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首页> 外文期刊>Chemical engineering journal >Phosphorus removal from wastewater using nano-particulates of hydrated ferric oxide doped activated carbon fiber prepared by Sol-Gel method
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Phosphorus removal from wastewater using nano-particulates of hydrated ferric oxide doped activated carbon fiber prepared by Sol-Gel method

机译:Sol-Gel法制备的水合氧化铁掺杂活性炭纤维纳米颗粒去除废水中的磷

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Sol-Gel method is used to immobilize nano-particulates of hydrated ferric oxide (HFO) within macropo-rous activated carbon fibers (ACFs), and the phosphate removal behavior and its mechanisms of the new hybrid phosphate adsorbent named as ACF-NanoHFO are studied. The surface structure of ACF-NanoHFO is characterized by scanning electron microscopy (SEM), showing Sol-Gel method to be a reliable method for improving performances of depositing iron nano-particles on the ACF. The Freundlich and Langmuir models are used to simulate the sorption equilibrium, indicating that the Langmuir model is more suitable than the Freundlich model for well elucidation of the experimental data. The maximum adsorption capacity is calculated to be 12.86 mg/g. The kinetic data from the adsorption of phosphate are discussed in a framework of the pseudo second-order model, indicating that the adsorption of phosphate is a chemisorption process. The phosphate adsorption is highly pH dependent. The coexistence of other anions in solutions has an adverse effect on phosphate adsorption. A decrease in adsorption capacity follows the order of exogenous anions, i.e., F~- > NO_3~- > Cl~- > SO_4~(2-). The ligands exchange and electrostatic interactions are manifested to be two main mechanisms for phosphate adsorption of ACF-NanoHFO revealed by Fourier transform infrared (FT-IR) spectroscopy and change of pH values associated with the adsorption process. All the results indicate that the ACF-NanoHFO has a considerable potential for the phosphate removal from contaminated waters.
机译:采用溶胶-凝胶法将水合氧化铁(HFO)的纳米颗粒固定在大孔活性炭纤维(ACFs)中,研究了新型混合磷酸盐吸附剂ACF-NanoHFO的除磷性能及其机理。 。 ACF-NanoHFO的表面结构通过扫描电子显微镜(SEM)表征,表明Sol-Gel方法是提高铁纳米粒子在ACF上沉积性能的可靠方法。 Freundlich和Langmuir模型用于模拟吸附平衡,表明Langmuir模型比Freundlich模型更适合于很好地阐明实验数据。最大吸附容量经计算为12.86 mg / g。在伪二级模型的框架内讨论了磷酸盐吸附的动力学数据,表明磷酸盐的吸附是化学吸附过程。磷酸盐的吸附高度依赖pH。溶液中其他阴离子的共存对磷酸盐的吸附有不利影响。吸附能力的降低遵循外源阴离子的顺序,即F-> NO_3--> Cl--> SO 4-(2-)。傅立叶变换红外光谱(FT-IR)揭示了配体交换和静电相互作用是ACF-NanoHFO磷酸盐吸附和与吸附过程相关的pH值变化的两种主要机理。所有结果表明,ACF-NanoHFO具有从受污染的水中去除磷酸盐的巨大潜力。

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