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超声和碱性预处理对微生物燃料电池污泥降解及发电的影响

Effect of ultrasonic and alkaline pretreatment on sludge degradation and electricity generation by microbial fuel cell.

作者信息

Jiang J Q, Zhao Q L, Wang K, Wei L L, Zhang G D, Zhang J N

机构信息

State Key Laboratory of Urban Water Resources and Environments (SKLUWRE), School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin 150090, China.

出版信息

Water Sci Technol. 2010;61(11):2915-21. doi: 10.2166/wst.2010.192.

Abstract

Both ultrasonic and alkaline pretreatment of excess sewage sludge were investigated to enhance organic degradation and electricity generation from sludge by the subsequent microbial fuel cell (MFC). The ultrasonic pretreatment showed that the degree of sludge disintegration was directly related to the energy input, ultrasonic density and duration. Alkaline pretreatment demonstrated that more soluble organic matters were released from the sludge with more NaOH dose and longer reaction time, and the degree of sludge disintegration within 30 min accounted for 45-76% of that for 24 h. When ultrasonic and alkaline pretreatment were combined, the released chemical oxygen demand (COD) was higher than those with ultrasonic or alkaline pretreatment alone. Ultrasonic and alkaline (pH=11) pretreatment could enhance electricity generation from sludge by the subsequent MFC, resulting in more degradation of total COD (TCOD) and volatile solids (VS). Slight change in power output from the MFC was observed due to the higher soluble chemical oxygen demand (SCOD) in the pretreated sludge. By using the combined ultrasonic and alkaline pretreatment of sludge, the removal efficiencies of TCOD and VS were increased from 27.1% to 61.0% and 35.2% to 62.9% in comparison with raw sludge, respectively, and the power output in MFC was slightly increased from 10.3 W/m(3) to 12.5 W/m(3).

摘要

研究了超声预处理和碱性预处理对剩余污泥的作用,以通过后续的微生物燃料电池(MFC)提高污泥的有机降解和发电能力。超声预处理表明,污泥解体程度与能量输入、超声密度和处理时间直接相关。碱性预处理表明,随着NaOH投加量增加和反应时间延长,污泥释放出更多的可溶性有机物,且30分钟内的污泥解体程度占24小时的45 - 76%。当超声预处理和碱性预处理相结合时,释放的化学需氧量(COD)高于单独进行超声预处理或碱性预处理时。超声和碱性(pH = 11)预处理可以通过后续的MFC提高污泥的发电能力,导致总化学需氧量(TCOD)和挥发性固体(VS)的更多降解。由于预处理污泥中较高的可溶性化学需氧量(SCOD),观察到MFC的功率输出有轻微变化。与原始污泥相比,采用超声和碱性联合预处理污泥后,TCOD和VS的去除率分别从27.1%提高到61.0%和从35.2%提高到62.9%,MFC中的功率输出从10.3 W/m³ 略有增加至12.5 W/m³ 。

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