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Effect of Ultrasonic Treatment on Characteristics of Waste Activated Sludge

机译:超声波处理对废活性污泥特性的影响

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Ultrasonic treatment has been adopted as a strategy to accelerate the hydrolysis step of waste activated sludge. The chemical characteristics of WAS under various sonication time and energy intensities during ultrasonic treatment were investigated in this study. Results showed that SCOD and ammonium nitrogen concentration and temperature of sludge increase as a function of both sonication time and energy intensity. COD solubilization was from 9.4% in the raw WAS to 56.3% when WAS was sonicated for 30 min with an energy intensity of 1.5W/ml. Compared with strong SCOD increment, a weak increment of ammonium nitrogen concentration around 5.1% ~ 35.6% was detected. A slight pH decrease was found in ultrasonic treated sludge along with sufficient alkalinity. During ultrasonic treatment, TS and VS concentrations of sludge were maintained almost constant averaging 20272 and 15816 mg/L, respectively. However, the SS and VSS concentrations gradually decreased with an increase in sonication time, suggesting that ultrasonic treatment greatly facilitated mass transfer from the solid phase into the aqueous phase.
机译:超声波处理已被用作加速废料活性污泥水解步骤的策略。研究了超声处理过程中不同超声处理时间和能量强度下WAS的化学特性。结果表明,污泥浓度,氨氮浓度和污泥温度随超声处理时间和能量强度的增加而增加。当WAS以1.5W / ml的能量强度超声处理30分钟时,COD的溶解度从原始WAS中的9.4%增至56.3%。与强SCOD增量相比,检测到铵氮浓度的微弱增量在5.1%〜35.6%附近。在超声处理的污泥中,发现pH值略有下降,并具有足够的碱度。在超声处理过程中,TS和VS污泥浓度分别保持几乎恒定,分别平均为20272和15816 mg / L。但是,随着超声时间的增加,SS和VSS的浓度逐渐降低,这表明超声处理极大地促进了从固相到水相的质量转移。

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