Method and system for manufacturing stable nanobubble water and packaging combination comprising the same
Patent Information
- Authority / Receiving Office
- TW · TW
- Patent Type
- Patents
- Current Assignee / Owner
- RIO BIOMEDICAL CO LTD
- Filing Date
- 2025-06-04
- Publication Date
- 2026-08-01
Smart Images

Figure TWG2TB001903986_001 
Figure TWG2TB001903986_002 
Figure TWG2TB001903986_003
Abstract
Claims
1. A method for preparing steady-state nano-bubble water, comprising: A supply step: providing a body of water having a nanobubble and a plurality of water molecules, wherein the nanobubble contains a gas, including hydrogen; and a stabilization step: forming a water molecule microstructure between the plurality of water molecules and bringing the nanobubble into contact with and subjecting it to the water molecule microstructure, thereby making the body of water a stable nanobubble water, wherein the stabilization step further includes: a magnetization step, placing the plurality of water molecules in a magnetic field to form the water molecule microstructure, wherein the strength of the magnetic field is between 2500 and 3500 gauss; an electromagnetic wave treatment step, providing an electromagnetic wave to the water molecule microstructure to stabilize the water molecule microstructure, wherein the wavelength of the electromagnetic wave is between 8 and 14 micrometers (μm); and an ultrasonic wave treatment step, providing an ultrasonic wave to the water molecule microstructure and the nanobubble to allow the nanobubble to enter or embed into the water molecule microstructure, wherein the frequency of the ultrasonic wave is between 1 and 3 megahertz (MHz).
2. The preparation method as described in claim 1, wherein, The gas may include oxygen, ozone, or any combination thereof.
3. The preparation method as described in claim 1, wherein the particle size of the nanobubbles is selected from one or more of the following groups: less than 80 nanometers, between 80 and 110 nanometers, and between 110 and 200 nanometers.
4. The preparation method as described in claim 1, wherein the threshold potential of the nanobubble is selected from one or more of the following groups: between -10 and -30 millivolts, between -30 and -50 millivolts, and between -50 and 70 millivolts.
5. The preparation method as described in claim 1, wherein the water molecule microstructure is selected from one or more of the group consisting of: chain structure, ring structure, network structure, and cage structure.
6. The preparation method as described in claim 1, wherein, The supply process further includes: an electrolysis step, which electrolyzes the plurality of water molecules to generate the gas and causes the gas to form a bubble; and a micronization step, which subjectes the bubble to a shear force, thereby turning the bubble into a nanobubble.
7. A steady-state nanobubble water preparation and packaging system, comprising: A steady-state nanobubble water preparation module is used to perform the preparation method as described in any one of claims 1 to 6 to provide a steady-state nanobubble water; and an encapsulation module is connected to the steady-state nanobubble water preparation module, the encapsulation module receiving the steady-state nanobubble water and encapsulating the steady-state nanobubble water into a receiving body.
8. A steady-state nano-sparkling water packaging assembly, comprising: A main body for housing, which has a housing space inside; And a stable nanobubble water, which is contained in the containment space, the stable nanobubble water being prepared by the preparation method described in any one of claims 1 to 6.