Jiang Jianguo, Yang Shihui, Chen Maozhe, Zhang Qunfang
Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China.
Water Sci Technol. 2009;60(6):1445-53. doi: 10.2166/wst.2009.469.
A bifrequency ultrasonic generating trough was used to improve disintegration of sewage sludge from thickener tanks. Ultrasonic operating parameters such as frequency, power, and time were optimized. Ultrasonic treatment successfully disintegrated the floc structure of sewage sludge and promoted the release of organic matter and metal ions such as Ca2+ and Mg2+. After ultrasonic treatment, soluble chemical oxygen demand (SCOD) in the sludge solution increased 11.28-49.06%, while the concentrations of Ca2+ and Mg2+ rose 5.5-25.0% and 2.7-19.0%, respectively. The ultrasonic frequency of 25 kHz was most effective in disintegrating sludge, and high energy densities and longer treatment time increased SCOD and metal ion release. The optimal parameters that promoted the increase SCOD were 25 kHz, 75 W/L and 60 s. Under these conditions, double-frequency ultrasonication was more effective than single-frequency ultrasonication.
采用双频超声波发生槽改善来自浓缩池的污水污泥的分解。对频率、功率和时间等超声操作参数进行了优化。超声处理成功分解了污水污泥的絮凝结构,并促进了有机物以及Ca2+和Mg2+等金属离子的释放。超声处理后,污泥溶液中的可溶性化学需氧量(SCOD)增加了11.28-49.06%,而Ca2+和Mg2+的浓度分别上升了5.5-25.0%和2.7-19.0%。25kHz的超声频率在分解污泥方面最有效,高能量密度和较长的处理时间会增加SCOD和金属离子的释放。促进SCOD增加的最佳参数为25kHz、75W/L和60s。在这些条件下,双频超声比单频超声更有效。