用格林法合成的三种不同金属纳米颗粒去除合成水溶液中的环丙沙星抗生素

A. M. Shakorfow, Najah Al Mhanna, M. Atiya, Ahmed K. Hassan, Fatimah Q. Kadhim, Zainab A. Mahmoud, Azza Hashim Abbas
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引用次数: 0

摘要

本文研究了三种吸附剂对环丙沙星(CIP)去除的可能性,这三种吸附剂分别是绿色制备的铁纳米颗粒(Fe.NPs)、铜纳米颗粒(Cu. nps)。NPS)和银纳米粒子(Ag。NPS)从合成水溶液中提取。用不同的分析方法对它们进行了表征。根据表征结果,每个制备的NPs都具有球体形状,尺寸范围为85、47和32纳米,Fe的表面积分别为2.1913、1.6562和1.2387 m2/g。NPs、铜。NPs和Ag。NPs分别。通过批量实验考察了pH、初始CIP浓度、温度、NPs投加量、时间等参数对CIP去除率的影响。结果表明,Fe在180 min内对10 mg/L的CIP去除率分别为100%、92%和79%。NPs、铜。NPs和Ag。NPs分别。此外,还对其吸附动力学模型和去除机理进行了研究。电影分析表明吸附为物理吸附机制,吸附能量为0.846 kJ。mol- 1,1.720 kJ。mol-1和3.872 kJ。而活化能较低,为17.660 kJ。mol- 1,13.221 kJ。mol-1和14.060 kJ。Fe的mol-1。NPs、铜。NPs和Ag。NPs分别。动力学去除过程遵循物理扩散控制反应后的伪一阶模型。采用Langmuir、Freundlich、Temkin和Dubinin模型及热力学因素对吸附数据进行了分析,表明该吸附过程适宜吸热吸附。最实用的吸附剂是铁。NPs
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Removal of Ciprofloxacin Antibiotic from Synthesized Aqueous Solution Using Three Different Metals Nanoparticles Synthesized Through the Green Method
This study investigates the possibility of removing ciprofloxacin (CIP) using three types of adsorbent based on green-prepared iron nanoparticles (Fe.NPs), copper nanoparticles (Cu. NPS), and silver nanoparticles (Ag. NPS) from synthesized aqueous solution. They were characterized using different analysis methods. According to the characterization findings, each prepared NPs has the shape of a sphere and with ranges in sizes from of 85, 47, and 32 nanometers and a surface area of 2.1913, 1.6562, and 1.2387 m2/g for Fe.NPs, Cu.NPs and Ag.NPs, respectively. The effects of various parameters such as pH, initial CIP concentration, temperature, NPs dosage, and time on CIP removal were investigated through batch experiments. The results showed that 10 mg/L CIP was removed by 100%, 92% and 79% within 180 min using Fe.NPs, Cu.NPs, and Ag.NPs respectively. In addition to this, kinetic models of the adsorption and mechanism of CIP removal were studied. The cinematic analysis demonstrated that adsorption is a physics adsorption mechanism with an energy of 0.846 kJ.mol-1, 1.720 kJ.mol-1, and 3.872 kJ.mol-1, while the low activation energies of 17.660 kJ.mol-1, 13.221 kJ.mol-1, and 14.060 kJ.mol-1 for Fe.NPs, Cu.NPs, and Ag.NPs respectively. The kinetic removal process follows a pseudo-first-order model following a physical diffusion-controlled reaction. The data on adsorption was analyzed using the Langmuir, Freundlich, Temkin, and Dubinin models, as well as thermodynamic factors, indicating that the process is appropriate and endothermic sorption. The most practical adsorbent was Fe.NPs     
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