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Effect of sludge solids properties on sludge dewatering operations.

机译:污泥固体性质对污泥脱水操作的影响。

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摘要

The purpose of this research was to investigate the influence of some pertinent sludge properties on dewatering and the effect of conditioning chemicals on those sludge solids properties and optimum conditioning dosage for various dewatering operations as determined by the mixing intensities.;Unconditioned Waste Activated Sludge (WAS) from a conventional wastewater treatment facility was used in this investigation. The sludge solids properties, colloidal charge, particle size distribution and total carbohydrate concentration (polymer content) were studied with regards to their effect on dewatering as determined by the specific resistance to filtration. The Chemineer mixing apparatus was used to generate high mixing intensities, hence simulate various high intensity dewatering operations. Ferric Chloride and Cationic Polymer were the most effective conditioning agents with respect to this sludge. Shearing of unconditioned sludge increased the proportion of particles in the size range of 0.45-2.5 microns and increased the total carbohydrate content. Both these effects made the sludge more difficult to dewater. Accordingly, when the total carbohydrate content was enhanced by acclimating sludge at a high carbon to nitrogen ratio, resistance to filtration was increased.;Sludge conditioned with cationic polymer, decreased the specific resistance, increased filtration rate and the filter cake solids concentration. The charge and pH on the sludge solids after conditioning had little or no influence on the specific resistance, possibly indicating that particle bridging might be the predominant mechanism.;The mass fraction of particles in the size range of 0.45-2.5 microns and total carbohydrate content decreased as the sludge dewaterability was enhanced. This observation supported the hypothesis that biocolloids have a slime coat and reduction of the biocolloids, hence the slime coat may enhance dewaterability.;Similar conclusions were drawn with ferric chloride as the conditioning agent with some exceptions, pH and colloid charge decreases as the specific resistance decreases, charge is driven towards electroneutrality, suggesting the possibility of charge neutralization as the predominant mechanism.;Optimum dosage of conditioning chemicals was established and was found to be higher at higher mixing intensities. Thus, using conventional jar testing for determining the optimal dose would underrate the actual requirement.
机译:这项研究的目的是研究某些相关污泥特性对脱水的影响以及调节化学品对这些污泥固体特性的影响以及通过混合强度确定的各种脱水操作的最佳调节剂量。这项研究使用了来自常规废水处理设施的)。研究了污泥的固体性质,胶体电荷,粒度分布和总碳水化合物浓度(聚合物含量)对脱水的影响,这由特定的过滤阻力确定。 Chemineer混合设备用于产生高混合强度,因此可以模拟各种高强度脱水操作。氯化铁和阳离子聚合物是最有效的调理剂。未处理污泥的剪切增加了0.45-2.5微米尺寸范围内的颗粒比例,并增加了总碳水化合物含量。这两种作用都使污泥更难以脱水。因此,当通过以高碳氮比使污泥驯化来提高总碳水化合物含量时,耐过滤性增加。用阳离子聚合物处理的污泥降低了比电阻,增加了过滤速率和滤饼固体浓度。处理后的污泥固体上的电荷和pH值对电阻率的影响很小或没有影响,这可能表明颗粒桥接可能是主要的机理。;粒径范围为0.45-2.5微米的颗粒的质量分数和总碳水化合物含量随着污泥脱水能力的提高而降低。该观察结果支持以下假设:生物胶体具有粘液层并减少了生物胶体,因此,粘液层可能会增强脱水性。;类似的结论是氯化铁作为调理剂,但有一些例外,pH和胶体电荷随比电阻的降低而降低。减少,电荷被驱使趋向电子中性,这表明电荷中和的可能是主要机理。确定了调理化学品的最佳剂量,并发现在较高的混合强度下其最高。因此,使用常规广口瓶测试确定最佳剂量会低估实际需求。

著录项

  • 作者

    Ramaswami, Dharmarajan.;

  • 作者单位

    The University of Wisconsin - Milwaukee.;

  • 授予单位 The University of Wisconsin - Milwaukee.;
  • 学科 Chemistry Biochemistry.;Engineering Civil.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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