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Defluoridation by rice spike-like akaganeite anchored graphene oxide

机译:稻穗状赤霞石锚固氧化石墨烯脱氟

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摘要

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 (beta-FeOOH@GO) nanocomposites were synthesized by in situ forced hydrolysis of ferric chloride in presence of graphene oxide under facile condition. beta-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 beta-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 beta-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:由于饮用水中过量的氟摄入,地方性氟中毒,分布最广的地方性疾病引起了全世界的关注。在这项研究中,赤铁矿锚固的氧化石墨烯(β-FeOOH@ GO)纳米复合材料是在氧化石墨烯存在的条件下,通过氯化铁的原位强制水解来合成的。 beta-FeOOH @ GO被表征并评估为一种在环境应用中用于脱氟的潜在碳吸附剂。描述了β-FeOOH@ GO在脱氟中的应用pH值,吸附能力,吸附动力学和抗干扰能力。在傅立叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)分析的基础上,从分子生物学的角度出发,从分子角度揭示了含氟离子与β-FeOOH@ GO发生离子交换的脱氟机理。它是经典羟基替代机制的良好补充。通过设计简便的阴离子交换吸附剂,对于提高吸附容量和动力学很有用。

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