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Synthesis of magnetic-carbon sorbent for removal of U(VI) from aqueous solution

机译:从水溶液中除去磁性碳吸附剂的合成

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摘要

An functional magnetic and carbon-based adsorbent, noted as Fe3O4@HTC-NaOH, was synthesized by hydrothermal and NaOH treatment processing. The results of FT-IR spectrum and xi-potential showed the surface of Fe3O4@HTC-NaOH existed losts of f-lactonic and sodium carboxylic acid (COONa) groups and was relatively negative. The U(VI) adsorption capacities onto the Fe3O4@HTC-NaOH reached the maximum of 761.20 mg/g, showing a high efficiency for removal U(VI) from polluted water. In addition, the adsorption products can be readily separated from contaminated solutions using a magnet. The results indicated that Fe3O4@HTC-NaOH possessed potential application in the remediation of uranium polluted water and soil.
机译:通过水热和NaOH处理加工合成作为Fe3O4 @ HTC-NaOH作为Fe3O4的功能性磁性和碳的吸附剂。 FT-IR光谱和Xi电位的结果显示Fe3O4的表面,Fe3O4 @ HTC-NaOH存在于F-Lactonic和羧酸钠(CoOna)基团中的损失,并且相对阴性。 在Fe3O4 @ HTC-NaOH上的U(VI)吸附能力达到最大值761.20 mg / g,显示出从污染水中去除U(VI)的高效率。 此外,吸附产品可以使用磁铁容易地与受污染的溶液分离。 结果表明,Fe3O4 @ HTC-NaOH在铀污染水和土壤中具有潜在的应用。

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