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The transformation of aluminium species in the processes of coagulation, sedimentation and filtration

机译:铝在凝结,沉淀和过滤过程中的转化

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The aluminium toxicity is closely related to aluminium species. In this work aluminium was fractionated into seven forms: Al(T), Al(Sus), Al(C + S), Al(S), Al(C), Al(O) and Al(l). Four Al-based coagulants and simulated raw water were used in the laboratory to investigate the aluminium transformation in coagulation, sedimentation and filtration processes. It is the use of Al-based coagulants that contributes more to the increase of the residual aluminium for the low-turbidity raw water, while the Al-based coagulants, especially the polymeric aluminium coagulants, work to remove the aluminium from the high-turbidity raw water. In the case of traditional coagulants, the increase of the turbidity or the dissolved organic carbon (DOC) concentration in the raw water results in a high concentration of AI(C + S). The removal rate of aluminium species in the filtration process is not only related to its size: R-AI(Sus) > RAI(C + S), R-Al(C) > R-Al(S), but also to the physicochemical properties of aluminium species and filter. For the kaolin-polyaluminium chloride system, a lower removal rate of aluminium species results is due to the complexation of humic acid and aluminium species.
机译:铝的毒性与铝的种类密切相关。在这项工作中,铝被分为7种形式:Al(T),Al(Sus),Al(C + S),Al(S),Al(C),Al(O)和Al(l)。实验室中使用了四种铝基混凝剂和模拟原水,以研究铝在混凝,沉淀和过滤过程中的转化。铝基混凝剂的使用为低浊度原水的残留铝增加做出了更大贡献,而铝基混凝剂,尤其是聚合物铝混凝剂,可从高浊度中去除铝。生水。在传统混凝剂的情况下,原水中浊度或溶解有机碳(DOC)浓度的增加导致AI(C + S)的浓度较高。铝在过滤过程中的去除率不仅与其尺寸有关:R-AI(Sus)> RAI(C + S),R-Al(C)> R-Al(S),而且与铝物质和过滤器的理化特性。对于高岭土-聚氯化铝体系,由于腐殖酸和铝物质的络合,导致铝物质的去除率较低。

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