Multi-Wavelength Light Device for Water Structure Modification
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Solution Overview
Problem
Current water treatment systems do not alter the structure of water itself, nor do they effectively treat water with added hydrogen or oxygen using multiple wavelengths of light to enhance its energy content.
Innovation Solution
A device that treats water using multiple wavelengths of light, optionally with the addition of hydrogen and oxygen, by employing light panels emitting specific wavelengths to modify the water's structure, with mechanisms for adding hydrogen and oxygen through electrolysis or hydrogen-containing materials, creating a novel water structure with increased energy.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Quantity of substance
If water is treated with conventional water treatment systems, then contaminants are removed or minerals are added, but the structure of water itself is not changed
Solution Approach 1:
The patent replaces conventional mechanical/chemical water treatment methods with optical energy (light) treatment. Multiple wavelengths of light are applied to water to directly alter its molecular structure and energy states, transforming the treatment mechanism from physical/chemical processes to photonic excitation and structural reorganization.
Solution Approach 2:
The patent applies multiple wavelengths of light to change the energy parameters and structural parameters of water molecules. By using different wavelengths (colors) of light, the system modifies water's molecular arrangement, hydrogen bonding patterns, and energy content, creating structured water with enhanced properties.
2Stability of the object's composition
If water is treated with multiple wavelengths of light, then water structure is altered with higher energy content, but existing systems cannot achieve this structural change
Solution Approach 1:
The patent segments the light treatment into multiple discrete wavelengths, each targeting specific molecular transitions or structural arrangements in water. By using separate light sources or filters for different wavelengths (e.g., UV, visible, infrared), the system can systematically modify various aspects of water structure through targeted photonic excitation.
Solution Approach 2:
The patent creates a multi-functional light treatment system that can simultaneously or sequentially apply multiple wavelengths to achieve various water treatment objectives: structural organization, energy enhancement, contaminant removal, and mineral integration. The same device platform handles diverse water modification tasks through wavelength variation.
3Quantity of substance
If hydrogen and oxygen are added to water, then energy content increases, but the water requires specialized treatment to stabilize the added elements
Solution Approach 1:
The patent uses light-induced phase transitions and energy state changes to stabilize dissolved hydrogen and oxygen in water. By applying specific wavelengths that correspond to molecular vibrational and rotational transitions, the system creates stable excited states and structured arrangements that prevent gas evolution and maintain dissolved elemental stability.
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 device successfully alters the water's structure, as evidenced by unique crystallization and biological responses, demonstrating enhanced energy content and stability in treated water.
Implementation Method 1
a first light panel located on a first side of the container... a second light panel located on a second side of the container... emit light of three different first side wavelengths that is directed towards the water in the container
Implementation Method 2
mechanisms for adding hydrogen and oxygen through electrolysis or hydrogen-containing materials
Data Source
AI summary
A device that treats water with multiple wavelengths of light in order to modify the structure of the water. The device may have two light panels on two different sides of a transparent container that holds water to be treated. Each light panel may have light sources that emit three different wavelengths of light. Specific wavelength combinations have been found to produce the desired structural changes in water. Hydrogen and/or oxygen may be added to the water before or during treatment. Potential sources of hydrogen and oxygen may be an electrolysis unit attached to or integrated into the light treatment device, or a hydrogen bearing mineral that may be added to the water. Experiments that treat and then freeze the water demonstrate a novel structure via the formation of unusual crystalline forms in the frozen, treated water.


