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Defluoridation by rice spike-like akaganeite anchored graphene oxide

机译:水稻穗状穗状体岩锚定石墨烯氧化物的渗透

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Due to intake of excessive fluoride in drinking water, endemic fluorosis, the most widely distributed endemic diseases has caused worldwide attention. In this study, akaganeite anchored graphene oxide (β-FeOOH@GO) nanocomposites were synthesized by in situ forced hydrolysis of ferric chloride in presence of graphene oxide under facile condition. β-FeOOH@GO was characterized and evaluated as a new potential carbon sorbent for defluoridation in environmental application. The application pH, adsorption capacity, adsorption kinetic and anti-interference ability in defluoridation with β-FeOOH@GO was described. On the basis of Fourier transform infrared spectroscopy (FTIR) and X-ray Photoelectron Spectroscopy (XPS) analysis, defluoridation mechanism involving the ion-exchange with chloride anions bearing in β-FeOOH@GO is indicated at molecular level from a new perspective way. It is a good supplement to classical hydroxyl replacement mechanism. It would be useful for the improvement of adsorption capacity and kinetics through designing facile anions-exchange adsorbents.
机译:由于在饮用水中摄入过量氟化物,流动性氟中毒,最广泛的分布式流域疾病已经引起全世界的关注。在该研究中,通过在容纳条件下在石墨烯氧化物存在下,通过原位强制水解合成Akaganeite锚定石墨烯氧化物(β-FeOH @ Go)纳米复合材料。 β-FeOOH @ Go的特征和评估为新的潜在碳吸附剂,用于环境应用中的偏外碳。描述了β-FeOOH @ Go脱氟的施用pH,吸附能力,吸附动力学和抗干扰能力。在傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)分析的基础上,从新的透视方式向β-FeOOH @ Go中含有氯化物阴离子的离子交换的偏氟化机理。它是古典羟基替代机制的良好补充。通过设计容易阴离子交换吸附剂来改善吸附容量和动力学将是有用的。

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