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Optimization of phosphate removal in anodizing aluminium wastewater

机译:阳极氧化铝废水中磷酸盐去除的优化

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The wastewater produced after brightening and anodizing aluminium has high concentrations of phosphates and sulphates. The addition of MgO in a first physico-chemical wastewater treatment step makes the selective recovery of phosphates in the form of magnesium phosphates feasible, which may be reused as fertilizer. The proposed wastewater treatment process allows manufacturers to reduce more than 70% of the volume of the precipitate in the sedimentation reactor and more than 50% of the weight of the final disposal sludge. In this study, the use of an alternative low-grade MgO (LG-MgO) as a source of magnesium, which is cheaper than pure MgO, is investigated. The phosphate concentration and pH of the treated wastewater is controlled by the formation and precipitation of newberyite or bobierrite as a function of the magnesium source added. According to experimental data, a reaction mechanism is proposed. Although LG-MgO reacts more slowly than pure MgO and it is necessary to add 3-4 times the stoichiometric amount, this procedure has considerable economic and technical advantages.
机译:铝增亮和阳极氧化后产生的废水中含有高浓度的磷酸盐和硫酸盐。在第一个物理化学废水处理步骤中添加MgO使得以磷酸镁的形式选择性回收磷酸盐成为可能,可以将其重新用作肥料。拟议的废水处理工艺可使制造商减少沉淀反应器中沉淀物体积的70%以上,并减少最终处置污泥重量的50%以上。在这项研究中,研究了使用替代的低品位MgO(LG-MgO)作为镁的来源,它比纯MgO便宜。处理过的废水中磷酸盐的浓度和pH值是根据新加入的镁源的作用而形成的新水铁矿或水铁矿的形成和沉淀来控制的。根据实验数据,提出了一种反应机理。尽管LG-MgO的反应比纯MgO慢,并且有必要添加化学计量的3-4倍,但该方法具有可观的经济和技术优势。

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