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Enhanced Production of in Situ Keggin Al-13(7+) Polymer by a Combined Fe-Al Coagulation Process for the Treatment of High Alkalinity Water

机译:通过组合的Fe-Al凝固方法增强原位Keggin Al-13(7+)聚合物的生产,用于治疗高碱度水

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Treatment of high alkalinity water by coagulation is one of the challenges for drinking water treatment. The solution of acidifying the raw water or adding more coagulants would inevitably increase the corrosive tendency and treatment costs. In this study, a combined Fe-Al coagulation, during which a small amount of Fe was introduced prior to Al, promoted the coagulation efficiency of Al salts significantly. In contrast to the individual Al process, the combined Fe-Al coagulation accelerated the floc growth rate with the turbidity removal increased from 46% to 73% at the Fe:Al mole ratio of 1:10 and time interval of 10 s, and better tolerated the high basicity. The Keggin Al-13(7+) polymer of the combined process was confirmed by the surface-enhanced Raman spectroscopy, X-ray photoelectron spectra, and Al-27 nuclear magnetic resonance analyses, and its enhanced generation induced by the Fe addition was investigated by the Ferron assay. The favored local pH at the colloid-water interface governed by the hydrolysis of Fe was proposed to be responsible for the enhanced coagulation of Al salts. The potential applicability of the combined Fe-Al coagulation was further demonstrated by its desirable impurity removal efficiency for the treatment of a high alkaline/pH algae containing source water.
机译:通过凝结处理高碱度水是饮用水处理的挑战之一。酸化原水或添加更多凝结剂的溶液将不可避免地增加腐蚀性趋势和治疗成本。在该研究中,在Al之前引入少量Fe的组合Fe-Al凝固,促进了Al Salts的凝固效率。与个体Al工艺相比,组合的Fe-Al凝固加速了浊度去除的絮凝率从Fe:Al摩尔比的46%增加到73%,摩尔比为1:10和10 s的时间间隔,更好容忍高碱度。通过表面增强的拉曼光谱,X射线光电子和27核磁共振分析证实了组合过程的Keggin Al-13(7+)聚合物,并研究了Fe添加引起的增强的产生通过铁纶测定。提出了通过Fe水解的胶体 - 水界面的受欢迎的局部pH值是负责增强Al Salts的凝固。通过其理想的杂质去除效率进一步证明了Fe-Al凝血的潜在适用性,用于治疗含有源水的高碱/ pH藻类。

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