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Phosphorus and potassium recovery from human urine using a fluidized bed homogeneous crystallization (FBHC) process

机译:利用流化床均匀结晶(FBHC)工艺从人尿(FBHC)工艺中磷和钾回收

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摘要

Most of nutrients in municipal wastewater originate from human urine. In this study, a novel fluidized-bed homogeneous crystallization process was developed for the simultaneous recovery of phosphorus (P) and potassium (K) from synthetic human urine. The operational variables including pH, Mg:K ratios and up-flow velocity were tested in the laboratory. The total removal of P and K (TR%) reached 98.4% and 70.5%, respectively, and the crystallization ratios (CR%) were 86.5% and 62.3%, respectively, at conditions of pH 10 +/- 0.2, molar ratio Mg:K = 1.25, initial concentrations 850 mg P/L and 1830 mg K/L. The SEM and XRD analyses showed that the fluidized bed homogeneous crystallization (FBHC) product was pure magnesium potassium phosphate (K-struvite) (average size = 0.85 mm; purity = 95 +/- 3%). The modelling of minimum fluidization velocity (MFV) resulted in values of up-flow 1.5-2.0 times the MFV for the effective fluidization. The profit of the recovery of P and K from human urine via FBHC process could be $0.26/m(3) -urine.
机译:市政废水中的大多数营养素来自人类尿液。在该研究中,开发了一种新型流化床均匀结晶过程,用于同时从合成人尿中同时恢复磷(P)和钾(K)。在实验室测试包括pH,Mg:K比和上流速的操作变量。 P和K(Tr%)的总除去分别达到98.4%和70.5%,结晶比(Cr%)分别在pH 10 +/- 0.2,摩尔比Mg条件下分别为86.5%和62.3% :k = 1.25,初始浓度850mg p / l和1830 mg k / l。 SEM和XRD分析表明,流化床均匀结晶(FBHC)产物是纯镁磷酸钾(K-斯特勒布)(平均尺寸= 0.85mm;纯度= 95 +/- 3%)。最小流化速度(MFV)的建模导致MFV的上流1.5-2.0倍的值为有效流化。通过FBHC进程从人尿的P和K恢复的利润可为0.26 / m(3)卢辛。

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