首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Adsorption of heavy metals (Cu2+ and Zn2+) on novel bifunctional ordered mesoporous silica: Optimization by response surface methodology
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Adsorption of heavy metals (Cu2+ and Zn2+) on novel bifunctional ordered mesoporous silica: Optimization by response surface methodology

机译:重质金属(Cu2 +和Zn2 +)对新型双官能有序介孔二氧化硅的吸附:响应面法优化

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In order to develop new technologies in adsorption-based water treatment systems, the main objective of this research is the removal of copper and zinc heavy metals from aqueous solution using modified bio-compatible silica magnetic nanoadsorbents. In this regard, the magnetic SBA-15 based Chitosan composite modified with amine groups (Fe2O3@SBA-15-CS-APTMS), with different weight percentages, were synthesized and further characterized using X-ray diffraction (XRD), transmission electron microscopy (TEM), Fourier transform infrared (FTIR) and nitrogen adsorption/desorption analysis. The adsorption performance of Fe2O3@SBA-15-CS-APTMS (3 mL) for copper and zinc removal from aqueous solution was studied in a batch system using response surface methodology (RSM) design of experiment. All the prepared adsorbents were tested under the obtained optimum operational parameters and their adsorptive behavior was compared. In order to investigate the adsorption rate and maximum adsorption capacity, the experimental data were fitted to Langmuir, Freundlich, Temkin, Redlich-Peterson and Sips isotherms and pseudo first-order, pseudo second-order and intraparticle diffusion kinetic models. In addition, analysis of adsorption efficiency at different temperatures revealed the thermodynamic aspects of adsorption such as the variations in Gibbs free energy (Delta G(0)), standard enthalpy (Delta H-0) and standard entropy (Delta S-0). The obtained maximum adsorption capacities of Fe2O3@SBA-15-CS-APTMS (6 mL) at 313 K for copper and zinc were 107.30 mg/g and 100.47 mg/g, respectively. (C) 2018 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:为了开发基于吸附的水处理系统的新技术,本研究的主要目的是使用改性生物相容的二氧化硅磁性纳米坯料从水溶液中除去铜和锌重金属。在这方面,用X射线衍射(XRD),透射电子显微镜(透射电子显微镜(透射电子显微镜(透射电子显微镜(透射电子显微镜)(透射电子显微镜(Fe 2 O 3 SBA-15-CS-APTMS)用不同重量百分比改性的基于氨基(Fe 2 O 3 -C-15-CS-APTMS)的磁性SBA-15的壳聚糖复合物。 (TEM),傅里叶变换红外(FTIR)和氮吸附/解吸分析。使用响应面法(RSM)实验设计,在批量系统中研究了Fe2O3 @ SBA-15-CS-APTMS(3mL)用于从水溶液中除去的铜和锌的吸附性能。在获得的最佳操作参数下测试所有制备的吸附剂,并比较它们的吸附行为。为了探讨吸附率和最大吸附能力,实验数据适用于Langmuir,Freundlich,Temkin,Redlich-Peterson和Sips等温线和伪一阶,伪二阶和粒地区扩散动力学模型。此外,不同温度的吸附效率分析揭示了吸附的热力学方面,例如Gibbs自由能的变化(Delta G(0)),标准焓(Delta H-0)和标准熵(Delta S-0)。在313k对于铜和锌的313k和锌中获得的最大吸附容量分别为107.30mg / g和100.47mg / g。 (c)2018台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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