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Self-assembled three-dimensional reduced graphene oxide-based hydrogel for highly efficient and facile removal of pharmaceutical compounds from aqueous solution

机译:基于三维氧化石墨烯基水凝胶,用于高效和容易去除水溶液的药物化合物

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Herein, self-assembled three-dimensional reduced graphene oxide (RGO)-based hydrogels were synthesized and characterized in detail. A thorough investigation on the uptake of three widely used pharmaceutical drugs, viz. Naproxen (NPX), Ibuprofen (IBP) and Diclofenac (DFC) was carried out from aqueous solutions. To ensure the sustainability of developed hydrogel assembly, practically important parameters such as desorption, recyclability and applicability to real samples were also evaluated. Using the developed 3D hydrogels as adsorptive platforms, excellent decontamination for the above mentioned persistent pharmaceutical drugs was achieved in acidic pH with a removal efficiency in the range of 70-80%. These hydrogels showed fast adsorption kinetics and experimental findings were fitted to different kinetic models, such as pseudo-first order, pseudo-second order, intra-particle and the Elovich models in an attempt to better understand the adsorption kinetics. Furthermore, equilibrium adsorption data was fitted to the Langmuir and Freundlich models, where relatively higher R-2 values obtained in case of former one suggested that monolayer adsorption played an important part in drug uptake. Thermodynamic aspects were also studied and negative Delta G(0) values obtained indicated the spontaneous nature of adsorption process. The study was also extended to check practical utility of as-prepared hydro gels by spiking real aqueous samples with drug solution, where high % recoveries obtained for NPX, IBP and DFC were of particular importance with regard to prospective application in wastewater treatment systems. We advocate RGO-based hydrogels as environmentally benign, readily recoverable/recyclable material with excellent adsorption capacity for application in wastewater purification. (C) 2018 Elsevier Inc. All rights reserved.
机译:这里,合成自组装的三维氧化烯氧(RGO)基于水凝胶并详细表征。彻底调查了三种广泛使用的药物吸收,Ziz。 NaProxen(NPX),布洛芬(IBP)和双氯氟乙烯(DFC)由水溶液中进行。为了确保开发的水凝胶组件的可持续性,还评估了诸如解吸,可回收性和对实际样品的应用等重要参数。使用开发的3D水凝胶作为吸附平台,在酸性pH下实现了上述持久药物的优异净化,除去效率为70-80%。这些水凝胶显示出快速吸附动力学和实验结果适用于不同的动力学模型,例如伪第一顺序,伪二次阶,粒子内和ELOVICH模型,以便更好地理解吸附动力学。此外,平衡吸附数据适用于Langmuir和Freundlich模型,其中获得前者的相对较高的R-2值表明单层吸附在药物吸收中起重要作用。还研究了热力学方面,并获得了负ΔG(0)值表明吸附过程的自发性。该研究还扩展了通过使用药物溶液掺入真实水性样品来检查制备的水凝胶的实用性,其中对于NPX,IBP和DFC获得的高%回收率对废水处理系统中的前瞻性应用特别重要。我们将基于Rgo的水凝胶提高为环境良性,容易可回收/可回收材料,具有优异的吸附能力,用于废水净化。 (c)2018 Elsevier Inc.保留所有权利。

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