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单泡声化学的理论研究

Theoretical study of single-bubble sonochemistry.

作者信息

Yasui Kyuichi, Tuziuti Toru, Sivakumar Manickam, Iida Yasuo

机构信息

National Institute of Advanced Industrial Science and Technology, 2266-98 Anagahora, Shimoshidami, Moriyama-ku, Nagoya 463-8560, Japan.

出版信息

J Chem Phys. 2005 Jun 8;122(22):224706. doi: 10.1063/1.1925607.

Abstract

Numerical simulations of bubble oscillations in liquid water irradiated by an ultrasonic wave are performed under the experimental condition for single-bubble sonochemistry reported by Didenko and Suslick [Nature (London) 418, 394 (2002)]. The calculated number of OH radicals dissolving into the surrounding liquid from the interior of the bubble agrees sufficiently with the experimental data. OH radicals created inside a bubble at the end of the bubble collapse gradually dissolve into the surrounding liquid during the contraction phase of an ultrasonic wave although about 30% of the total amount of OH radicals that dissolve into the liquid in one acoustic cycle dissolve in 0.1 micros at around the end of the collapse. The calculated results have indicated that the oxidant produced by a bubble is not only OH radical but also O atom and H2O2. It is suggested that an appreciable amount of O atom is produced by bubbles inside a standing-wave-type sonochemical reactor filled with water in which oxygen is dissolved as in the case of air.

摘要

在迪登科和苏斯利克[《自然》(伦敦)418, 394 (2002)]报道的单泡声化学实验条件下,对超声波辐照液态水中气泡振荡进行了数值模拟。计算得出从气泡内部溶解到周围液体中的羟基自由基数量与实验数据充分吻合。在气泡崩溃末期在气泡内部产生的羟基自由基,在超声波的收缩阶段逐渐溶解到周围液体中,尽管在一个声循环中溶解到液体中的羟基自由基总量的约30%在崩溃末期附近的0.1微秒内溶解。计算结果表明,气泡产生的氧化剂不仅有羟基自由基,还有氧原子和过氧化氢。有人提出,在充满溶解有氧(如空气)的水的驻波型声化学反应器内部,气泡会产生相当数量的氧原子。

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