首页> 外文期刊>International Journal of Environmental Sciences >Comparative depiction of removal performance of Poly (acrylamide-co-itaconic acid)/Charcoal and Chitosan/Charcoal composites for sorption of Antibiotic drug from simulated wastewater
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Comparative depiction of removal performance of Poly (acrylamide-co-itaconic acid)/Charcoal and Chitosan/Charcoal composites for sorption of Antibiotic drug from simulated wastewater

机译:聚丙烯酰胺/衣康酸/木炭和壳聚糖/木炭复合材料对模拟废水中抗生素药物的吸附去除性能的比较描述

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This study involves comparative study of equilibrium and kinetic sorption studies to remove antibiotic drug Ciprofloxacin (CF) from aqueous solutions using poly (acrylamide-co-itaconic acid)/charcoal composite i.e. [poly(AAm-co-IA)/Chl] and chitosan-charcoal composite i.e. Cht/Chl as polymeric cation exchanger sorbent materials. The composites prepared were characterized by FTIR spectroscopy and TGA analysis. In addition their physicochemical parameters were also determined. The various isotherm models, when applied to equilibrium sorption data at 25oC, followed the order of fitness as Temkin > Langmuir≈ Freundlich and Temkin>Freundlich>Langmuir, respectively for [poly (AAm-co-IA)/Chl] and Cht/Chl. The kinetic uptake data, obtained for [poly (AAm-co-IA)/Chl] and Cht/Chl sorbents exhibited the order of fitness as:? pseudo first order > Pore diffusion> simple Elovich model> pseudo second order and Pseudo second order > pseudo first order > pore diffusion > simple Elovich respectively. The sorption mean free energy from the Dubinin–Raduschkevich (DR) isotherm was found to be nearly? 12.91 kJ mol-1 and 5.59 kJ mol-1? indicating an ion-exchange mechanism for drug uptake? for only [poly (AAm-co-IA)/Chl. The optimum pH value of sorbate solution for drug uptake was found to be around 6.0. Finally, the antibacterial action of drug was investigated and it was found that after adsorption there was a decrease in bacterial growth inhibition efficiency of drug solution.
机译:这项研究涉及平衡和动力学吸附研究的对比研究,该研究使用聚(丙烯酰胺-衣康酸)/木炭复合物[聚(AAm-co-IA)/ Chl]和壳聚糖从水溶液中去除抗生素药物环丙沙星(CF)。 -木炭复合材料,即Cht / Chl作为聚合物阳离子交换剂的吸附材料。通过FTIR光谱和TGA分析表征所制备的复合材料。此外,还确定了它们的理化参数。当将各种等温模型应用于25oC的平衡吸附数据时,适用于[poly(AAm-co-IA)/ Chl]和Cht / Chl的适应性顺序分别为Temkin>Langmuir≈Freundlich和Temkin> Freundlich> Langmuir。 。从[poly(AAm-co-IA)/ Chl]和Cht / Chl吸附剂获得的动力学吸收数据显示适合度的顺序为:伪一阶>孔扩散>简单Elovich模型>伪二阶和伪二阶>伪一阶>孔扩散>简单Elovich。发现杜宾宁-拉杜施凯维奇(DR)等温线的吸附平均自由能接近? 12.91 kJ mol-1和5.59 kJ mol-1?表明药物吸收的离子交换机制?仅适用于[poly(AAm-co-IA)/ Chl。发现用于药物吸收的山梨酸盐溶液的最佳pH值为约6.0。最后,研究了药物的抗菌作用,发现吸附后,药物溶液的细菌生长抑制效率降低。

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