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Rheological and fractal characteristics of unconditioned and conditioned water treatment residuals

机译:未处理和已处理水处理残渣的流变和分形特征

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摘要

The rheological and fractal characteristics of raw (unconditioned) and conditioned water treatment residuals (WTRs) were investigated in this study. Variations in morphology, size, and image fractal dimensions of the flocs/aggregates in these WTR systems with increasing polymer doses were analyzed. The results showed that when the raw WTRs were conditioned with the polymer CZ8688, the optimum polymer dosage was observed at 24 kg/ton dry sludge. The average diameter of irregularly shaped flocs/aggregates in the WTR suspensions increased from 42.54 μm to several hundred micrometers with increasing polymer doses. Furthermore, the aggregates in the conditioned WTR system displayed boundary/surface and mass fractals. At the optimum polymer dosage, the aggregates formed had a volumetric average diameter of about 820.7 μm, with a one-dimensional fractal dimension of 1.01 and a mass fractal dimension of 2.74 on the basis of the image analysis. Rheological tests indicated that the conditioned WTRs at the optimum polymer dosage showed higher levels of shear-thinning behavior than the raw WTRs. Variations in the limiting viscosity (η∝) of conditioned WTRs with sludge content could be described by a linear equation, which were different from the often-observed empirical exponential relationship for most municipal sludge. With increasing temperature, the η∝ of the raw WTRs decreased more rapidly than that of the raw WTRs. Good fitting results for the relationships between lgη∝ ~ T using the Arrhenius equation indicate that the WTRs had a much higher activation energy for viscosity of about 17.86-26.91 J/mol compared with that of anaerobic granular sludge (2.51 J/mol) (Mu and Yu, 2006). In addition, the Bingham plastic model adequately described the rheological behavior of the conditioned WTRs, whereas the rheology of the raw WTRs fit the Herschel-Bulkley model well at only certain sludge contents. Considering the good power-law relationships between the limiting viscosity and sludge content of the conditioned WTRs, their mass fractal dimensions were calculated through the models proposed by Shih et al. (1990), which were 2.48 for these conditioned WTR aggregates. The results demonstrate that conditioned WTRs behave like weak-link flocs/aggregates.
机译:在这项研究中,研究了原水(未处理过的)和处理过的水处理残留物(WTR)的流变和分形特征。分析了这些WTR系统中絮凝剂/聚集体的形态,大小和图像分形维数随聚合物剂量增加的变化。结果表明,当用聚合物CZ8688调节原WTR时,在24千克/吨干污泥下观察到最佳聚合物用量。随着聚合物剂量的增加,WTR悬浮液中不规则形状的絮体/聚集体的平均直径从42.54μm增加到数百微米。此外,条件WTR系统中的聚集体显示边界/表面和质量分形。在最佳聚合物剂量下,基于图像分析,形成的聚集体的体积平均直径为约820.7μm,一维分形维数为1.01,质量分形维数为2.74。流变测试表明,在最佳聚合物用量下,经过调节的WTR的剪切稀化行为水平高于未加工的WTR。可以用线性方程描述含污泥条件的WTR的极限粘度(η∝)的变化,这与大多数城市污泥经常观察到的经验指数关系不同。随着温度的升高,原始WTR的η∝比原始WTR的下降更快。使用Arrhenius方程对lgη∝〜T之间关系的拟合结果良好,表明与厌氧颗粒污泥(2.51 J / mol)相比,WTRs的活化能约为17.86-26.91 J / mol(Mu)和Yu,2006年)。此外,Bingham塑料模型充分描述了条件处理的WTR的流变行为,而原始WTR的流变学仅在某些污泥含量下非常符合Herschel-Bulkley模型。考虑到调节后的WTR的极限粘度和污泥含量之间具有良好的幂律关系,可通过Shih等人提出的模型计算其质量分形维数。 (1990年),这些条件WTR聚合为2.48。结果表明条件WTR的行为类似于弱链接絮凝体/聚集体。

著录项

  • 来源
    《Water Research》 |2011年第13期|p.3871-3882|共12页
  • 作者

    Y.J. Dong; Y.L. Wang; J. Feng;

  • 作者单位

    College of Environmental Science and Engineering, Research Center for Water Pollution Source Control and Eco-remediation,Beijing Forestry University, Beijing 100083, China;

    College of Environmental Science and Engineering, Research Center for Water Pollution Source Control and Eco-remediation,Beijing Forestry University, Beijing 100083, China;

    College of Environmental Science and Engineering, Research Center for Water Pollution Source Control and Eco-remediation,Beijing Forestry University, Beijing 100083, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    water treatment residuals; conditioning; polymer; rheology; fractal; model;

    机译:水处理残留物;调节聚合物;流变学分形模型;
  • 入库时间 2022-08-17 13:48:22

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