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Synergistic sonoelectrochemical removal of substituted phenols: Implications of ultrasonic parameters and physicochemical properties

机译:协同声电化学去除取代酚的研究:超声参数和理化性质的影响

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The effects of ultrasonic conditions and physicochemical properties on the synergistic degradation in synthetic solution were investigated. A wide range of ultrasound frequencies, including 35, 170, 300, 500 and 700 kHz, and ultrasonic power densities, including 11.3, 22.5 and 31.5 W/L were used. It was revealed that the physical effect of ultrasound plays a major role in synergistic mechanism and 35 kHz was found to be the most effective frequency due to its more vigorous physical effect induced by high implosive energy released from collapse of cavitation bubbles. The highest ultrasonic power density (31.5 W/L) showed the highest synergy index as it increases the number of cavitation bubbles and the energy released when they collapse. The synergy indexes of various substituted phenols under identical condition were investigated. These results were correlated with physicochemical properties, namely octanol water partition coefficient (Log K-ow), water solubility (S-w), Henry's law constant (K-H) and water diffusivity (D-w). Among these parameters, Log K-ow and D-w were found to have substantial effects on synergy indexes. (C) 2014 Elsevier B.V. All rights reserved.
机译:研究了超声条件和理化性质对合成溶液协同降解的影响。使用的超声频率范围很广,包括35、170、300、500和700 kHz,超声功率密度包括11.3、22.5和31.5 W / L。揭示了超声的物理效应在协同机制中起主要作用,并且由于空化气泡破裂释放的高内爆能量引起的更剧烈的物理效应,发现35 kHz是最有效的频率。最高的超声功率密度(31.5 W / L)显示出最高的协同指数,因为它增加了空化气泡的数量和当气泡破裂时释放的能量。研究了相同条件下各种取代酚的协同作用指数。这些结果与理化性质相关,即辛醇水分配系数(Log K-ow),水溶性(S-w),亨利定律常数(K-H)和水扩散率(D-w)。在这些参数中,发现Log K-ow和D-w对协同指数有实质性影响。 (C)2014 Elsevier B.V.保留所有权利。

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