...
首页> 外文期刊>Advances in physical chemistry >Review Article Plasma Formation during Acoustic Cavitation: Toward a New Paradigm for Sonochemistry
【24h】

Review Article Plasma Formation during Acoustic Cavitation: Toward a New Paradigm for Sonochemistry

机译:评论文章声空化过程中的等离子体形成:声化学的新范式

获取原文
获取原文并翻译 | 示例
           

摘要

The most recent spectroscopic studies of single bubble (SBSL) and multibubble (MBSL) sonoluminescence reveal that the origin of extreme intrabubble conditions is related to nonequilibrium plasma formed inside the collapsing bubbles. Analysis of the relative populations of OH(A~2Σ~+) vibrational states observed during MBSL in water saturated with noble gases shows that in the presence of argon at low ultrasonic frequency weakly excited plasma is formed. At high-frequency ultrasound the plasma inside the collapsing bubbles exhibits Treanor behavior typical for strong vibrational excitation. Plasma formation during SBSL was observed in concentrated H_2SO_4 preequilibrated with Ar. The light emission spectra exhibit the lines from excited Ar atoms and ionized oxygen O_2~+. Formation of O_2~+ species is inconsistent with any thermal process. Furthermore, the SBSL spectra in H_2SO_4 show emission lines from Xe~+, Kr~+, and Ar~+ in full agreement with plasma hypothesis. The photons and the "hot" particles generated by cavitation bubbles enable the excitation of nonvolatile species in solutions increasing their chemical reactivity. Secondary sonochemical products may arise from chemically active species that are formed inside the bubble but then diffuse into the liquid phase and react with solution precursors to form a variety of products.
机译:对单气泡(SBSL)和多气泡(MBSL)声致发光的最新光谱研究表明,极端气泡内条件的起源与在坍塌的气泡内形成的非平衡等离子体有关。分析在稀有气体饱和的水中MBSL期间观察到的OH(A〜2Σ〜+)振动状态的相对种群,结果表明,在低超声频率的氩气存在下,形成了弱激发等离子体。在高频超声下,坍塌气泡内部的等离子体表现出强振动激发特有的Treanor行为。在用Ar预平衡的浓H_2SO_4中观察到了SBSL过程中的等离子体形成。发光光谱显示出由激发的Ar原子和电离的氧O_2〜+组成的线。 O_2〜+物种的形成与任何热过程都不一致。此外,H_2SO_4中的SBSL光谱显示了Xe〜+,Kr〜+和Ar〜+的发射线,与等离子体假设完全一致。由空化气泡产生的光子和“热”粒子能够激发溶液中的非挥发性物质,从而增加其化学反应性。次级声化学产物可能来自气泡内部形成的化学活性物质,然后扩散到液相中并与溶液前体反应形成多种产物。

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