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好氧消化前污泥的碱性和超声联合预处理

Combined alkaline and ultrasonic pretreatment of sludge before aerobic digestion.

作者信息

Jin Yiying, Li Huan, Mahar Rasool Bux, Wang Zhiyu, Nie Yongfeng

机构信息

Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China.

出版信息

J Environ Sci (China). 2009;21(3):279-84. doi: 10.1016/s1001-0742(08)62264-0.

Abstract

Alkaline and ultrasonic sludge disintegration can be used as the pretreatment of waste activated sludge (WAS) to promote the subsequent anaerobic or aerobic digestion. In this study, different combinations of these two methods were investigated. The evaluation was based on the quantity of soluble chemical oxygen demand (SCOD) in the pretreated sludge as well as the degradation of organic matter in the subsequent aerobic digestion. For WAS samples with combined pretreatment, the released COD levels were higher than those with ultrasonic or alkaline pretreatment alone. When combined with the ultrasonic treatment, NaOH treatment was more efficient than Ca(OH)2 for WAS solubilization. The COD levels released in various sequential options of combined NaOH and ultrasonic treatments were in the the following descending order: simultaneous treatment > NaOH treatment followed by ultrasonic treatment > ultrasonic treatment followed by NaOH treatment. For simultaneous treatment, low NaOH dosage (100 g/kg dry solid), short duration (30 min) of NaOH treatment, and low ultrasonic specific energy (7500 kJ/kg dry solid) were suitable for sludge disintegration. Using combined NaOH and ultrasonic pretreatment with optimal parameters, the degradation efficiency of organic matter was increased from 38.0% to 50.7%, which is much higher than that with ultrasonic (42.5%) or with NaOH pretreatment (43.5%) in the subsequent aerobic digestion at the same retention time.

摘要

碱性和超声污泥破解可作为剩余活性污泥(WAS)的预处理方法,以促进后续的厌氧或好氧消化。在本研究中,对这两种方法的不同组合进行了研究。评估基于预处理污泥中可溶性化学需氧量(SCOD)的量以及后续好氧消化中有机物的降解情况。对于采用联合预处理的WAS样品,释放的化学需氧量(COD)水平高于单独采用超声或碱性预处理的样品。与超声处理相结合时,NaOH处理对WAS溶解比Ca(OH)2更有效。在NaOH和超声联合处理的各种顺序组合中,释放的COD水平按以下降序排列:同时处理>NaOH处理后超声处理>超声处理后NaOH处理。对于同时处理,低NaOH剂量(100 g/kg干固体)、短NaOH处理时间(30分钟)和低超声比能(7500 kJ/kg干固体)适合污泥破解。采用具有最佳参数的NaOH和超声联合预处理,在相同停留时间的后续好氧消化中,有机物的降解效率从38.0%提高到50.7%,远高于单独采用超声预处理(42.5%)或NaOH预处理(43.5%)的情况。

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