Effects of Operational Conditions on Preparation of Oil in Water Emulsion using Ultrasound
Daisuke Kobayashi, Ryosuke Hiwatashi, Yoshiyuki Asakura, Hideyuki Matsumoto, Yuichiro Shimada, Katsuto Otake, Atsushi Shono
Abstract
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Daisuke Kobayashi, Ryosuke Hiwatashi, Yoshiyuki Asakura, Hideyuki Matsumoto, Yuichiro Shimada, Katsuto Otake, Atsushi Shono
Abstract
Open-access reader
Ultrasonic emulsification is known to be useful in preparation of nanoemulsions, because use of surfactant can be reduced. Moreover, nanoemulsions with droplet diameters of around 100 nm can be prepared by sequential ultrasonic irradiation from low to high frequency. In this study, oil-in-water systems of toluene-water emulsions were prepared by ultrasonic emulsification and mechanical emulsification. Ultrasound emulsification was found to be more suitable than mechanical emulsification with a homogenizer. In addition, a two-step emulsification method was applied to preparation of emulsion. Crude emulsion was prepared mechanically in the first stage, and this was irradiated with ultrasound in the second stage. The droplet size of the emulsion was found to be influenced by the relationship between droplet size of the crude emulsion and ultrasonic frequency in the second stage.
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Ultrasonic emulsification is known to be useful in preparation of nanoemulsions, because use of surfactant can be reduced. Moreover, nanoemulsions with droplet diameters of around 100 nm can be prepared by sequential ultrasonic irradiation from low to high frequency. In this study, oil-in-water systems of toluene-water emulsions were prepared by ultrasonic emulsification and mechanical emulsification. Ultrasound emulsification was found to be more suitable than mechanical emulsification with a homogenizer. In addition, a two-step emulsification method was applied to preparation of emulsion. Crude emulsion was prepared mechanically in the first stage, and this was irradiated with ultrasound in the second stage. The droplet size of the emulsion was found to be influenced by the relationship between droplet size of the crude emulsion and ultrasonic frequency in the second stage.
Key concepts: Homogenizer, Emulsion, Materials science, Ultrasonic sensor, Pulmonary surfactant, Chemical engineering, Ultrasound, Toluene