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Predictive equations for the defluoridation by electrocoagulation technique using bipolar aluminum electrodes in the absence and presence of additives: a multivariate study

机译:在不存在和存在添加剂的情况下,使用双极铝电极通过电凝技术进行除氟的预测方程式:多变量研究

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The adverse public health problem due to the fluoride that is found in drinking water and waste water is of great concern. In the present work, the effect of different variables on the defluoridation by electrocoagulation (EC) process was studied. The variables were analar and commercial sodium fluoride solutions, different fluoride concentrations, pH of solution, temperature, speed of agitation, electrode spacing, type of comprising water, electrolyte additives (NaCl, KCl, NH4Cl, and CH3COONH4), and mono and bipolar configurations. The present data indicated that the time required to reach the highest % extractions for the different concentrations of fluoride solutions (57.90, 42.30, 29.0, 21.50, 11.60, and 6.44mg/L) was 5-15min. Among the studied variables that significantly affected the maximum defluoridation efficiency, the type of comprised water was the only variable that did not pose observable effect. Statistically, a multivariate study was applied to get a set of predictive multiple regression equations, those were under constant and variable conditions of the fluoride removal process. Interestingly, these equations significantly represented the EC defluoridation technique under the studied variables. Due to the high economic value, the low applicable energy, as well as the saving of time that belong to the process of fluoride removal by EC, it is advisable to use the predictive equations for the EC defluoridation of different waters and wastewaters under the same conditions .
机译:饮用水和废水中发现的氟化物引起的不利于公共卫生的问题备受关注。在目前的工作中,研究了不同变量对电凝(EC)工艺脱氟的影响。变量包括肛门和市售氟化钠溶液,不同的氟化物浓度,溶液的pH值,温度,搅拌速度,电极间距,水的类型,电解质添加剂(NaCl,KCl,NH4Cl和CH3COONH4)以及单极性和双极性配置。目前的数据表明,对于不同浓度的氟化物溶液(57.90、42.30、29.0、21.50、11.60和6.44mg / L),达到最高提取%所需的时间为5-15分钟。在显着影响最大除氟效率的研究变量中,所含水的类型是唯一未引起明显效果的变量。在统计学上,多变量研究用于获得一组预测的多元回归方程,这些方程是在除氟过程的恒定和可变条件下进行的。有趣的是,在所研究的变量下,这些方程式明显代表了EC脱氟技术。由于经济价值高,适用能源低,并且节省了EC去除氟化物的时间,因此建议使用预测方程式对相同条件下不同水和废水进行EC脱氟。条件 。

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