School of Environmental Science and Engineering , Zhejiang Gongshang University , Hangzhou 310018 , China.
Department of Civil and Environmental Engineering , Northwestern University , Evanston , Illinois 60208 , United States.
Environ Sci Technol. 2018 Apr 3;52(7):4313-4323. doi: 10.1021/acs.est.8b00310. Epub 2018 Mar 15.
Enhancing activated sludge dewaterability is of scientific and engineering importance in the face of accelerated urbanization and stringent environmental regulations. In this study, we investigated the integration of acidification and ultrasound (A/US) treatment for improving sludge dewaterability at both bench- and pilot-scales. Our results showed that the A/US process exhibited significantly improved sludge dewatering performance, characterized by capillary suction time, cake moisture, and water/solid content of sludge cake. Synergistic dewatering mechanisms were elucidated with a suite of macro and spectroscopic evidence. Characterization of treated sludge revealed that US-induced thermal, mechanical shearing force, and radical oxidation effects disrupts floc cells and accelerates the decomposition of extracellular polymeric substances (EPS), releasing bound water into the bulk phase. In addition to enhancing hydrolysis of EPS, the acidic pH environment caused the protonation of functional groups on EPS, facilitating the reflocculation of US decomposed sludge for improved filterability. Our bench-scale and pilot-scale investigations provide a mechanistic basis for better understanding of the A/US process, and enable development of a viable and economical dewatering technology.
面对城市化进程的加速和日益严格的环境法规,提高活性污泥的脱水性能具有重要的科学和工程意义。本研究采用酸化-超声(A/US)联合处理,在中试和小试规模下研究了改善污泥脱水性能的方法。结果表明,A/US 工艺显著改善了污泥的脱水性能,表现为毛细吸水时间、泥饼水分和污泥饼的固液比降低。通过一系列宏观和光谱证据阐明了协同脱水机制。对处理后的污泥进行的表征揭示,超声诱导的热、机械剪切力和自由基氧化作用破坏了絮体细胞,加速了胞外聚合物物质(EPS)的分解,将结合水释放到主体相中。此外,酸性 pH 环境除了促进 EPS 的水解外,还导致 EPS 上功能基团的质子化,有利于 US 分解后的污泥重新絮凝聚集,从而改善了过滤性能。本研究的中试和小试结果为更好地理解 A/US 工艺提供了机制基础,并为开发可行且经济的脱水技术提供了依据。