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Resistance of mass transfer, kinetic and isotherm study of ammonium removal by using a Hybrid Plug-Flow Column Reactor (HPFCR)

机译:使用混合塞流塔式反应器(HPFCR)进行除氨的传质,动力学和等温线研究的阻力

摘要

Adsorption technique has been widely used for NH4 + removal from an effluent Wastewater Treatment Plant (WWTP). Still, the resistances of mass transfer, kinetics and equilibrium isotherm of NH 4 + onto Granular Activated Carbon (GAC) need to be verified. In this study, the Hybrid Plug-Flow Column Reactor (HPFCR) with a combination of sand and GAC was used to remove NH4 + from a WWTP's effluent. Mass transfer model was applied to determine the global, external and internal mass transfer. The data obtained from batch study were analysed using Langmuir and Freundlich equations; Langmuir equation fitting with the NH4 + adsorption more appropriate. The adsorption kinetics have found match well with pseudo first-order. The dependency of resistance of mass transfer on film mass transfer was slightly higher than porous diffusion, for the bed depths of 2 to 12 cm, while the dependency of resistance of mass transfer on film mass transfer was lower than porous diffusion, for the bed depths of 15 cm. The effect of varying bed depths of column on resistance of mass transfer for the adsorption of NH4 + on GAC was verified to contribute to optimizing the adsorption process for the removal of NH4 + from wastewater of containing multi-pollutants.
机译:吸附技术已广泛用于从废水处理厂(WWTP)去除NH4 +。仍然需要验证NH 4 +在颗粒活性炭(GAC)上的传质阻力,动力学和平衡等温线。在这项研究中,混合塞流塔式反应器(HPFCR)与沙子和GAC结合使用,用于从污水处理厂的废水中去除NH4 +。应用传质模型确定整体,外部和内部传质。使用Langmuir和Freundlich方程分析了从批处理研究获得的数据。 Langmuir方程与NH4 +的吸附拟合更为合适。已发现吸附动力学与拟一级反应相匹配。对于床深度为2至12 cm,传质阻力对薄膜传质的依赖性略高于多孔扩散,对于床深度,传质阻力对膜传质的依赖性低于多孔扩散15厘米验证了色谱柱床深的变化对传质阻力对GAC吸附NH4 +的影响,有助于优化吸附工艺,以从含有多种污染物的废水中去除NH4 +。

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