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Lithium recovery from highly concentrated solutions: Response surface methodology (RSM) process parameters optimization

机译:从高浓度溶液中回收锂:响应面法(RSM)工艺参数优化

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Lithium recovery from aqueous solutions was studied by trapping lithium ions using a gel of aluminum hydroxide freshly prepared in situ under the reaction of a strong base. A 2~(4-1) fractional factorial design and central composite design were employed for experimental design and analysis of the results. The combined effect of molar ratio Al/Li, pH and stirring time on lithium trapping at 25 deg C was investigated and optimized using response surface methodology (RSM). The optimum values of these factors were found to be 4.7, 7.2 and 3 h respectively. In this case the lithium trapping percent is approx 95 percent . The obtained model is highly significant (F_(obs)>F_(tabulate) and low p-value) with a correlation coefficient of 96.64 percent . On the other hand, linear, quadratic and interaction terms in this model have the largest statistical effect on the response (confidence level=99. percent ).
机译:通过在强碱反应下使用现场制备的氢氧化铝凝胶捕获锂离子,研究了从水溶液中回收锂的方法。实验设计和结果分析采用2〜(4-1)分数阶乘设计和中心复合设计。研究了Al / Li摩尔比,pH和搅拌时间对25℃下锂捕获的综合影响,并使用响应表面方法(RSM)进行了优化。这些因素的最佳值分别为4.7、7.2和3 h。在这种情况下,锂的捕获百分比约为95%。所获得的模型具有很高的显着性(F_(obs)> F_(表格)且p值低),相关系数为96.64%。另一方面,此模型中的线性,二次和交互作用项对响应的统计影响最大(置信度为99%)。

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