Li Xianjin, Zhu Tong, Shen Yang, Chai Tianyu, Xie Yuanhua, You Meiyan, Wang Youzhao
School of Mechanical Engineering and Automation, Northeastern University, 3-11, Wenhua Road, Heping District, Shenyang 110004, China E-mail:
Water Sci Technol. 2016;73(5):1190-6. doi: 10.2166/wst.2015.587.
To improve the excess sludge disintegration efficiency, reduce the sludge disintegration cost, and increase sludge biodegradability, a combined pretreatment of anaerobic hydrolysis (AH) and ultrasonic treatment (UT) was proposed for excess sludge. Results showed that AH had an advantage in dissolving flocs, modifying sludge characteristics, and reducing the difficulty of sludge disintegration, whereas UT was advantageous in damaging cell walls, releasing intracellular substances, and decomposing macromolecular material. The combined AH-UT process was an efficient method for excess sludge pretreatment. The optimized solution involved AH for 3 days, followed by UT for 10 min. After treatment, chemical oxygen demand, protein, and peptidoglycan concentrations reached 3,949.5 mg O2/L, 752.5 mg/L and 619.1 mg/L, respectively. This work has great significance for further engineering applications, namely, reducing energy consumption, increasing the sludge disintegration rate, and improving the biochemical properties of sludge.
为提高剩余污泥的破解效率,降低污泥破解成本,并提高污泥的生物降解性,提出了厌氧水解(AH)和超声处理(UT)联合预处理剩余污泥的方法。结果表明,厌氧水解在溶解絮体、改善污泥特性以及降低污泥破解难度方面具有优势,而超声处理则有利于破坏细胞壁、释放细胞内物质以及分解大分子物质。厌氧水解与超声处理联合工艺是一种高效的剩余污泥预处理方法。优化方案为厌氧水解3天,随后超声处理10分钟。处理后,化学需氧量、蛋白质和肽聚糖浓度分别达到3949.5mg O₂/L、752.5mg/L和619.1mg/L。这项工作对于进一步的工程应用具有重要意义,即降低能源消耗、提高污泥破解率以及改善污泥的生化性质。