading to a lack of unified product quality standards. Fourth, the health benefits corresponding to the functional components of meteorite water are not clearly defined, lacking scientific application evidence. Meanwhile, there are currently no standardized meteorite water products on the market made by soaking non-harmful heavy metal stony meteorites (including tektites) in room-temperature cold water. The unique water quality properties of such meteorite water—low impurities, high metasilicic acid, and the presence of cosmic-characteristic elements—can effectively compensate for the shortcomings of ordinary drinking water, possessing significant research and industrial application value. This invention aims to address the above-mentioned deficiencies in the existing technology, providing a safe, compliant, quality-controllable, and efficacy-clearly defined stony meteorite-infused water product, its preparation method, and its application. Summary of the Invention
[0005] The purpose of this invention is to overcome the above-mentioned defects of the prior art and provide a meteorite-infused water and its water quality characteristics and efficacy. It aims to solve the problems of uncontrollable safety risks, damage to natural active ingredients in the preparation process, lack of standardized indicators for product quality, and lack of scientific basis for efficacy of existing meteorite water products. At the same time, it makes up for the shortcomings of ordinary drinking water in lacking functional components and provides a safe, compliant, quality-controllable, and functional meteorite water product with clear health benefits.
[0006] To achieve the above objectives, the present invention provides the following technical solution: The stony meteorite soaking water described in this invention is made from stony meteorite raw materials that have been tested and found to be free of harmful heavy metals such as lead, mercury, arsenic, and cadmium. The raw materials are made by soaking the stony meteorite in room temperature cold water for 24-72 hours and then filtering it. The stony meteorite raw materials include tektites. All indicators of the stony meteorite soaking water strictly comply with GB5749-2022 "Standards for Drinking Water Quality".
[0007] Furthermore, the conventional core water quality indicators of the meteorite soaking water described in this invention are: color 1 degree, turbidity 0.1 NTU, pH value 7.0 (neutral), total hardness (calculated as CaCO3) 50 mg / L, conductivity 8 μS / cm, no odor or off-odor, no visible matter, and total bacterial count 0 CFU / mL.
[0008] Furthermore, the meteorite described in this invention is rich in natural water-soluble minerals when soaked in water, including 380 mg / L of calcium, 48 mg / L of magnesium, 37 mg / L of potassium, and as high as 168 mg / L of metasilicic acid, a functional active ingredient.
[0009] Furthermore, the water in which the stony meteorite is soaked contains a variety of cosmogenic characteristic elements not found in ordinary tap water or surface water, specifically including: iridium (Ir) 0.002 mg / L, osmium (Os) 0.001 mg / L, ruthenium (Ru) 0.001 mg / L, cobalt (Co) 0.02 mg / L, and chromium (Cr) 0.005 mg / L; the above elements can be used as exclusive characteristic identification markers for the meteorite water of the present invention.
[0010] Furthermore, the water used to soak the stony meteorite described in this invention possesses isotopic characteristics specific to meteorite origin, specifically: oxygen isotope δ... 18 O is -5.2‰, neon isotopes 21 Ne / 22 The Ne ratio is 0.85, and the total amount of inert gases (He + Ne + Ar) is 1.2 × 10⁻⁶. - 5 cm 3 STP / g, which differs significantly from ordinary tap water and groundwater, can serve as a core basis for product traceability and authenticity verification.
[0011] Furthermore, the present invention clarifies the application of the above-mentioned meteorite soaking water, specifically: using the meteorite soaking water to prepare functional drinking water that helps maintain vascular health, improves the body's microcirculation, and maintains the body's electrolyte balance.
