Departamento de Química Física, Universidad de Alicante, Alicante, Spain.
Ultrason Sonochem. 2010 Aug;17(6):1010-20. doi: 10.1016/j.ultsonch.2009.11.009. Epub 2009 Nov 22.
The sonoelectrochemical treatment of aqueous solutions of trichloroacetic acid (TCAA) has been scaled-up from the voltammetric analysis to pre-pilot stage. The degradation in absence of ultrasound field has yield to a poor performance which has been improved in presence of ultrasound. The sonovoltametry study has provided the range of potentials and/or current densities to be used with the lowest current efficiency penalty. Sonoelectrolyses at batch scale (carried out with a horn-transducer 24 kHz positioned at about 3 cm from the surface of the electrode) achieved little improvement in the degradation. However, when a specifically designed sonoelectrochemical reactor (not optimized) was used during the scale-up, the presence of ultrasound field provided better results (fractional conversion 97%, degradation efficiency 26%, selectivity 0.92 and current efficiency 8%) at lower ultrasonic intensities and volumetric flow.
超声电化学处理三氯乙酸(TCAA)水溶液已从伏安分析规模扩大到中试阶段。在没有超声场的情况下,降解效果较差,而在有超声场的情况下,降解效果得到了改善。声伏安法研究提供了在最低电流效率损失下使用的电位和/或电流密度范围。在批量规模下进行的声电解(使用 24 kHz 的号角换能器,位于电极表面约 3 厘米处)对降解几乎没有改善。然而,当在放大过程中使用专门设计的超声电化学反应器(未优化)时,超声场的存在提供了更好的结果(分数转化率 97%,降解效率 26%,选择性 0.92 和电流效率 8%),在较低的超声强度和体积流量下。