首页> 外文期刊>International Journal of Pharmaceutical Investigation >Adsorption Equilibrium and Thermodynamic Studies of Ciprofloxacin from Aqueous Solutions by Magnetic Bentonite Nanocomposites
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Adsorption Equilibrium and Thermodynamic Studies of Ciprofloxacin from Aqueous Solutions by Magnetic Bentonite Nanocomposites

机译:磁性膨润土纳米复合材料水溶液中环丙沙星的吸附平衡和热力学研究

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Objectives: Today, due to increasing usage of antibiotics and their destructive effects on health and environment, it is necessary to remove them from receiving waters. Although there are few studies on the use of magnetic nanocomposites for removal of different antibiotics, but the effect of this adsorbent on the removal of Ciprofloxacin (CIP) has not been evaluated yet. Therefore, this study was conducted to investigate the removal of CIP by magnetic Bentonite nanocomposites (Fe 3 O 4 - BNP) as an adsorbent. Methods: Batch studies were performed to evaluate and optimize the effects of various parameters such as contact time, temperature of the solution, CIP concentrations and Fe 3 O 4 -BNP dosage. The adsorbent characteristics were determined using SEM and FT-IR spectroscopy. Also, the adsorbent surface area was measured by BET technique. Results: the optimal values for the factors affecting CIP removal were calculated. It was revealed that the maximum CIP removal was obtained at pH = 7, temperature = 55°C, CIP concentration = 10 mg/L, Fe 3 O 4 -BNP dosage = 1.25 g/L and contact time= 90 min. The maximum removal percentage was 99.25%. It was also revealed that Langmuir isotherm is the best fitted isotherm model. The thermodynamic parameters like ΔG0, ΔH0 and ΔS0 changes for the adsorption of CIP have also been computed and discussed. The heat of adsorption implied that the adsorption was exothermic in nature. Conclusion: The Fe 3 O 4 -BNP was successfully applied for the uptake of CIP from industrial wastewater and separated easily by means of magnetic separation.
机译:目的:今天,由于抗生素的使用增加以及对健康和环境的破坏性影响,有必要将它们从接收水域中移除。尽管少量关于使用磁性纳米复合材料以去除不同抗生素的研究,但尚未评估该吸附剂对加氢氟苯胺(CIP)的去除的影响。因此,进行该研究以研究磁性膨润土纳米复合材料(Fe 3 O 4 - BNP)作为吸附剂的去除。方法:进行批量生研究以评价和优化各种参数,例如接触时间,溶液温度,CIP浓度和Fe 3 O 4 -BP剂量的影响。使用SEM和FT-IR光谱测定吸附剂特性。而且,通过BET技术测量吸附表面积。结果:计算了影响CIP去除的因素的最佳值。揭示了在pH = 7,温度= 55℃,CIP浓度= 10mg / L,Fe 3 O 4 -BP剂量= 1.25g / L并接触时间= 90分钟的最大CIP去除。最高去除率为99.25%。还透露,Langmuir等温线是最适合的等温模型。还计算和讨论了热力学参数,如ΔG0,ΔH0和ΔS0的吸附的变化。吸附热暗示吸附性在自然界中放热。结论:Fe 3 O 4 -BP已成功应用来自工业废水的CIP的摄取,并通过磁性分离轻松分离。

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