Nano Microbubble Ionic Water Washing for Detergent-Free Clothes Cleaning
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Solution Overview
Problem
Conventional clothing washing systems using chemical detergents pose environmental and health concerns due to wastewater complexity, secondary pollution, and skin allergic reactions, necessitating a detergent-free solution for effective and eco-friendly cleaning.
Innovation Solution
A clothing washing system utilizing nano microbubble ionic water generated through electrolysis, which involves an electrolysis unit, nano microbubble generation, and fluid circulation units to produce alkaline electrolyzed water with hydroxide ions and hydrogen nano microbubbles, providing a detergent-free cleaning mechanism with enhanced decontamination capabilities.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If chemical detergents are used for cleaning clothes, then cleaning effectiveness is improved, but environmental pollution and health risks worsen
Solution Approach 1:
The invention extracts and eliminates harmful chemical detergent substances from the washing system, replacing them with a physical cleaning mechanism using electrolyzed water and nano microbubbles. This removes the source of environmental pollution and health risks while maintaining cleaning effectiveness through alternative physical-chemical processes.
Solution Approach 2:
The invention changes the fundamental parameters of the washing liquid from chemical detergent composition to electrolyzed water with specific pH, oxidation-reduction potential, and nano microbubble characteristics. This parameter transformation enables effective cleaning without harmful chemical residues, resolving the contradiction between cleaning power and environmental safety.
2Object-generated harmful factors
If electrolyzed water with nano microbubbles is used instead of chemical detergents, then environmental friendliness is improved, but system complexity worsens
Solution Approach 1:
The invention merges multiple functions into an integrated electrolysis and bubble generation system. The electrolysis unit simultaneously produces alkaline electrolyzed water and generates bubbles through gas evolution, which are then converted to nano microbubbles. This consolidation reduces overall system complexity compared to using separate chemical detergent delivery systems while achieving environmentally friendly cleaning.
Solution Approach 2:
The electrolysis unit utilizes electricity to directly generate the cleaning medium (electrolyzed water with bubbles) on-demand within the washing system. This self-service approach eliminates the need for external chemical detergent storage, handling, and dosing mechanisms, thereby simplifying the system while maintaining environmental benefits.
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 system achieves efficient and environmentally friendly decontamination of clothes without chemical detergents, maintaining a high pH value, oxidation-reduction potential, and electrical conductivity, ensuring effective cleaning while reducing environmental impact and skin irritation.
Implementation Method 1
an electrolysis unit (2), configured to electrolyze the water
Implementation Method 2
a nano microbubble generation unit (3), configured to generate a plurality of nano microbubbles in the electrolyzed water
Data Source
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AI summary
The subject disclosure relates to a clothing washing system (100), an apparatus for generating nano microbubble ionic water, and a method of washing clothes. The clothing washing system includes an adjustment unit (1), an electrolysis unit (2), a first fluid circulation unit (101), a nano microbubble generation unit (3), a second fluid circulation unit (102), and a cleaning unit (4). The electrolysis unit (2) is in fluid communication with the adjustment unit (1). The first fluid circulation unit (101) is connected to the adjustment unit (1) and the electrolysis unit (2). The nano microbubble generation unit (3) is in fluid communication with the adjustment unit (1). The second fluid circulation unit (102) is connected to the adjustment unit (1) and the nano microbubble generation unit (3). The cleaning unit (4) is in fluid communication with the adjustment unit (1).