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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Central composite design and genetic algorithm applied for the optimization of ultrasonic-assisted removal of malachite green by ZnO Nanorod-loaded activated carbon
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Central composite design and genetic algorithm applied for the optimization of ultrasonic-assisted removal of malachite green by ZnO Nanorod-loaded activated carbon

机译:中心复合设计和遗传算法在ZnO负载纳米棒活性炭超声辅助去除孔雀石绿中的应用

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Maximum malachite green (MG) adsorption onto ZnO Nanorod-loaded activated carbon (ZnO-NR-AC) was achieved following the optimization of conditions, while the mass transfer was accelerated by ultrasonic. The central composite design (CCD) and genetic algorithm (GA) were used to estimate the effect of individual variables and their mutual interactions on the MG adsorption as response and to optimize the adsorption process. The ZnO-NR-AC surface morphology and its properties were identified via FESEM, XRD and FTIR. The adsorption equilibrium isotherm and kinetic models investigation revealed the well fit of the experimental data to Langmuir isotherm and pseudo-second-order kinetic model, respectively. It was shown that a small amount of ZnO-NR-AC (with adsorption capacity of 20 mg g(-1)) is sufficient for the rapid removal of high amount of MG dye in short time (3.99 min). (C) 2016 Elsevier B.V. All rights reserved.
机译:在优化条件下,达到了最大孔雀石绿(MG)吸附在负载ZnO纳米棒的活性炭(ZnO-NR-AC)上的效果,同时通过超声波加速了质量转移。使用中央复合设计(CCD)和遗传算法(GA)来评估各个变量及其相互影响对MG吸附的响应,并优化吸附过程。通过FESEM,XRD和FTIR对ZnO-NR-AC的表面形貌及其性能进行了鉴定。吸附平衡等温线和动力学模型的研究表明,实验数据分别与Langmuir等温线和拟二阶动力学模型完全吻合。结果表明,少量的ZnO-NR-AC(吸附容量为20 mg g(-1))足以在短时间内(3.99分钟)快速去除大量MG染料。 (C)2016 Elsevier B.V.保留所有权利。

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