Skip to main navigation Skip to search Skip to main content

Single-transducer dual-frequency ultrasound generation to enhance acoustic cavitation

  • Hao Li Liu*
  • , Chao Ming Hsieh
  • *Corresponding author for this work
  • National Health Research Institutes Taiwan
  • Chang Gung University

Research output: Contribution to journalJournal Article peer-review

120 Scopus citations

Abstract

Dual- or multiple-frequency ultrasound stimulation is capable of effectively enhancing the acoustic cavitation effect over single-frequency ultrasound. Potential application of this sonoreactor design has been widely proposed such as on sonoluminescence, sonochemistry enhancement, and transdermal drug release enhancement. All currently available sonoreactor designs employed multiple piezoelectric transducers for generating single-frequency ultrasonic waves separately and then these waves were mixed and interfered in solutions. The purpose of this research is to propose a novel design of generating dual-frequency ultrasonic waves with single piezoelectric elements, thereby enhancing acoustic cavitation. Macroscopic bubbles were detected optically, and they were quantified at either a single-frequency or for different frequency combinations for determining their efficiency for enhancing acoustic cavitation. Visible bubbles were optically detected and hydrogen peroxide was measured to quantify acoustic cavitation. Test water samples with different gas concentrations and different power levels were used to determine the efficacy of enhancing acoustic cavitation of this design. The spectrum obtained from the backscattered signals was also recorded and examined to confirm the occurrence of stable cavitation. The results confirmed that single-element dual-frequency ultrasound stimulation can enhance acoustic cavitation. Under certain testing conditions, the generation of bubbles can be enhanced up to a level of five times higher than the generation of bubbles in single-frequency stimulation, and can increase the hydrogen peroxide production up to an increase of one fold. This design may serve as a useful alternative for future sonoreactor design owing to its simplicity to produce dual- or multiple-frequency ultrasound.

Original languageEnglish
Pages (from-to)431-438
Number of pages8
JournalUltrasonics Sonochemistry
Volume16
Issue number3
DOIs
StatePublished - 03 2009

Keywords

  • Acoustic cavitation
  • Single-transducer dual-frequency ultrasound
  • Subharmonics

Fingerprint

Dive into the research topics of 'Single-transducer dual-frequency ultrasound generation to enhance acoustic cavitation'. Together they form a unique fingerprint.

Cite this