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Siphon-type Washing Technique with Liquids Containing Microbubbles for Removing Soiled Models from Solid Surfaces
Torakage Kawasaki1, Ryo Yamanouchi1, Akiomi Ushida2
1Graduate School of Science and Technology, Niigata University, 8050-2 Ikarashi, Nishi-ku, Niigata-shi, 950-2181, JAPAN.
Journal of Oleo Science
|April 1, 2026
Summary
Dispersed microbubbles (MBs) combined with siphon washing significantly enhance food soil removal. Anionic surfactants boosted cleaning, while cationic ones hindered it, highlighting the importance of surfactant choice and MB stability for effective cleaning.
Area of Science:
- Surface science and colloid chemistry
- Food processing and cleaning technologies
- Fluid dynamics and interfacial phenomena
Background:
- Food soil removal from diverse surfaces is crucial in industrial cleaning.
- Microbubble (MB) technology offers potential for enhanced cleaning efficiency.
- Understanding the interplay between MB properties, surfactants, and flow dynamics is key.
Purpose of the Study:
- To investigate the synergistic cleaning effects of microbubbles and siphon-type washing on starch paste removal.
- To evaluate the impact of microbubble characteristics and surfactant types on cleaning performance.
- To elucidate the detergency mechanism and optimize cleaning parameters.
Main Methods:
- Quantitative cleaning evaluation using mass loss and washing rate measurements.
- Systematic investigation of microbubble size, stability, and surfactant effects (anionic, nonionic, cationic).
- Characterization of microbubble dynamics and interfacial properties (static contact angle).
Main Results:
- Microbubble dispersions in tap water enhanced washing rates by up to 1.56.
- Anionic surfactants significantly improved cleaning, nonionic surfactants moderately enhanced it, and cationic surfactants reduced it.
- Microbubble stability and size retention correlated positively with cleaning enhancement, influenced by surfactant type.
- Siphon-type washing synergistically enhanced soil detachment through microbubble buoyancy.
Conclusions:
- Optimizing microbubble generation and surfactant selection is critical for effective cleaning.
- Interfacial wettability modification and electrostatic interactions play key roles in microbubble-assisted detergency.
- The combination of microbubbles and siphon washing offers a promising approach for efficient soil removal applications.

