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超声频率对辛基苯磺酸脉冲声解降解的影响。

Effect of ultrasound frequency on pulsed sonolytic degradation of octylbenzene sulfonic acid.

作者信息

Yang Limei, Sostaric Joe Z, Rathman James F, Weavers Linda K

机构信息

Department of Civil and Environmental Engineering and Geodetic Science, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Phys Chem B. 2008 Jan 24;112(3):852-8. doi: 10.1021/jp077482m. Epub 2007 Dec 18.

Abstract

It has been shown that pulsed ultrasound can influence the amount of surfactant that can adsorb to and decompose at the surface of cavitation bubbles. However, the effect of ultrasound frequency on this process has not been considered. The current study investigates the effect of ultrasound frequency on the pulsed sonolytic degradation of octyl benzenesulfonate (OBS). Furthermore, the effect of pulsing and ultrasound frequency on the rate of *OH radical formation was determined. OBS degradation rates were compared to the rates of *OH radical formation. In this way, conclusions were made regarding the relative importance of accumulation of OBS at cavitation bubble surfaces versus sonochemical activity to the sonochemical decomposition of OBS under different conditions of sonolysis. Comparisons of the data in this way indicate that sonolytic degradation of OBS depends on both the sonochemical activity (i.e., *OH yield) and the accumulation of OBS on cavitation bubble surfaces. However, under a certain set of pulsing and ultrasound frequency exposure conditions, enhanced accumulation of OBS at the gas/solution interface of cavitation bubbles is the sole mechanism of enhanced degradation due to pulsing. On the basis of this finding, conclusions on how pulsing at various ultrasound frequencies affects cavitation bubbles were made.

摘要

研究表明,脉冲超声能够影响可吸附于空化气泡表面并在其表面分解的表面活性剂的量。然而,尚未考虑超声频率对这一过程的影响。当前研究考察了超声频率对辛基苯磺酸盐(OBS)脉冲声解降解的影响。此外,还测定了脉冲和超声频率对·OH自由基形成速率的影响。将OBS的降解速率与·OH自由基的形成速率进行了比较。通过这种方式,就不同声解条件下OBS在空化气泡表面的积累与声化学活性对OBS声化学分解的相对重要性得出了结论。以这种方式对数据进行比较表明,OBS的声解降解既取决于声化学活性(即·OH产率),也取决于OBS在空化气泡表面的积累。然而,在某一组脉冲和超声频率暴露条件下,空化气泡气/液界面处OBS积累的增强是脉冲导致降解增强的唯一机制。基于这一发现,得出了关于不同超声频率下的脉冲如何影响空化气泡的结论。

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