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Acoustic cavitation at low gas pressures in PZT-based ultrasonic systems

机译:基于PZT的超声波系统中低气压的声学空化

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摘要

The generation of cavitation-free radicals through evanescent electric field and bulk-streaming was reported when micro-volumes of a liquid were subjected to 10 MHz surface acoustic waves (SAW) on a piezoelectric substrate [Rezk et al., J. Phys. Chem. Lett. 2020, 11, 4655–4661; Rezk et al., Adv. Sci. 2021, 8, 2001983]. In the current study, we have tested a similar hypothesis with PZT-based ultrasonic units (760 kHz and 2 MHz) with varying dissolved gas concentrations, by sonochemiluminescence measurement and iodide dosimetry, to correlate radical generation with dissolved gas concentrations. The dissolved gas concentration was adjusted by controlling the over-head gas pressure. Our study reveals that there is a strong correlation between sonochemical activity and dissolved gas concentration, with negligible sonochemical activity at near-vacuum conditions. We therefore conclude that radical generation is dominated by acoustic cavitation in conventional PZT-based ultrasonic reactors, regardless of the excitation frequency.
机译:当在压电基板上对液体的微量体积进行10 MHz表面声波(SAW)时,报告通过渐逝电场和散热物流的空化自由基的产生[Rezk等,J. phy。化学。吧。 2020,11,4655-4661; Rezk等人。,adv。 SCI。 2021,8,2001983]。在目前的研究中,我们已经用基于PZT的超声单元(760 kHz和2MHz)测试了类似的假设,其具有不同的溶解气体浓度,通过SonoChemil发光测量和碘化物剂量测定,以将自由基产生与溶解气体浓度相关。通过控制过头气压来调节溶解气体浓度。我们的研究表明,在接近真空条件下具有忽略的多种子化活性与溶解气体浓度之间存在强烈的相关性。因此,我们得出结论,无论激发频率如何,根本发电由传统的PZT基超声反应器中的声学空化导地位。

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