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Sonochemistry:  Science and Engineering

Industrial & Engineering Chemistry Research · 1999 · Vol. 38(4) · pp. 1215–1249
L. H. ThompsonL. K. Doraiswamy

Abstract

Sonochemistry is the use of ultrasound to enhance or alter chemical reactions. Sonochemistry in the true sense of the term occurs when ultrasound induces “true” chemical effects on the reaction system, such as forming free radicals which accelerate the reaction. However, ultrasound may have other mechanical effects on the reaction, such as increasing the surface area between the reactants, accelerating dissolution, and/or renewing the surface of a solid reactant or catalyst. This comprehensive review summarizes several topics of study in the sonochemical literature, including bubble dynamics, factors affecting cavitation, the effects of ultrasound on a variety of chemical systems, modeling of kinetic and mass-transfer effects, the methods used to produce ultrasound, proposed cavitation reactors, and the problems of scaleup. The objective of this paper is to present a critical review of information available in the literature so as to facilitate and inspire future research in the field of sonochemistry.

Ultrasound and Cavitation PhenomenaCrystallization and Solubility StudiesChemical Reactions and IsotopesSonochemistryCavitationUltrasoundCatalysisChemistryMass transferChemical processDissolutionChemical reactionNanotechnology
Citations
1,166
FWCI
9.75
field-weighted impact
References
198
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Citations per year
References
Bubble oscillations of large amplitude
The Journal of the Acoustical Society of America · 1980 · 1,281 citations
Sonoluminescence and bubble dynamics for a single, stable, cavitation bubble
The Journal of the Acoustical Society of America · 1992 · 776 citations
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