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Validation and Applications of a Chemical Equilibrium Model for Struvite Precipitation

机译:鸟粪石沉淀化学平衡模型的验证与应用

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Removal of nutrients like nitrogen and phosphorus from wastewater can be accomplished by precipitating these as the mineral struvite (NH_4MgPO_4. 6H_2O). Predicting struvite precipitation potential, yield, and purity is important for designers and operators of reactors for struvite precipitation. In this paper, a mathematical model of this precipitation process is developed using physico-chemical equilibrium expressions, mass balance equations for nitrogen, phosphorous and magnesium, and charge balance. The model was simulated to explicitly solve for equilibrium concentrations of eighteen species that included dissolved (three), ionic (ten), and solid (five) species for a given set of initial concentrations of ammonium-nitrogen, magnesium and phosphate-phosphorus, and pH. The model simulations were validated against literature experimental data, which used synthetic as well as actual wastewater, and data from our experiments. The model satisfactorily predicted most data. Struvite fraction in the precipitate ranged from 27% to 100%. The purity of struvite in the precipitate and the pH that maximizes struvite fraction was dependent on the initial concentrations of ammonium, magnesium, and phosphate. Optimum pH and struvite fraction was, respectively, 8.5 and 29.3% for an equimolar mixture of ammonia, magnesium, and phosphate and 9.8 and 98.3% for 10:1.7:3.4 mM ratio. Struvite fraction in the precipitate increased as magnesium became limiting or as ammonia to phosphate ratio increased and magnesium to phosphate ratio decreased. Since the struvite component is only a fraction of the total solids, it is erroneous to reportrnthe total precipitate produced as being struvite as is conventionally done.
机译:可以通过将其沉淀为鸟粪石(NH_4MgPO_4。6H_2O)来去除废水中的氮和磷等营养物质。对于鸟粪石沉淀反应器的设计者和操作者而言,预测鸟粪石沉淀的潜力,产率和纯度很重要。在本文中,利用理化平衡表达式,氮,磷和镁的质量平衡方程以及电荷平衡,建立了该沉淀过程的数学模型。对模型进行了仿真,以针对给定的一组初始浓度的铵-氮,镁和磷酸盐-磷,明确求解包括溶解(三种),离子(十种)和固体(五种)在内的十八种物质的平衡浓度,以及pH值模型模拟已针对文献实验数据进行了验证,该文献使用合成废水和实际废水以及我们的实验数据。该模型令人满意地预测了大多数数据。沉淀物中的鸟粪石含量为27%至100%。沉淀物中鸟粪石的纯度和使鸟粪石部分最大化的pH值取决于铵,镁和磷酸盐的初始浓度。对于氨,镁和磷酸盐的等摩尔混合物,最佳pH和鸟粪石分数分别为8.5和29.3%,对于10:1.7:3.4 mM比率,最佳pH和鸟粪石分数为9.8和98.3%。沉淀物中的鸟粪石含量随镁的含量升高或氨/磷酸盐比增加而镁/磷酸盐比降低而增加。由于鸟粪石成分仅占总固体的一部分,因此像传统方法那样将所产生的总沉淀物报告为鸟粪石是错误的。

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