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Statistical optimization study of adsorption parameters for the removal of glyphosate on forest soil using the response surface methodology

机译:响应面法统计去除森林土壤中草甘膦吸附参数的统计优化研究

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The present study highlights the use of forest soil for glyphosate removal from aqueous solutions under different experimental conditions through batch mode and optimizing the process conditions. Maximum glyphosate adsorption (161.29 mg/g) occurred at pH 12. Experimental data of glyphosate biosorption onto forest soil fitted well to Langmuir isotherm model in comparison with the Freundlich and D-R model. Kinetic studies were carried out to get useful information on the rate of glyphosate adsorption onto the forest soil, which was found to follow pseudosecond-order model. Four important process parameters including glyphosate concentration (5-30 mg/L), pH (2-14), contact time (5-120 min) and dose (0.05-1.5) were optimized to obtain the best response of glyphosate removal using the statistical Box-Behnken design. Optimized values of initial glyphosate concentration, pH, contact time and dose were found as 25.74 mg/L, 12.0, 119.99 min and 0.05 g, respectively, with the 87.8% removal efficiency. The efficiency of the operating variables was also assessed by the percent contribution and Pareto analysis. Thermodynamics data suggest that glyphosate adsorption is spontaneous in nature. The results revealed that forest soil can be used as an effective and low-cost adsorbent to remove glyphosate from aqueous solutions.
机译:本研究强调了在不同的实验条件下,通过分批模式和优化工艺条件,从土壤溶液中去除草甘膦的森林土壤。草甘膦最大吸附量(161.29 mg / g)在pH值为12时发生。与Freundlich和D-R模型相比,草甘膦对森林土壤生物吸附的实验数据非常适合Langmuir等温线模型。进行了动力学研究,以获取有关草甘膦吸附到森林土壤上的速率的有用信息,该模型遵循伪二级模型。优化了四个重要的工艺参数,包括草甘膦浓度(5-30 mg / L),pH(2-14),接触时间(5-120分钟)和剂量(0.05-1.5),以获得使用草甘膦去除的最佳响应统计Box-Behnken设计。草甘膦初始浓度,pH,接触时间和剂量的最佳值分别为25.74 mg / L,12.0、119.99 min和0.05 g,去除效率为87.8%。还通过百分比贡献和帕累托分析评估了操作变量的效率。热力学数据表明,草甘膦的吸附性质是自然的。结果表明,森林土壤可用作从水溶液中去除草甘膦的有效且低成本的吸附剂。

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