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首页> 外文期刊>Desalination and water treatment >Activated carbon embedded chitosan/polyvinyl alcohol biocomposites for adsorption of nonsteroidal anti-inflammatory drug-naproxen from wastewater
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Activated carbon embedded chitosan/polyvinyl alcohol biocomposites for adsorption of nonsteroidal anti-inflammatory drug-naproxen from wastewater

机译:活性炭包埋的壳聚糖/聚乙烯醇生物复合材料吸附废水中的非甾体类抗炎药萘普生

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The feasibility of using activated carbon/chitosan-poly (vinyl alcohol) biocomposites (AC/CHT-PVA) as an adsorbent for removal of naproxen from a factory wastewater in Tuzla, Istanbul/Turkey was studied in the presented study. The biocomposites were synthesized with different AC: CHT-PVA ratios of 1.0; 2.0 and 3.0 (w/w). The adsorbent materials were characterized by FT-IR, SEM and TGA analysis. When AC was embedded into CHT-PVA matrix, the naproxen removal performance increased from 41.01% to 97.03%. The optimal pH for maximum adsorption was found as 7.0. Equilibrium isotherms for the naproxen adsorption onto AC/CHT-PVA biocomposite were measured experimentally. The Langmuir model was fitted to the equilibrium data better than The Freundlich, Temkin and Dubinin-Raduskevich isotherm models. The mono layer adsorption capacity of AC/CHT-PVA: 3.0 for naproxen was found to be 12.24 mg/g at 298 K. According to the kinetics results, the equilibrium time of AC/CHT-PVA biocomposites was found 100 min and it was indicated that the adsorption follows the pseudo second-order kinetic model. The process was favorable and spontaneous. The thermodynamic parameters, Delta G degrees, Delta S degrees and Delta H degrees were calculated and the enthalpy of adsorption (Delta H degrees) was found positive for all biocomposites supported the endothermic nature of adsorption reactions.
机译:在本研究中,研究了使用活性炭/壳聚糖-聚乙烯醇(AC / CHT-PVA)作为吸附剂从伊斯坦布尔图兹拉的工厂废水中去除萘普生的吸附剂的可行性。合成的生物复合材料具有1.0的不同AC:CHT-PVA比值; 2.0和3.0(w / w)。通过FT-IR,SEM和TGA分析表征了吸附材料。当AC嵌入CHT-PVA基质中时,萘普生的去除性能从41.01%提高到97.03%。发现最大吸附的最佳pH为7.0。实验测量了萘普生吸附在AC / CHT-PVA生物复合材料上的平衡等温线。与Freundlich,Temkin和Dubinin-Raduskevich等温线模型相比,Langmuir模型更适合平衡数据。发现AC / CHT-PVA在298 K下对萘普生的单层吸附能力为12.24 mg / g。根据动力学结果,发现AC / CHT-PVA生物复合材料的平衡时间为100 min表明吸附遵循伪二级动力学模型。这个过程是有利的和自发的。计算了热力学参数ΔG度,ΔS度和ΔH度,发现对于所有支持吸附反应的吸热性质的生物复合物,其吸附焓(ΔH度)为正。

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