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镁离子掺杂膨润土黏土用于饮用水除氟。

Magnesium incorporated bentonite clay for defluoridation of drinking water.

机构信息

National Environmental Engineering Research Institute (NEERI-CSIR), Nagpur 440020, India.

出版信息

J Hazard Mater. 2010 Aug 15;180(1-3):122-30. doi: 10.1016/j.jhazmat.2010.04.001. Epub 2010 Apr 9.

Abstract

Low cost bentonite clay was chemically modified using magnesium chloride in order to enhance its fluoride removal capacity. The magnesium incorporated bentonite (MB) was characterized by using XRD and SEM techniques. Batch adsorption experiments were conducted to study and optimize various operational parameters such as adsorbent dose, contact time, pH, effect of co-ions and initial fluoride concentration. It was observed that the MB works effectively over wide range of pH and showed a maximum fluoride removal capacity of 2.26 mgg(-1) at an initial fluoride concentration of 5 mg L(-1), which is much better than the unmodified bentonite. The experimental data fitted well into Langmuir adsorption isotherm and follows pseudo-first-order kinetics. Thermodynamic study suggests that fluoride adsorption on MB is reasonably spontaneous and an endothermic process. MB showed significantly high fluoride removal in synthetic water as compared to field water. Desorption study of MB suggest that almost all the loaded fluoride was desorbed ( approximately 97%) using 1M NaOH solution however maximum fluoride removal decreases from 95.47 to 73 (%) after regeneration. From the experimental results, it may be inferred that chemical modification enhances the fluoride removal efficiency of bentonite and it works as an effective adsorbent for defluoridation of water.

摘要

采用氯化镁对廉价膨润土进行化学改性,以提高其除氟能力。采用 XRD 和 SEM 技术对镁改性膨润土(MB)进行了表征。通过批量吸附实验研究和优化了各种操作参数,如吸附剂剂量、接触时间、pH 值、共离子效应和初始氟浓度。结果表明,MB 在较宽的 pH 范围内有效,在初始氟浓度为 5mg/L 时,最大氟去除容量为 2.26mgg-1,明显优于未改性膨润土。实验数据拟合Langmuir 吸附等温线和遵循拟一级动力学。热力学研究表明,MB 上的氟吸附是合理自发的、吸热过程。MB 在合成水中的氟去除率明显高于田间水。MB 的解吸研究表明,使用 1M NaOH 溶液几乎可以完全解吸(约 97%)所有负载的氟,但再生后最大氟去除率从 95.47%下降到 73%。从实验结果可以推断,化学改性提高了膨润土的除氟效率,是一种有效的除氟水吸附剂。

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