Article ID Journal Published Year Pages File Type
1265063 Ultrasonics Sonochemistry 2014 8 Pages PDF
Abstract

•Survey of MBSL in aqueous NaCl solution varying frequency, power, and argon flow.•Control of emission ratio of sodium line vs continuum by power and argon flow.•Remarkable change of bubble dynamics and distribution with respect to argon flow.

The sonoluminescence spectra from acoustic cavitation in aqueous NaCl solutions are systematically studied in a large range of ultrasonic frequencies under variation of electrical power and argon sparging. At the same time, bubble dynamics are analysed by high-speed imaging. Sodium line and continuum emission are evaluated for acoustic driving at 34.5, 90, 150, 365, and 945 kHz in the same reactor vessel. The results show that the ratio of sodium line to continuum emission can be shifted by the experimental parameters: an increase in the argon flow increases the ratio, while an increase in power leads to a decrease. At 945 kHz, the sodium line is drastically reduced, while the continuum stays at elevated level. Bubble observations reveal a remarkable effect of argon in terms of bubble distribution and stability: larger bubbles of non-spherical shapes form and eject small daughter bubbles which in turn populate the whole liquid. As a consequence, the bubble interactions (splitting, merging) appear enhanced which supports a link between non-spherical bubble dynamics and sodium line emission.

Related Topics
Physical Sciences and Engineering Chemistry Chemistry (General)
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