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Effectiveness of fluidized pellet bed for removing soluble contaminants

机译:流化颗粒床去除可溶性污染物的功效

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摘要

Fluidized pellet bed (FPB) has been successfully applied in water and wastewater treatment. However, the removal mechanism of contaminants especially the soluble ones, is still unclear. This study aimed to evaluate the effectiveness of FPB reactor for removing soluble contaminants from synthetic wastewater. By only coagulation through jar test operation with addition of polyaluminium chloride (PAC1) as primary coagulant and polyacryamide (PAM) as coagulant-aid, the removals of soluble chemical oxygen demand (COD), total phosphorus (TP), and NH{sub}4{sup}+-N were found to be only 2.2%-7.5%, 5.7%-25.5%, and 9.9%-18.5%, respectively. However, by FPB operation under the same dosage of coagulants, these values increased to 82.7%, 37.2%, and 50%, indicating that the formation of pellets in the FPB effectively enhanced the removal of soluble contaminants. By careful comparison of the settleablility and filterability of the pollutants after coagulation, the originally soluble contaminants could be divided into three groups, namely: (1) coagulated-and-settleable, (2) coagulated-but-nonsettleable, and (3) uncoagulable. It was found that not only the first two groups but also a large part of the third group could be effectively removed by FPB operation. However, the mechanism for the removal of the uncoagulable pollutants by FPB operation still needs further investigation.
机译:流化颗粒床(FPB)已成功应用于水和废水处理。然而,污染物,尤其是可溶性污染物的去除机理仍不清楚。这项研究旨在评估FPB反应器从合成废水中去除可溶性污染物的效率。通过仅通过广口瓶试验操作进行凝结,并添加聚氯化铝(PAC1)作为主要凝结剂,并添加聚丙烯酰胺(PAM)作为助凝剂,即可去除可溶性化学需氧量(COD),总磷(TP)和NH {sub}发现4 {sup} +-N分别仅为2.2%-7.5%,5.7%-25.5%和9.9%-18.5%。但是,通过在相同剂量的混凝剂下进行FPB操作,这些值分别增加到82.7%,37.2%和50%,表明FPB中颗粒的形成有效地增强了可溶性污染物的去除。通过仔细比较凝结后污染物的沉降性和可过滤性,可以将最初可溶的污染物分为三类,即:(1)可凝结和沉降,(2)可凝结但不可沉降,以及(3)不凝结。已经发现,FPB操作不仅可以有效地除去前两组,而且可以除去大部分的第三组。然而,通过FPB操作去除不可凝结污染物的机理仍需进一步研究。

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