Hyper-oxygenated Water Composition and Oxygen Delivery System
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Solution Overview
Problem
There is an unmet need for a hyper-oxygenated water composition that effectively delivers oxygen to animals, such as humans, for maintenance and enhancement of well-being and prevention and treatment of diseases, as existing methods do not adequately address the delivery of oxygen in water.
Innovation Solution
A hyper-oxygenated water composition is produced by a process involving pre-filtering, purification, ion removal, reverse osmosis, ozonolysis, ultraviolet light radiation, addition of hydrogen peroxide, and mixing with oxygen in a vortexing chamber to achieve a total molecular oxygen content of 10 to 50 ppm and total dissolved solids of 4 to 200 ppm, which can be administered transcutaneously or orally.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Quantity of substance
If water is oxygenated to increase oxygen content for therapeutic benefit, then oxygen delivery to animals is improved, but water stability and oxygen retention deteriorate
Solution Approach 1:
The patent applies parameter changes by adjusting pH levels, adding specific minerals (calcium, magnesium, potassium), and controlling temperature to create optimal conditions for oxygen retention in water. These parameter modifications stabilize the water composition while maintaining high oxygen content (10-50 ppm), resolving the contradiction between oxygen delivery and water stability.
2Quantity of substance
If multiple purification and oxygenation steps are applied to create hyper-oxygenated water, then oxygen delivery effectiveness is improved, but system complexity increases
Solution Approach 1:
The patent merges multiple functions into integrated components: the water purification system combines filtration, reverse osmosis, and mineral replenishment; the oxygenation system integrates ozone generation, UV treatment, and oxygen injection. This consolidation achieves effective oxygen delivery (10-50 ppm) while managing system complexity through functional integration rather than separate discrete units.
3Reliability
If oxygen is added to water for therapeutic purposes, then treatment effectiveness is improved, but cost of production increases
Solution Approach 1:
The patent implements self-service through automated control systems that monitor oxygen levels, pH, and mineral content, automatically adjusting dosing and purification parameters. The system includes feedback mechanisms that maintain optimal oxygen content (10-50 ppm) without manual intervention, reducing operational costs while ensuring consistent treatment effectiveness for various animal species.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The hyper-oxygenated water composition effectively delivers oxygen, enhancing animal well-being and treating or preventing conditions by increasing oxygen levels in water, maintaining stability with minimal loss over time, and improving skin oxygen absorption.
Implementation Method 1
mixing the water in step (d) with oxygen gas in a vortexing chamber... resulting in a hyper-oxygenation of the water
Implementation Method 2
filtering the water by reverse osmosis
Implementation Method 3
radiating the water in step (d) with ultraviolet light
Implementation Method 4
ozonolyzing the water in step (d)
Data Source
AI summary
A hyper-oxygenated water composition comprising water and 10 ppm to 50 ppm of molecular oxygen, methods and systems of making and using the hyper-oxygenated water composition are described. The hyper-oxygenated water composition was made by pre-filtering and filtering by reverse osmosis of a source water, ozonolyzing and vortexing with oxygen with the water, ultraviolet irradiating and treating with hydrogen peroxide the water. The hyper-oxygenated water composition can be used for general improvement of human well-being and prevention and treatment of diseases by oral or transcutaneous administration of the hyper-oxygenated water composition.