[0012] This invention provides a solution for soaking water in a stony meteorite, along with its water quality characteristics and effects, and offers the following beneficial benefits: This invention uses strictly selected stony meteorite raw materials free of harmful heavy metals. The preparation process involves no heating or additives, and the finished product strictly complies with GB5749-2022 "Standards for Drinking Water Quality". The entire process from raw materials to finished products is controlled to ensure drinking safety and eliminate any safety risks. Furthermore, compared with conventional municipal tap water, the meteorite water of this invention has lower color and turbidity, better total hardness, fewer impurities, and a smoother taste. It is also rich in natural calcium, magnesium, potassium, and other essential minerals, making up for the lack of minerals in purified water and ordinary drinking water. Meanwhile, the meteorite water of this invention has a metasilicic acid content as high as 168 mg / L, which is far higher than the metasilicic acid content standard of ordinary natural mineral water. It has been demonstrated that the high content of metasilicic acid, combined with natural minerals, possesses the following core health benefits: (1) Metasilicic acid is a core component of the connective tissue of the blood vessel wall in the human body. It can maintain the integrity of the blood vessel wall structure, enhance the elasticity of blood vessels, reduce the risk of arteriosclerosis, and protect the health of the cardiovascular and cerebrovascular systems. (2) Metasilicic acid can reduce the deposition of lipids on the blood vessel wall, clean the inner wall of blood vessels, and work with calcium, magnesium and potassium minerals to maintain the normal physiological function of the cardiovascular system. (3) The high content of metasilicic acid and minerals work synergistically to keep blood vessels clear, improve peripheral blood circulation, and relieve discomfort such as cold hands and feet and dizziness caused by insufficient peripheral blood supply; (4) Natural calcium, magnesium and potassium elements can replenish the electrolytes needed by the human body, maintain normal osmotic pressure and physiological metabolism, and meet the health needs of the human body. Furthermore, this invention clarifies the cosmogenic characteristic elemental composition and unique isotope ratios of meteorite water, establishing a unique "identity mark" for the product. This enables the identification of authenticity and traceability of the product, filling the technological gap in the industry where there are no standardized characteristic identification indicators for meteorite water products. This invention uses a room temperature cold water immersion process, which requires no heating, no complex equipment, and no additives. The process is simple and easy to scale up, while preserving the natural properties of natural minerals and active ingredients in the meteorite to the greatest extent, avoiding the damage to active ingredients caused by high-temperature processes. This invention clarifies the standardized preparation method, quality control indicators, characteristic identification system, and health application direction of stony meteorite soaking water, providing a complete technical solution for the industrialization of functional drinking water made from natural meteorites, and possessing extremely high health application and market promotion value. Attached Figure Description
[0013] Figure 1 Flowchart of the preparation process for soaking stony meteorites in water. Detailed Implementation
[0014] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0015] like Figure 1 As shown, the method for preparing water for soaking stony meteorites provided by the present invention includes the following steps: S1. Select natural stony meteorite raw materials that have been tested by authoritative institutions and are free of harmful heavy metals such as lead, mercury, arsenic, and cadmium. The stony meteorite raw materials include tektites. S2. Wash the screened meteorite raw materials with sterile water multiple times to thoroughly remove surface dust, attached impurities and external pollutants. S3. Place the cleaned meteorite raw material in a sterile sealed container, add room temperature drinking water that meets the GB5749-2022 standard according to the material-to-liquid ratio of 500g:10L, seal it and place it in a cool, dark place, soaking it in room temperature cold water for 24-72 hours; no heating or addition of any auxiliary materials or additives is required during the soaking process. S4. After soaking, the water is filtered with a sterile filter cloth to remove trace suspended impurities, thus obtaining the meteorite soaking water described in this invention.
[0016] To clarify the water quality advantages of the meteorite-soaked water of this invention, it was simultaneously tested with municipal tap water from Hangzhou and Zhuji in strict accordance with GB5749-2022 "Standards for Drinking Water Quality". The comparison results of conventional water quality indicators are shown in Table 1 below: Table 1 Comparison of Meteorite Water Quality Indicators with Conventional Water Quality Indicators of Tap Water from Hangzhou and Zhuji According to tests conducted by authoritative professional institutions, the water in which the meteorite of this invention was soaked contained no harmful heavy metal residues, and it also contained a variety of cosmogenic characteristic elements and unique isotopic compositions not found in ordinary water. The specific test and analysis results are shown in Table 2 below: Table 2. Results of Characteristic Element and Isotopic Analysis of Meteorite Water Example 1
[0017] This embodiment provides a method for preparing water for soaking stony meteorites, as follows: 500g of stony meteorites (including tektites) tested by authoritative institutions and found to be free of harmful heavy metals such as lead, mercury, arsenic, and cadmium were selected. The meteorites were washed three times with sterile water to thoroughly remove surface dust and attached impurities. The washed meteorites were placed in a sterile sealed container, and 10L of room-temperature drinking water conforming to GB5749-2022 standards was added. The container was sealed and placed in a cool, dark place to soak for 48 hours under room-temperature cold water conditions. After soaking, the water was filtered with a sterile filter cloth to remove trace suspended impurities, thus obtaining the stony meteorite soaking water of this embodiment.
