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A new inorganic-organic composite coagulant, consisting of Polyferric Sulphate (PFS) and Polyacrylamide (PAA)

机译:一种新型的无机-有机复合混凝剂,由聚硫酸铁(PFS)和聚丙烯酰胺(PAA)组成

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摘要

Currently, research is focused on the synthesis of new composite coagulants, which are constituted of both inorganic and organic materials. In this paper, the development of relevant reagents was investigated, by combining the inorganic pre-polymerised iron-based coagulant Polyferric Sulphate (PFS) with an organic, non-ionic polymer (Polyacrylamide, PAA) under different PAA/Fe (mg/l) and OH/Fe molar ratios. Moreover, the new reagents were characterised in terms of typical properties, stability and morphological analysis (XRD, FTIR, SEM). Their coagulation performance, when treating low or high turbid kaolin-humic acid suspensions, was also investigated, whereas the applied coagulation mechanisms were discussed by using the Photometric Dispersion Analysis (PDA) analysis. The results show that the new coagulation reagents present improved properties, including increased effective polymer species concentration, and they exhibit very good stability. The respective tests using PDA confirmed that the predominant coagulation mechanism of PFS-PAA is the bridge formation mechanism. Coagulation experiments in low or high turbid kaolin-humic acid suspensions reveal that the novel composite reagent PFS-PAA exhibits better coagulation performance, when compared with simple PFS, in terms of zeta-potential reduction, turbidity and organic matter removal and residual iron concentration.
机译:当前,研究集中在由无机和有机材料组成的新型复合混凝剂的合成上。本文通过在不同的PAA / Fe(mg / l)下将无机预聚合铁基凝结剂聚硫酸铁(PFS)与有机非离子聚合物(聚丙烯酰胺,PAA)结合来研究相关试剂的开发)和OH / Fe摩尔比。此外,根据典型特性,稳定性和形态分析(XRD,FTIR,SEM)对新试剂进行了表征。还研究了它们在处理低浊度或高浊度的高岭土-腐植酸悬浮液时的混凝性能,而使用光度弥散分析(PDA)分析了应用的混凝机理。结果表明,新的混凝剂具有改进的性能,包括增加的有效聚合物种类浓度,并且显示出非常好的稳定性。使用PDA的各个测试证实了PFS-PAA的主要凝结机制是桥形成机制。在低浊度或高浊度的高岭土-腐植酸悬浮液中的混凝实验表明,与简单的PFS相比,新型复合试剂PFS-PAA在zeta电位降低,浊度和有机物去除以及残留铁浓度方面表现出更好的混凝性能。

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