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Sonochemical efficiency dependence on liquid height and frequency in an improved sonochemical reactor

机译:在改进的声化学反应器中声化学效率取决于液体高度和频率

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摘要

The aim of this study was to evaluate the effects of liquid height and frequency on sonochemical efficiency of a cup-horn sonoreactor. The selected frequencies (22, 371, 504 kHz) and liquid height (29– 348 mm) were applied while measuring acoustic yield, I_3~- formation rate and the resulting sonochemical efficiency. The frequency effect was shown to be coupled to liquid height effect. Indeed, acoustic zones (i.e. Fresnel and Fraunh?fer zones), which limits depends on both transducer diameter and frequency, significantly determine the production of radicalar species quantified by I_3~- formation rate. An increase of ultrasonic frequency results in lower acoustic yield and higher sonochemical efficiency. Theoretical physical and chemical effects attributed to collapsing bubbles were considered. Sonochemical efficiencies obtained at 500 kHz were similar or higher than those at 371 kHz, depending on liquid height. The effect of reactor configuration was further investigated as an hypothesis to explain unsignificant effect of standing waves in our study. Therefore, the dependence of sonochemical efficiency with liquid height might be firstly attributed to reactor configuration prior to frequency effects.
机译:这项研究的目的是评估液体高度和频率对杯形角声反应器的声化学效率的影响。在测量声产率,I_3〜-形成速率和产生的声化学效率时,应用选定的频率(22、371、504 kHz)和液体高度(29– 348 mm)。频率效应显示为与液体高度效应相关。确实,声区(即菲涅耳区和弗劳恩费尔区)取决于传感器的直径和频率,它们极大地决定了以I_3〜-形成率量化的自由基物质的产生。超声波频率的增加导致较低的声产率和较高的声化学效率。考虑了归因于气泡破裂的理论物理和化学作用。根据液体高度,在500 kHz时获得的声化学效率与371 kHz时相似或更高。进一步研究了反应堆配置的影响,以作为假设来解释我们研究中驻波的不明显影响。因此,声化学效率与液体高度的相关性可能首先归因于频率效应之前的反应器配置。

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