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Insight into effects of organic and inorganic phosphorus speciations on phosphorus removal efficiency in secondary effluent

机译:有机和无机磷防守对二次出水中磷去除效率的影响

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Most previous studies of phosphorus (P) removal focused on investigation of the soluble, and particulate P, but ignoring the difference between organic and inorganic P. In this study, the effects of various flocculants, namely polyacrylamide (PAM) and polyaluminum chloride (PAC), on flocculation efficiency in different P speciations (organic and inorganic P) were investigated. A modified method to differentiate between organic and inorganic P content in secondary effluent samples was developed. The results showed that P speciation based on organic/inorganic P (Pearson’s correlation R?=?0.915, p??0.05) in evaluating the P content in secondary effluents. The liquid 31P nuclear magnetic resonance measurements results indicated that PAM was more effective in removing organic P (phosphonates and orthophosphate monoesters) rather than inorganic P. However, PAC was more effective in removing inorganic P (particularly orthophosphate) rather than organic P. Based on the modeled results of a response surface methodology (RSM), doses of PAM and PAC were optimized for secondary effluent containing different amounts of organic and inorganic P from the two typical wastewater treatment plants (WWTPs) in Wuhan city, China.
机译:大多数先前的磷(P)去除研究集中在可溶性的调查,和颗粒P,但是忽略有机和无机P之间的差。在本研究中,各种絮凝剂,即聚丙烯酰胺(PAM)和聚氯化铝的影响(PAC ),在不同的P赋存絮凝效果(有机和无机P)进行了调查。一种改进的方法,以二级出水样品中的有机和无机磷含量区分被开发。结果表明:基于有机/无机磷将P物种(Pearson相关R 1 =?0.915,P <??0.05)比基于可溶性/颗粒P(P'的那些更有效>在评价中P含量?0.05)在二次流出物。液体31P核磁共振测量结果表明,PAM是在去除有机P(膦酸酯和正磷酸的单酯),而不是无机P.然而更有效,PAC在上去除无机P(特别是正磷酸盐),而不是有机P.基于更有效一个响应面分析法(RSM)的模拟结果,PAM和PAC的剂量含有不同量的有机和无机P的从在武汉市,中国的两个典型的废水处理厂(污水处理厂)二级废水进行了优化。

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