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Synthesis and characterization of PAMAM/SiO2 nanohybrid as a new promising adsorbent for pharmaceuticals

机译:PAMAM / SiO2纳米冬冬冬冬季的合成与表征作为药物新有前景吸附剂

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This research reports the synthesis of a dendritic adsorbent named polyamidoamine/silica (PAMAM/SiO2) nanohybrid and its application for adsorption of pharmaceutical pollutants from hospital wastewater. The characterization of the resulting nanohybrid was studied by the FTIR, XRD, TEM, SEM, BET, TGA and Zeta potential measurements. Then, a comparative evaluation was performed for four pharmaceuticals including clofibric acid, diclofenac, ibuprofen, and ketoprofen adsorption from aqueous solution by nanohybrid. Effects of various parameters such as nanohybrid dosage, drug concentration, pH of initial solution and contact time were investigated for a batch sorption system. The optimized operating conditions were 25 min, 298 K, pH = 9, 1 mg/L of adsorbent dose and 100 mu g/L of adsorbate concentration. The maximum sorption capacity were 94, 134, 124 and 112 mg/g for clofibric acid, diclofenac, ibuprofen and ketoprofen, respectively. Various kinetic models have been studied to recognize the pharmaceuticals sorption mechanism onto nanohybrid. The results showed that the sorption process obeyed the pseudo-second order kinetic models. Analysis of the adsorption process proved that the Langmuir isotherm was the most adapted model. The thermodynamic parameters have been calculated and it demonstrated that adsorption of four pharmaceuticals using nanohybrid was endothermic and spontaneous. This study convinced that PAMAM/SiO2 nanohybrid could be an attractive, alternative, effective, economical, and environmentally friendly adsorbent for pharmaceutical pollutants from hospital wastewater.
机译:本研究报告了名为聚酰胺胺/二氧化硅(PAMAM / SiO2)纳米胺的树突式吸附剂的合成及其在医院废水中吸附药物污染物的应用。通过FTIR,XRD,TEM,SEM,BET,TGA和ZETA电位测量研究所得纳米冬次的表征。然后,对由纳米次碱从水溶液中的四种药物进行比较评估,包括甲纤维酸,双氯芬酸,布洛芬和酮洗涤吸附。各种参数如纳米次组剂量,药物浓度,初始溶液的pH和接触时间的影响,对分批吸附系统研究。优化的操作条件为25分钟,298K,pH = 9,100mg / L吸附剂量和100μg的吸附浓度。对于Cloficric酸,双氯芬酸,布洛芬和酮洛芬的最大吸附能力分别为94,134,124和112mg / g。已经研究了各种动力学模型以将药物吸附机制识别到纳米冬次上。结果表明,吸附过程遵循伪二次阶动力学模型。对吸附过程的分析证明了Langmuir等温线是最适应的模型。已经计算了热力学参数,并且证明使用纳米冬次的四种药物吸附于吸热和自发性。本研究确信,Pamam / SiO2纳米冬青可能是医院废水的药物污染物的吸引力,替代,有效,经济,和环保的吸附剂。

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