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One-Step Preparation of Chitosan-Based Magnetic Adsorbent and Its Application to the Adsorption of Inorganic Arsenic in Water

机译:壳聚糖基磁性吸附剂的一步制备及其在水中无机砷吸附的应用

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摘要

Chitosan is a kind of biodegradable natural polysaccharide, and it is a very promising adsorber material for removing metal ions from aqueous solutions. In this study, chitosan-based magnetic adsorbent CMC@Fe3O4 was synthesized by a one-step method using carboxymethyl chitosan (CMC) and ferric salts under relatively mild conditions. The Fe3O4 microspheres were formed and the core–shell structure of CMC@Fe3O4 was synthesized in the meantime, which was well characterized via SEM/TEM, XRD, VSM, FT-IR, thermo gravimetric analysis (TGA), XPS, size distribution, and zeta potential. The effects of initial arsenic concentration, pH, temperature, contact time, and ionic strength on adsorption quantity of inorganic arsenic was studied through batch adsorption experiments. The magnetic adsorbent CMC@Fe3O4 displayed satisfactory adsorption performance for arsenic in water samples, up to 20.1 mg/g. The optimal conditions of the adsorption process were pH 3.0, 30−50 °C, and a reaction time of 15 min. The adsorption process can be well described by pseudo-second-order kinetic model, suggesting that chemisorption was main rate-controlling step. The Langmuir adsorption model provided much higher correlation coefficient than that of Freundlich adsorption model, indicating that the adsorption behavior is monolayer adsorption on the surface of the magnetic adsorbents. The above results have demonstrated that chitosan-based magnetic adsorbent CMC@Fe3O4 is suitable for the removal of inorganic arsenic in water.
机译:壳聚糖是一种可生物降解的天然多糖,它是一种非常有前途的吸附材料,用于从水溶液中除去金属离子。在该研究中,通过使用羧甲基壳聚糖(CMC)和盐条件下的一步法,通过使用羧甲基壳聚糖(CMC)和铁盐在相对温和的条件下的一步法合成基于壳聚糖的磁性吸附剂CMC @ Fe3O4。形成Fe3O4微球,同时通过SEM / TEM,XRD,VSM,FT-IR,Thermo重量分析(TGA),XPS,尺寸分布,CMC @ Fe 3 O 4的核 - 壳结构合成,其特征在于,其精细地进行了很好的特征,其良好地表征了SEM / TEM,XRD,VSM,XPS,尺寸分布,和Zeta潜力。通过分批吸附实验研究了初始砷浓度,pH,温度,接触时间和离子强度对无机砷的吸附量的影响。磁性吸附剂CMC @ Fe3O4显示在水样中砷的令人满意的吸附性能,高达20.1mg / g。吸附过程的最佳条件为pH 3.0,30-50℃,反应时间为15分钟。吸附过程可以通过伪二阶动力学模型很好地描述,表明化学吸附是主速率控制步骤。 Langmuir吸附模型提供比Freundlich吸附模型更高的相关系数,表明吸附行为是磁性吸附剂表面上的单层吸附。上述结果表明,基于壳聚糖的磁性吸附性CMC @ Fe3O4适用于在水中除去无机砷。

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