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首页> 外文期刊>Journal of environmental sciences >Removal of bentazone from micro-polluted water using MIEX resin: Kinetics, equilibrium, and mechanism
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Removal of bentazone from micro-polluted water using MIEX resin: Kinetics, equilibrium, and mechanism

机译:使用MIEX树脂从微污染水中去除苯达松的动力学,平衡和机理

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摘要

The contamination of surface and ground water by bentazone has attracted increasing global concern in recent years. We conducted a detailed investigation using MIEX resin to eliminate bentazone from waters. Batch experiments were carried out to evaluate the effect of process parameters, such as retention time, resin amount, and initial pesticide concentration, on removal efficiency of bentazone. Results showed the sorption process was fast and bentazone could be efficiently removed in 30 minutes. The kinetic process of bentazone sorption on MIEX resin was well described by pseudo second-order model and intraparticle diffusion was the rate controlling step. The MIEX resin possessed the highest sorption capacity of 0.2656 mmol/mL for bentazone according to Langmuir fitting. Bentazone is a hydrophobic ionizable organic compound, and both ionic charge and hydrophobic aromatic structure governed the sorption characteristics on MIEX resin. The different removal efficiencies of ionic and non-ionic pesticides, combined with the charge balance equations of bentazone, SO_4~(2-), NO_3~- and Cl~-, indicated that removal of bentazone using MIEX resin occurred primarily via ion exchange.
机译:近年来,苯达松对地表水和地下水的污染引起了全球越来越多的关注。我们使用MIEX树脂进行了详细的研究,以消除水中的苯达松。进行批处理实验以评估工艺参数(如保留时间,树脂量和初始农药浓度)对苯达松去除效率的影响。结果表明,吸附过程很快,可以在30分钟内有效去除苯达松。拟二阶模型很好地描述了苯达松在MIEX树脂上的吸附动力学过程,颗粒内扩散是速率控制步骤。根据Langmuir拟合,MIEX树脂对苯达松的最高吸附容量为0.2656 mmol / mL。 Bentazone是疏水性可电离的有机化合物,离子电荷和疏水性芳族结构均决定着MIEX树脂的吸附特性。离子和非离子农药的去除效率不同,结合苯达松,SO_4〜(2-),NO_3〜-和Cl〜-的电荷平衡方程,表明MIEX树脂对苯达松的去除主要通过离子交换发生。

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