首页> 外文会议>IEEE International Ultrasonics Symposium >Electrification of Sonoluminescing Bubble in Water
【24h】

Electrification of Sonoluminescing Bubble in Water

机译:水中超声发光气泡的电气化

获取原文

摘要

Previous studies showed that microbubbles in water are negatively charged at the liquid-bubble interface. H+ and OH- in bulk water are considered to be the major factors for the charging mechanism. The electrification of cavitation bubble in water, however, has not been studied. High-temperature and high-pressure conditions inside cavitation bubble lead to chemical reactions producing molecules such as H202 and HN02and also to emit light, called sonoluminescence (SL), at bubble collapse. Those chemical reaction products inside bubble diffuse into bulk water. It is suggested that SL bubble interface has different conditions from non-cavitation bubble interface. To clarify electrical property of SL bubble interface is important for understanding the microstructure on the bubble interface and the application of ultrasound-generated bubbles. We investigated, for the first time within our knowledge, the electrification of a SL bubble in water by measuring the translation of bubble under electric field. SL bubble was shifted toward hot electrode when negative voltage was applied as if the bubble received attractive force from the hot electrode. In contrast, SL bubble was shifted to opposite direction when positive voltage was applied as if the bubble received repulsive force from the hot electrode. The results suggested that SL bubble was positively charged in water.
机译:先前的研究表明,水中的微气泡在液体-气泡界面处带负电。散装水中的H +和OH-被认为是带电机理的主要因素。然而,尚未研究水中空化气泡的起电。空化气泡内部的高温和高压条件导致化学反应,产生诸如H的分子 2 0 2 和HN0 2 并在气泡破裂时发出称为声致发光(SL)的光。气泡内的那些化学反应产物扩散到大量水中。建议SL气泡界面与非空化气泡界面具有不同的条件。弄清SL气泡界面的电学性质对于理解气泡界面的微观结构和超声产生的气泡的应用很重要。在我们所知的范围内,我们首次通过测量电场下气泡的平移来研究水中SL气泡的电气化。当施加负电压时,SL气泡向热电极移动,好像气泡受到来自热电极的吸引力。相反,当施加正电压时,SL气泡向相反方向移动,好像气泡受到来自热电极的排斥力一样。结果表明SL气泡在水中带正电。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号