State Environmental Protection Key Laboratory of Food Chain Pollution Control, Beijing Technology and Business University, Beijing, China.
School of Ecology and Environment, Beijing Technology and Business University, Fucheng Road No.11, Haidian District, Beijing, 100048, China.
Environ Sci Pollut Res Int. 2021 Jul;28(27):35728-35737. doi: 10.1007/s11356-021-13278-x. Epub 2021 Mar 6.
The difficulties in dewatering waste-activated sludge (WAS) using mechanical devices have caused great problems in sludge transportation and disposal. Herein, coagulation and flocculation are combined with the use of a magnetic field as a clean and low-energy physical treatment method to enhance the dewaterability of municipal and citric acid-processing WAS. It is shown that the use of the magnetic field had a significant effect on the capillary suction time (CST) of municipal WAS but not on the specific resistance filtration (SRF) and CST of the citric acid WAS. The differences in the magnetic field effects were due to differences in the sludge properties. For municipal WAS, the particle size decreased, the zeta potential remained unchanged, and the viscosity decreased, whereas in the citric acid WAS, the particle size increased, the absolute value of the zeta potential decreased, and the viscosity increased. In addition, these effects were also confirmed with studies of the water state and micro-morphology analyses. It is shown that the acidification of the municipal WAS and coagulation of citric acid WAS were likely the reasons for the enhancement of their dewaterability, respectively. This study confirmed that the use of a magnetic field combined with coagulation/flocculation may serve as an effective sludge conditioning method; however, the treatment conditions may vary with the sludge type.
采用机械装置对剩余活性污泥(WAS)进行脱水存在困难,这给污泥运输和处置带来了很大的问题。本文将混凝和絮凝与磁场的使用相结合,作为一种清洁、低能耗的物理处理方法,以增强城市和柠檬酸加工 WAS 的脱水性能。结果表明,磁场的使用对城市 WAS 的毛细吸水时间(CST)有显著影响,但对柠檬酸 WAS 的比阻抗过滤(SRF)和 CST 没有影响。磁场效应的差异是由于污泥性质的不同造成的。对于城市 WAS,粒径减小,动电位保持不变,粘度降低;而在柠檬酸 WAS 中,粒径增大,动电位绝对值降低,粘度增加。此外,这些影响也通过水状态和微观形貌分析得到了证实。结果表明,城市 WAS 的酸化和柠檬酸 WAS 的混凝可能是提高其脱水性能的原因。本研究证实,磁场与混凝/絮凝相结合可以作为一种有效的污泥调理方法;然而,处理条件可能因污泥类型而异。