超声波结合微波辐射:空化机制和声发射。

IF 9.7 1区 化学 Q1 ACOUSTICS
Dwayne Savio Stephens, Adriano Troia, Giancarlo Cravotto, Katia Martina, Robert Mettin
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引用次数: 0

摘要

通过声发射光谱分析和空化气泡的高速成像,研究了强超声(US)不加热和微波加热对水的照射。为此,纯粹的机载声音检测被证明足以粗略评估由MW烤箱内20.5 kHz玻璃喇叭产生的空化质量。结果表明,空化主要有软(气)空化和硬(惯性)空化两种状态。单独使用US会在强预热水中产生软空化,否则会产生硬空化。在硬空化的基础上加入MW辐照,在一定的延迟时间后触发向软空化的过渡,但在关闭MW后又回到硬空化。这些发现是在水温和液体相对空气饱和度的背景下讨论的。据推测,美国辐照期间的快速MW加热可以使水进入更强的过饱和状态,而美国本身并没有。建议进一步的实验来探索观测到的效果,并提出了用于US/MW应用的潜在优化策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasound combined with microwave irradiation: Cavitation regimes and acoustic emissions.

The irradiation of water by intense ultrasound (US) without and with microwave (MW) heating is investigated by analysis of acoustic emission spectra and high-speed imaging of cavitation bubbles. To this end, pure airborne sound detection proves sufficient for a rough assessment of cavitation quality generated by a 20.5 kHz glass horn inside a MW oven. Results show essentially two cavitation states: soft (or gassy) and hard (inertial) cavitation. Application of US alone leads to soft cavitation in strongly pre-heated water, and to hard cavitation otherwise. The addition of MW irradiation to hard cavitation triggers after a certain delay time the transition to soft cavitation, but a return to hard cavitation is observed after switching MW off. The findings are discussed in the context of water temperature and relative air saturation of the liquid. It is conjectured that rapid MW heating during US irradiation can drive the water into stronger oversaturation, while US alone does not. Further experiments for exploration of the observed effects are suggested, and potential optimization strategies for US/MW applications are proposed.

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来源期刊
Ultrasonics Sonochemistry
Ultrasonics Sonochemistry 化学-化学综合
CiteScore
15.80
自引率
11.90%
发文量
361
审稿时长
59 days
期刊介绍: Ultrasonics Sonochemistry stands as a premier international journal dedicated to the publication of high-quality research articles primarily focusing on chemical reactions and reactors induced by ultrasonic waves, known as sonochemistry. Beyond chemical reactions, the journal also welcomes contributions related to cavitation-induced events and processing, including sonoluminescence, and the transformation of materials on chemical, physical, and biological levels. Since its inception in 1994, Ultrasonics Sonochemistry has consistently maintained a top ranking in the "Acoustics" category, reflecting its esteemed reputation in the field. The journal publishes exceptional papers covering various areas of ultrasonics and sonochemistry. Its contributions are highly regarded by both academia and industry stakeholders, demonstrating its relevance and impact in advancing research and innovation.
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