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Use of the Solubility Domain Approach for the Modeling of the Hydroxide Precipitation of Heavy Metals from Wastewater

机译:溶解度域方法在废水中重金属氢氧化物沉淀建模中的应用

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The use of the solubility domain approach for providing representative effluent treatment quality assurance standards for the hydroxide precipitation of Zn~(2+), Pb~(2+), and Fe~(3+) from various wastewater composition types has been modeled and experimentally validated. Solubility domain calculations were based on the precipitated phases isolated from systems representing the upper and lower limits of potential effluent chemical compositions. All such phases resembled their mineralized counterparts with a lower degree of structural order. For all systems modeled, the experimentally observed solubilities were generally encompassed within the predicted solubility domains. Validation of the approach using real treatment data demonstrated the effectiveness of the solubility domain method in predicting optimum operating condition ranges for wastewater treatment. Prediction accuracy was largely dependent on the nature of the solubility-limiting phase. With the exception of carbonate-rich systems, changes to the aqueous-phase complexation had a minimal impact on solubility in comparison to selection of the solubility-limiting phases.
机译:使用溶解度域方法为从各种废水组成类型中的Zn〜(2 +),Pb〜(2+)和Fe〜(3+)的氢氧化物沉淀提供代表性的废水处理质量保证标准进行了建模和建模经过实验验证。溶解度域的计算基于从代表潜在废水化学成分上限和下限的系统中分离出的沉淀相。所有这些相都类似于它们的矿化相,具有较低的结构序度。对于所有建模的系统,实验观察到的溶解度通常包含在预测的溶解度域内。使用实际处理数据对方法进行的验证表明,溶解度域方法在预测废水处理的最佳操作条件范围方面是有效的。预测精度在很大程度上取决于溶解度限制相的性质。除了富含碳酸盐的体系以外,与水相限制相的选择相比,水相络合的变化对溶解度的影响最小。

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