Department of Civil Engineering, Shanghai University, 99 Shangda Road, Shanghai, 200444, China.
J Environ Manage. 2022 Nov 1;321:115938. doi: 10.1016/j.jenvman.2022.115938. Epub 2022 Aug 17.
The increasing production of sludge poses significant environmental risks. Sludge disposal and transport are costly because of the high water content (WC). Reducing the WC of sludge is the most efficient strategy to decrease treatment costs. However, the sludge contains a large amount of hydrophilic organic matter, causing poor dewaterability. Therefore, research on preconditioning and mechanical dewatering has great significance for advanced sludge dewatering. In this study, the features of sludge, the advantages and disadvantages of preconditioning methods, and the action mechanisms (including physical, chemical, and biological preconditioning) are thoroughly described. In addition, the dewatering principle and engineering applications of mechanical dewatering techniques are introduced in this manuscript, especially the application of vacuum preloading as an in-situ dewatering technology in sludge. Finally, cost analysis of different conditioning and mechanical dewatering methods is conducted to explore their application feasibility. This manuscript provides new insights for engineering applications of preconditioning methods and mechanical dewatering technology.
污泥产量的增加带来了重大的环境风险。由于含水率(WC)高,污泥的处置和运输成本很高。降低污泥的 WC 是降低处理成本的最有效策略。然而,污泥中含有大量的亲水有机物,导致脱水性能差。因此,预处理和机械脱水的研究对于先进的污泥脱水具有重要意义。本研究详细描述了污泥的特性、预处理方法的优缺点以及作用机制(包括物理、化学和生物预处理)。此外,本文还介绍了机械脱水技术的脱水原理和工程应用,特别是真空预压作为原位脱水技术在污泥中的应用。最后,对不同调理和机械脱水方法的成本进行了分析,以探讨其应用可行性。本文为预处理方法和机械脱水技术的工程应用提供了新的见解。