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- W2550998114 abstract "In previous study, it was found that bubble sizes in dispersion medium were controlled by two-stage microwave irradiation. These results indicated that particle number density was the most important factor for the maximum bubble size when PSL particle, which is not active for microwave, was used. In this study, to understand the mechanism of controlling bubble size and to find optimum operation of microwave, the effect of the particle number density and surfactant addition on bubble profiles was investigated under microwave. For example, in the case of lower particle number density of magnetic particle, bubble size obtained by two-stage irradiation became larger than that of continuous mode. Power of first irradiation of two-stage irradiation was higher because bubble nucleation was caused by the quick thermal response of microwave. Accordingly, because heat generation of magnetic particle became larger, the much energy of microwave absorbance was used for the evaporation. However, as the particle number density was higher, two-stage irradiation became more influential for getting fine bubbles. Finally, two-stage irradiation should be a useful tool for nano-particle formation process because fine bubble was obtained in suspension with magnetic particle." @default.
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- W2550998114 date "2016-08-01" @default.
- W2550998114 modified "2023-09-26" @default.
- W2550998114 title "Mechanism on bubble size formation by two-stage microwave irradiation" @default.
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- W2550998114 doi "https://doi.org/10.1109/piers.2016.7735587" @default.
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