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污水处理厂减少污泥产生的技术:现状。

Technologies for reducing sludge production in wastewater treatment plants: State of the art.

机构信息

Advanced Water Management Centre (AWMC), The University of Queensland, QLD 4072, Australia; Griffith School of Engineering, Griffith University, Nathan Campus, QLD 4111, Australia.

Advanced Water Management Centre (AWMC), The University of Queensland, QLD 4072, Australia.

出版信息

Sci Total Environ. 2017 Jun 1;587-588:510-521. doi: 10.1016/j.scitotenv.2017.02.203. Epub 2017 Mar 1.

Abstract

This review presents the state-of-the-art sludge reduction technologies applied in both wastewater and sludge treatment lines. They include chemical, mechanical, thermal, electrical treatment, addition of chemical un-coupler, and predation of protozoa/metazoa in wastewater treatment line, and physical, chemical and biological pretreatment in sludge treatment line. Emphasis was put on their effect on sludge reduction performance, with 10% sludge reduction to zero sludge production in wastewater treatment line and enhanced TS (total solids) or volatile solids removal of 5-40% in sludge treatment line. Free nitrous acid (FNA) technology seems good in wastewater treatment line but it is only under the lab-scale trial. In sludge treatment line, thermal, ultrasonic (<4400kJ/kg TS), FNA pretreatment and temperature-phased anaerobic digestion (TPAD) are promising if pathogen inactivation is not a concern. However, thermal pretreatment and TPAD are superior to other pretreatment technologies when pathogen inactivation is required. The new wastewater treatment processes including SANI®, high-rate activated sludge coupled autotrophic nitrogen removal and anaerobic membrane bioreactor coupled autotrophic nitrogen removal also have a great potential to reduce sludge production. In the future, an effort should be put on the effect of sludge reduction technologies on the removal of organic micropollutants and heavy metals.

摘要

本文综述了应用于废水和污泥处理线的最新污泥减量技术。它们包括废水处理线中的化学、机械、热、电处理、添加化学解偶联剂以及原生动物/后生动物捕食,以及污泥处理线中的物理、化学和生物预处理。重点介绍了它们对污泥减量性能的影响,在废水处理线中可实现 10%的污泥减量和零污泥产生,在污泥处理线中可提高总固体(TS)或挥发性固体去除率 5-40%。游离亚硝酸(FNA)技术在废水处理线中似乎效果很好,但仅处于实验室规模试验阶段。在污泥处理线中,如果不考虑病原体灭活,热、超声(<4400kJ/kg TS)、FNA 预处理和温度分相厌氧消化(TPAD)具有很大的应用潜力。然而,在需要病原体灭活时,热预处理和 TPAD 优于其他预处理技术。包括 SANI®在内的新型废水处理工艺、高负荷活性污泥耦合自养脱氮和厌氧膜生物反应器耦合自养脱氮也具有很大的污泥减量潜力。未来,应努力研究污泥减量技术对去除有机微量污染物和重金属的影响。

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