Instituto Federal de Educação, Ciência e Tecnologia do Rio Grande do Sul, Feliz, Brazil; Departamento de Engenharia Química, Universidade Federal de Santa Maria, Santa Maria, Brazil.
Departamento de Engenharia Química, Universidade Federal de Santa Maria, Santa Maria, Brazil.
Ultrason Sonochem. 2022 Sep;89:106124. doi: 10.1016/j.ultsonch.2022.106124. Epub 2022 Aug 17.
In this work, a continuous flow extraction system assisted by ultrasound (US) was developed for the extraction of Cr(III) from residual tanned leather shavings. US energy was delivered into the system by a tubular applicator (clamp-on tube US applicator). The effect of the US energy was investigated at 20 kHz of frequency and electrical input power of 75, 150, 300 and 600 W. Residence time and temperature profile were also evaluated. It was observed that the internal temperature profile was affected by the presence of US and inverted in comparison with the conditions without US. In this way, the temperature profile generated by the US was reproduced by using electrical resistances in order to compare the obtained results. The US intensity was measured using a hydrophone connected to a sound pressure meter. The use of the US did not alter the dynamic behavior of the system but increased the extraction efficiency when compared to the silent condition. US power above 75 W did not lead to increased extraction efficiency, when the residence time was 30 min. However, when 60 min of residence time were employed, the optimized US power was 150 W, resulting in an extraction efficiency of 71.7 ± 0.7 %, about 28 % higher when compared to the silent condition in the same temperature and other conditions. The US energy allowed a reduction in processing time and operational temperature when compared to the silent condition with the same temperature profile. The overall energy consumption with US was similar or lower than that observed without US, showing the feasibility of the proposed extraction system.
在这项工作中,开发了一种连续流萃取系统,该系统由超声(US)辅助,用于从剩余的鞣革屑中萃取 Cr(III)。US 能量通过管状施加器(管夹式 US 施加器)输送到系统中。研究了频率为 20 kHz、电功率为 75、150、300 和 600 W 时 US 能量的影响。还评估了停留时间和温度分布。结果表明,内部温度分布受 US 的影响,与无 US 时的情况相反。为了比较结果,通过使用电阻器来重现由 US 产生的温度分布。使用连接到声压计的水听器测量 US 强度。US 的使用并未改变系统的动态行为,但与无声条件相比,提高了萃取效率。当停留时间为 30 分钟时,US 功率高于 75 W 并不会导致萃取效率提高。然而,当采用 60 分钟的停留时间时,优化的 US 功率为 150 W,与相同温度和其他条件下的无声条件相比,萃取效率提高了 71.7±0.7%,约 28%。与无声条件相比,US 能量允许在相同温度分布下减少处理时间和操作温度。US 的总能耗与无声条件相似或更低,表明所提出的萃取系统具有可行性。