首页> 外文期刊>Journal of Environmental Science and Health. A >Adsorption and removal of a selected emerging contaminant, carbamazepine, using Humic acid, Humasorb and Montmorillonite. Equilibrium isotherms, kinetics and effect of the water matrix
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Adsorption and removal of a selected emerging contaminant, carbamazepine, using Humic acid, Humasorb and Montmorillonite. Equilibrium isotherms, kinetics and effect of the water matrix

机译:使用腐殖酸,孵化器和蒙脱石的吸附和去除选定的新兴污染物,胭脂动物。平衡等温线,动力学和水基的影响

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Carbamazepine is an antiepileptic drug that is not easily degraded in the environment. In this study, the removal of carbamazepine, an emerging contaminant, dissolved in deionized water and wastewater matrices by means of their adsorption onto Humic Acid, Humasorb and Montmorillonite was investigated. The effect of various parameters including adsorption time, adsorbent dosage, and initial adsorbate concentration was determined. The optimum exposure time for the removal of carbamazepine by Humic Acid was 30 min and by Humasorb and Montmorillonite were 2 h, in both distilled and wastewater. The maximum percent removal of carbamazepine by Humic Acid, Humasorb and Montmorillonite in deionized water was 90.5 +/- 3.1%, 85.2 +/- 2.3% and 83.8 +/- 4.5% and in wastewater was 87.0 +/- 1.5%, 87.3 +/- 5.1% and 78.2 +/- 1.2%, respectively, when the initial concentration of carbamazepine was 20 mu g/mL and the mass of absorbent 100 mg in 10 mL samples. Three isotherms models including Langmuir, Freundlich, and Elovich were applied to the experimental data. It was found that the adsorption isotherms for the two adsorbents best matched Langmuir model indicating surface adsorption from deionized water (R (2)= 0.986 for Humic Acid, R (2) = 0.955 for Humasorb and R (2) = 0.865 for Montmorillonite) as well as from wastewater (R (2) = 0.893 for Humic Acid, R (2) = 0.949 for Humasorb and R (2) = 0.984 for Montmorillonite). According to the kinetic studies, the pseudo-second-order kinetic model better fits to the removal of carbamazepine by the three adsorbents from both water matrices. However, pseudo-second-order model cannot exclusively explain the experimental data trend, but it could be explained by diffusion.
机译:卡巴马嗪是一种抗癫痫药物,不易在环境中降解。在本研究中,研究了通过吸附在腐殖酸,umasObl和Montmorililonite上,去除氨基吡啶,溶解在去离子水和废水基质中的新兴污染物。确定包括吸附时间,吸附剂剂量和初始吸附浓度的各种参数的效果。通过腐殖酸去除卡巴马氨酸的最佳暴露时间为30分钟,并且在蒸馏和废水中,通过Humasorb和Montmorillonite为2小时。去离子水中的腐殖酸,umasorb和蒙脱石的最大百分比为90.5 +/- 2.1%,85.2 +/- 2.3%和83.8 +/- 4.5%,废水为87.0 +/- 1.5%,87.3 + / - 当初始浓度为20μg/ ml时分别为5.1%和78.2 +/- 1.2%,并且10ml样品中的吸收剂100mg的质量。包括Langmuir,Freundlich和Elovich在内的三个等温机构模型应用于实验数据。发现两种吸附剂的吸附等温线最佳匹配的Langmuir模型,其表明从去离子水(R(2)= 0.986的腐殖酸,R(2)= 0.955用于Humasorb和R(2)= 0.865的Langmuir模型除了废水(R(2)= 0.893的腐殖酸,R(2)= 0.949用于纯汞,R(​​2)= 0.984用于蒙脱石)。根据动力学研究,伪二阶动力学模型更符合来自两种水基质的三种吸附剂去除尿道脂。然而,伪二阶模型不能完全解释实验数据趋势,但可以通过扩散解释。

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