Particle and Interfacial Technology Group, Faculty of Bioscience Engineering, Coupure links 653, 9000 Ghent, Belgium.
Water Sci Technol. 2011;63(6):1303-8. doi: 10.2166/wst.2011.375.
Charge neutralisation is an important mechanism in (polyelectrolyte) conditioning of biotic sludges and required for efficient sludge dewatering. Based on results from streaming potential and zeta potential measurements, it has been suggested that charge neutralisation is more complete on the outside of the sludge flocs than on the inside. This paper discusses the development of a technique for assessing the spatial distribution of polyelectrolyte (PE) within sludge flocs. After flocculation with a fluorescently labelled PE, fluorescence microscopy can be used to visualise the distribution of the PE in the sludge flocs. Preliminary results indicate that the PE can penetrate relatively deep into the sludge flocs (and flocculi). Inhomogeneity in the PE distribution arises from differences in exposure to PE in different regions, and from differences in the affinity of the PE for different substances.
电荷中和是(聚电解质)生物污泥调理中的一个重要机制,也是实现高效污泥脱水的必要条件。基于流动电势和zeta 电位测量的结果,有人提出电荷中和在污泥絮体的外部比内部更完全。本文讨论了一种评估污泥絮体中聚电解质(PE)空间分布的技术的发展。在用荧光标记的 PE 絮凝后,可以使用荧光显微镜观察 PE 在污泥絮体中的分布。初步结果表明,PE 可以相对深入地渗透到污泥絮体(和絮状物)中。PE 分布的不均匀性源于不同区域暴露于 PE 的差异,以及 PE 对不同物质的亲和力的差异。