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Arsenic adsorption on goethite nanopartides produced through hydrazine sulfate assisted synthesis method

机译:硫酸肼辅助合成法制备针铁矿纳米粒子上的砷吸附

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摘要

Goethite nanoparticles synthesized using hydrazine sulfate as a modifying agent were evaluated for As(V) adsorption capacity. The nanoparticles were characterized for their morphological and structural features. The precipitated goethite particles were spherical with particle size of less than 10 ma Batch adsorption study was carried out systematically varying parameters such as pH, contact time, initial As(V) concentration and adsorbent doses. The Langmuir isotherm represented the equilibrium data well and the estimated monolayer adsorption capacity at ambient temperature was 76 mg/g, which is significantly higher than most of the adsorbents reported in the literature. Adsorption kinetic data were better represented by the pseudo-second order kinetic model, mtra-particle diffusion played a significant role in the rate controlling process in the initial hour. Desorption study showed that the loaded adsorbent could be regenerated when treated with dilute sodium hydroxide solution of pH 13.
机译:评价了使用硫酸肼作为改性剂合成的针铁矿纳米颗粒的As(V)吸附能力。表征纳米颗粒的形态和结构特征。沉淀的针铁矿颗粒为球形,粒径小于10 ma。系统地改变了参数,例如pH值,接触时间,初始As(V)浓度和吸附剂剂量,进行了批量吸附研究。 Langmuir等温线很好地代表了平衡数据,在环境温度下估计的单层吸附容量为76 mg / g,明显高于文献中报道的大多数吸附剂。准二级动力学模型较好地表示了吸附动力学数据,在最初的一小时内,微粒的扩散在速率控制过程中起了重要作用。解吸研究表明,用pH 13的稀氢氧化钠溶液处理后,负载的吸附剂可以再生。

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