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Arsenic Removal from Water by Adsorption onto Iron Oxide/Nano-Porous Carbon Magnetic Composite

机译:通过吸附在氧化铁/纳米多孔碳磁性复合材料上从水中除去砷

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摘要

This study aimed to develop magnetic Fe3O4/sugarcane bagasse activated carbon composite for the adsorption of arsenic (III) from aqueous solutions. Activated carbon (AC) was prepared from sugarcane bagasse by chemical activation using H3PO4 as an activating agent at 400 °C. To enhance adsorption capacity for arsenic, the resultant AC was composited with Fe3O4 particles by facile one-pot hydrothermal treatment. This method involves mixing the AC with aqueous solution of iron (II) chloride tetrahydrate, polyvinyl pyrrolidone (PVP), and ethanol. Batch adsorption experiments were conducted for the adsorption of As (III) onto the composite. The effects of pH, adsorbent dosage, and contact time on the arsenic adsorption were studied. The result showed that the composite could remove the arsenic from the water far more effectively than the plain AC. The highest percentage of arsenic removal was found at pH at 8, adsorbent dose of 1.8 g/L, and contact time of 60 min. Langmuir and Freundlich adsorption isotherm was used to analyze the equilibrium experimental data. Langmuir model showed the best fit compared to the Freundlich model with a maximal capacity of 6.69 mg/g. These findings indicated that magnetic Fe3O4/sugarcane bagasse AC composite could be potentially applied for adsorptive removal of arsenic (III) from aqueous solutions.
机译:该研究旨在开发磁Fe3O4 /甘蔗甘蔗蛋白活性炭复合材料,用于吸附水溶液(III)的水溶液。通过使用H3PO4作为400℃的活化剂,通过化学活化从甘蔗甘蔗渣制备活性炭(AC)。为了增强砷的吸附能力,通过容易的单壶水热处理用Fe 3 O 4颗粒与Fe3O4颗粒进行合成所得的AC。该方法包括将AC与铁(II)氯化物四水合物,聚乙烯吡咯烷酮(PVP)和乙醇混合。将批量吸附实验进行,用于将As(III)吸附到复合材料上。研究了pH,吸附剂剂量和接触时间对砷吸附的影响。结果表明,复合材料可以比普通AC更有效地从水中除去砷。在pH下发现最高百分比的砷,吸附剂剂量为1.8g / l,接触60分钟。 Langmuir和Freundlich吸附等温线用于分析均衡实验数据。与最大容量为6.69 mg / g的Freundlich模型相比,Langmuir模型表现出最合适的。这些发现表明,磁性Fe3O4 /甘蔗甘蔗蛋白AC复合物可以潜在地应用于来自水溶液的吸附除去砷(III)。

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