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首页> 外文期刊>Research on Chemical Intermediates >Rheological characteristics of municipal thickened excess activated sludge (TEAS): impacts of pH, temperature, solid concentration and polymer dose
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Rheological characteristics of municipal thickened excess activated sludge (TEAS): impacts of pH, temperature, solid concentration and polymer dose

机译:市政增稠的过量活性污泥(TEAS)的流变特性:pH,温度,固体浓度和聚合物剂量的影响

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摘要

Rheological characterization of sludge is known to be an essential tool to optimize flow, mixing and other process parameters in wastewater treatment plants. This study deals with the characterization of thickened excess activated sludge in comparison to raw primary sludge and excess activated sludge. The effects of key parameters (total solid concentration, temperature, and pH) on the rheology and flow behavior of thickened excess activated sludge were studied. The rheological investigations were carried out for total solid concentration range of 0.9-3.7 % w/w, temperature range of 23-55 degrees C, and pH range of 3.6-10.0. Different rheological model equations were fitted to the experimental data. The model equations with better fitting were used to calculate the yield stress, apparent, zerorate, infinite-rate viscosities, flow consistency index, and flow index. The decrease in concentration from 3.7 to 3.1 % w/w resulted in a drastic reduction of yield stress from 27.6 to 11.0 Pa, while a further reduction of yield stress to 1.3 Pa was observed as solid concentration was reduced to 1.3 % w/w. The viscosity at higher shear rate (>600 s(-1)) decreased from 0.05 Pa.s down to 0.008 Pa.s when the total solid concentration was reduced from 3.7 to 0.9 %. Yield stress decreased from 20.1 Pa down to 8.3 Pa for the Bingham plastic model when the temperature was raised from 25 to 55 degrees C. Activation energy and viscosity also showed decreasing trends with increasing temperature. Yield stress of thickened excess activated sludge increased from a value of 6.0 Pa to 8.3 Pa when the pH was increased from 3.6 to 10.0. The effect of polymer dose on the rheological behavior of the thickening of excess activated sludge was also investigated, and the optimum polymer dosage for enhanced thickener performance was determined to be 1.3 kg/ton DS.
机译:众所周知,污泥的流变特性是优化废水处理厂流量,混合和其他工艺参数的重要工具。与原始的初级污泥和过量的活性污泥相比,该研究处理了浓缩的过量活性污泥的特征。研究了关键参数(总固体浓度,温度和pH)对增稠过量活性污泥流变学和流动行为的影响。对总固体浓度范围为0.9-3.7%w / w,温度范围为23-55℃,pH范围为3.6-10.0进行了流变学研究。不同的流变模型方程拟合到实验数据。使用拟合效果更好的模型方程式来计算屈服应力,表观,零速率,无限速率粘度,流动稠度指数和流动指数。浓度从3.7%w / w降低到27.6 Pa.11.0 Pa时,屈服应力急剧降低,而固含量降低到1.3%w / w,屈服应力进一步降低到1.3 Pa。当总固体浓度从3.7%降低至0.9%时,较高剪切速率(> 600 s(-1))下的粘度从0.05 Pa.s降低至0.008Pa.s。当温度从25摄氏度升至55摄氏度时,Bingham塑料模型的屈服应力从20.1 Pa降低至8.3 Pa。活化能和粘度也随温度升高而呈现下降趋势。当pH从3.6增加到10.0时,增稠的过量活性污泥的屈服应力从6.0 Pa增大到8.3 Pa。还研究了聚合物用量对过量活性污泥增稠流变行为的影响,确定增强增稠剂性能的最佳聚合物用量为1.3 kg /吨DS。

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