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Dewatering of inorganic sludge using dual ionic thermosensitive polymers

机译:使用双离子热敏聚合物对无机污泥进行脱水

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The dewatering of inorganic sludge by a novel method based on the hydrophilic/hydrophobic transition of ionic thermosensitive polymers was investigated. As an inorganic sludge, the drinking water treatment sludge was used. Cationic thermosensitive polymers, poly(NlPAM-co-DMAPAA), which were synthesized by copolymerizing N,N-dimethylaminopropylacrylamide (DMAPAA) as the cationic component with N-isopropylacrylamide (NIPAM) as the thermosensitive component, were effective in dewatering the sludge. When the dewatering was performed at room temperature, the optimum polymer dosage for the dewatering rate was observed similar to the conventional hydrophilic polymeric flocculants. On the other hand, when the dewatering was carried out above the lower critical solution temperature (LCST) of poly(NlPAM-co-DMAPAA), the dewatering rate increased remarkably as the polymer dosage increased. Such high dewatering rates can be attributed to the hydrophobic interaction among the thermosensitive polymer molecules adsorbed on the sludge. However, the LCST of poly(NIPAM-co-DMAPAA) increased considerably as the DMAPAA content increased. In order to solve this problem, the use of dual ionic thermosensitive polymers was investigated. By using the anionic thermosensitive polymer, poly (NIPAM-co-AAC), which was synthesized by copolymerizing acrylic acid (AAC) with NIPAM, in combination with cationic poly(NIPAM-co-DMAPAA), the dewatering rate was remarkably increased at relatively low temperatures. This increase was attributed to the formation of a polymer complex that decreased the LCST of the polymer molecules adsorbed on the sludge.
机译:研究了基于离子热敏聚合物亲水/疏水转变的新型方法对无机污泥进行脱水。作为无机污泥,使用了饮用水处理污泥。通过将作为阳离子组分的N,N-二甲基氨基丙基丙烯酰胺(DMAPAA)与作为热敏组分的N-异丙基丙烯酰胺(NIPAM)共聚而合成的阳离子热敏聚合物聚(NPAM-co-DMAPAA)对污泥脱水有效。当在室温下进行脱水时,类似于常规的亲水性聚合物絮凝剂,观察到用于脱水速率的最佳聚合物剂量。另一方面,当在高于聚(N1PAM-co-DMAPAA)的下临界溶液温度(LCST)以上进行脱水时,随着聚合物剂量的增加,脱水速率显着增加。如此高的脱水速率可归因​​于吸附在污泥上的热敏聚合物分子之间的疏水相互作用。然而,随着DMAPAA含量的增加,聚(NIPAM-co-DMAPAA)的LCST显着增加。为了解决该问题,研究了双离子热敏聚合物的使用。通过使用将丙烯酸(AAC)与NIPAM共聚而合成的阴离子热敏聚合物聚(NIPAM-co-AAC)与阳离子聚(NIPAM-co-DMAPAA)组合,脱水速率显着提高,相对低温。这种增加归因于形成聚合物复合物,该复合物降低了吸附在污泥上的聚合物分子的LCST。

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