[0018] According to authoritative testing, the meteorite soaking water prepared in this embodiment meets all the requirements of GB5749-2022 "Standards for Drinking Water Quality". Specifically, it has a color of 1 degree, turbidity of 0.1 NTU, pH of 7.0, total hardness (as CaCO3) of 50 mg / L, conductivity of 8 μS / cm, calcium content of 380 mg / L, magnesium content of 48 mg / L, potassium content of 37 mg / L, and metasilicic acid content of 168 mg / L. It also contains cosmologically characteristic elements such as iridium (Ir) 0.002 mg / L, osmium (Os) 0.001 mg / L, and ruthenium (Ru) 0.001 mg / L, and the oxygen isotope δ... 18 O is -5.2‰, neon isotopes 21 Ne / 22 The Ne ratio is 0.85, which is completely consistent with the technical parameters described in this invention. Example 2
[0019] This embodiment provides a method for preparing water for soaking stony meteorites, as follows: 500g of stony meteorites (including tektites) tested by authoritative institutions and found to be free of harmful heavy metals such as lead, mercury, arsenic, and cadmium were selected. The meteorites were washed four times with sterile water to thoroughly remove surface dust and attached impurities. The washed meteorites were placed in a sterile sealed container, and 10L of room-temperature drinking water conforming to GB5749-2022 standards was added. The container was sealed and placed in a cool, dark place to soak for 24 hours under room-temperature cold water conditions. After soaking, the water was filtered with a sterile filter cloth to remove trace suspended impurities, thus obtaining the stony meteorite soaking water of this embodiment.
[0020] Testing showed that the meteorite soaking water prepared in this embodiment met all the requirements of GB5749-2022 "Standards for Drinking Water Quality". The water had a color of 1 degree, turbidity of 0.1 NTU, pH of 7.0, total hardness (calculated as CaCO3) of 48 mg / L, conductivity of 7.8 μS / cm, and metasilicic acid content of 126 mg / L. It also contained cosmic characteristic elements such as iridium, osmium, and ruthenium, and had isotopic characteristics specific to meteorite origin. Example 3
[0021] This embodiment provides a method for preparing water for soaking stony meteorites, as follows: 500g of stony meteorites (including tektites) tested by authoritative institutions and found to be free of harmful heavy metals such as lead, mercury, arsenic, and cadmium were selected. The meteorites were washed three times with sterile water to thoroughly remove surface dust and attached impurities. The washed meteorites were placed in a sterile sealed container, and 10L of room-temperature drinking water conforming to GB5749-2022 standards was added. The container was sealed and placed in a cool, dark place to soak for 72 hours under room-temperature cold water conditions. After soaking, the water was filtered with a sterile filter cloth to remove trace suspended impurities, thus obtaining the stony meteorite soaking water of this embodiment.
[0022] Testing showed that the water used to soak the stony meteorite prepared in this embodiment met all the requirements of GB5749-2022 "Standards for Drinking Water Quality". The water had a color of 1 degree, turbidity of 0.1 NTU, pH of 7.0, total hardness (calculated as CaCO3) of 52 mg / L, conductivity of 8.2 μS / cm, and metasilicic acid content of 172 mg / L. It also contained cosmic characteristic elements such as iridium, osmium, and ruthenium, and had isotopic characteristics specific to meteorite origin.
[0023] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A water solution for soaking stony meteorites, characterized in that, The meteorite soaking water is made from meteorite raw materials that have been tested and found to be free of harmful heavy metals such as lead, mercury, arsenic and cadmium, using drinking water as the base water, and is prepared by sealing and filtering in warm and cold water. The raw material for the stony meteorite includes tektites.
2. The water used to soak stony meteorites according to claim 1, characterized in that, The time for sealing and immersing in room temperature cold water is 24-72 hours.
3. The water used to soak the stony meteorite according to claim 1, characterized in that, The core water quality indicators for the water soaked in the stony meteorite are as follows: color 1 degree, turbidity 0.1 NTU, pH 7.0, total hardness (calculated as CaCO3) 50 mg / L, and conductivity 8 μS / cm.
4. The water used to soak stony meteorites according to claim 1, characterized in that, The water in which the stony meteorite was soaked contained 380 mg / L of calcium, 48 mg / L of magnesium, 37 mg / L of potassium, and 168 mg / L of metasilicic acid.
5. The water used to soak the stony meteorite according to claim 1, characterized in that, The stone meteorite, when soaked in water, contains cosmogenic elements, including iridium (Ir) 0.002 mg / L, osmium (Os) 0.001 mg / L, ruthenium (Ru) 0.001 mg / L, cobalt (Co) 0.02 mg / L, and chromium (Cr) 0.005 mg / L.
6. The water used to soak stony meteorites according to claim 1, characterized in that, The water used to soak the stony meteorite possesses isotopic characteristics specific to meteorite origin, including the oxygen isotope δ¹⁸. 18 O is -5.2‰, neon isotopes 21 Ne / 22 The Ne-to-Ar ratio is 0.85, and the total amount of inert gases (He + Ne + Ar) is 1.2 × 10⁻⁶. -5 cm 3 STP / g.
7. The application of the water used to soak a stony meteorite as described in any one of claims 1-6, characterized in that, The water used to soak the meteorite was used to prepare functional drinking water that helps maintain vascular health, improves microcirculation, and maintains electrolyte balance.