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Phosphate enhance recovery from wastewater by mechanism analysis and optimization of struvite settleability in fluidized bed reactor

机译:通过流化床反应器的机理分析和鸟粪石沉降性的优化来提高磷酸盐的回收率

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摘要

Since phosphorus, a non-renewable and non-substitutable resource, has become the principal contributor and limiting factor to water eutrophication, achieving phosphorus removal and recovery from wastewater is pretty essential. Even though struvite crystallization process has been widely used for phosphate (P) recovery in wastewater treatment, its application is hampered by difficulties controlling small particle size and crystal growth. This study was conducted to control the settleability of struvite by calculating and predicting the struvite-settling percentage (Ps), which is always affected by the initial concentration of P (CP), solution pH (pH), reaction time (t), reaction temperature (T), agitation rate (Ar), and inlet flow velocity (vf) of the fluidized bed reactor. The results showed that the settleability of struvite could be enhanced by increasing T and decreasing pH, Ar, or vf, and would perform worse with overlong t or excessive CP. The dynamic variation process of the solution supersaturated index (SI) combined with the phase equilibrium theory and Ostwald ripening mechanism explained the above results sufficiently. The logistic model was chosen to predict the Ps under multi-factors, but the accuracy needs to be improved.
机译:由于磷是不可再生和不可替代的资源,已成为水富营养化的主要因素和限制因素,因此实现废水的除磷和回收非常重要。尽管鸟粪石结晶工艺已广泛用于废水处理中的磷酸盐(P)回收,但由于难以控制小粒径和晶体生长,因此阻碍了其应用。这项研究旨在通过计算和预测鸟粪石沉降百分比(Ps)来控制鸟粪石的沉降性,鸟粪石沉降百分比(Ps)始终受P的初始浓度(CP),溶液pH(pH),反应时间(t),反应的影响流化床反应器的温度(T),搅拌速率(Ar)和入口流速(vf)。结果表明,鸟粪石的沉降性可以通过增加T和降低pH,Ar或v f 来增强,而在 t 太长或过量时会表现得较差。 C P 。溶液过饱和指数(SI)的动态变化过程结合相平衡理论和奥斯特瓦尔德熟化机理充分解释了以上结果。选择了逻辑模型来预测多因素下的 P s ,但准确性有待提高。

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