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超声辅助增强甲基橙染料在聚苯胺浸渍氧化锌纳米颗粒上的吸附:动力学、等温线及工艺参数优化

Ultrasonic assisted enhanced adsorption of methyl orange dye onto polyaniline impregnated zinc oxide nanoparticles: Kinetic, isotherm and optimization of process parameters.

作者信息

Deb Akash, Kanmani M, Debnath Animesh, Bhowmik Kartick Lal, Saha Biswajit

机构信息

Department of Civil Engineering, National Institute of Technology Agartala, Jiania, Tripura(W) 799046, India.

Department of Civil Engineering, National Institute of Technology Agartala, Jiania, Tripura(W) 799046, India.

出版信息

Ultrason Sonochem. 2019 Jun;54:290-301. doi: 10.1016/j.ultsonch.2019.01.028. Epub 2019 Jan 22.

Abstract

The fabrication of novel functionalized composite materials as adsorbent is considered to be the core research area in adsorption technology for environmental applications. Indiscriminate disposal of industrial effluents containing toxic dyes has become a serious environmental issue across the globe since last few decades. In view of above, this study focused on the performance evaluation of ZnO/polyaniline nanocomposite (ZnO-PANI-NC) for quick ultrasonic assisted adsorptive remediation of methyl orange dye from aqua matrix. ZnO nanoparticles were fabricated by a simple co-precipitation method and ZnO-PANI-NC was synthesized by in situ oxidative polymerization of aniline monomer in presence of ZnO nanoparticles. The nanocomposite was extensively characterized for its crystalline nature, morphological characteristics, surface chemical bonding, specific surface area and pore volume by employing XRD, SEM, TEM, FTIR, and BET analysis. The ZnO-PANI-NC has shown superior adsorptive performance as compared to pure PANI as well as ZnO nanoparticles and the maximum monolayer adsorption capacity of 240.84 mg/g was obtained for the ZnO-PANI-NC. Under ultrasonic environment the adsorption reaction reached to equilibrium (more than 98% MO dye removal) within 15 min of reaction. Adsorption process followed Langmuir isotherm model and second order kinetic model strictly and contribution of intra-particle diffusion was also observed. The ZnO-PANI-NC has shown its high regeneration ability (more than 86%) even after 5th consecutive cycles of adsorption-desorption. Response surface methodology based optimization was used to optimize the adsorption experimental data and maximum MO removal of 99.12% was observed at optimum sonication time 13 min, adsorbent dose 0.38 g/L and initial MO concentration at 28 mg/L.

摘要

制备新型功能化复合材料作为吸附剂被认为是环境应用吸附技术的核心研究领域。在过去几十年中,随意处置含有有毒染料的工业废水已成为全球范围内一个严重的环境问题。鉴于此,本研究聚焦于氧化锌/聚苯胺纳米复合材料(ZnO-PANI-NC)对水体基质中甲基橙染料进行快速超声辅助吸附修复的性能评估。通过简单的共沉淀法制备氧化锌纳米颗粒,并在氧化锌纳米颗粒存在的情况下通过苯胺单体的原位氧化聚合法合成ZnO-PANI-NC。采用XRD、SEM、TEM、FTIR和BET分析等手段对该纳米复合材料的晶体性质、形态特征、表面化学键合、比表面积和孔体积进行了广泛表征。与纯聚苯胺以及氧化锌纳米颗粒相比,ZnO-PANI-NC表现出优异的吸附性能,其最大单层吸附容量为240.84 mg/g。在超声环境下,吸附反应在15分钟内达到平衡(甲基橙染料去除率超过98%)。吸附过程严格遵循朗缪尔等温线模型和二级动力学模型,并且还观察到了颗粒内扩散的作用。即使在连续5次吸附-解吸循环后,ZnO-PANI-NC仍表现出高再生能力(超过86%)。基于响应面法的优化用于优化吸附实验数据,在最佳超声处理时间13分钟、吸附剂剂量0.38 g/L和初始甲基橙浓度28 mg/L的条件下,观察到甲基橙最大去除率为99.12%。

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