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首页> 外文期刊>Journal of Colloid and Interface Science >FeOOH-graphene oxide nanocomposites for fluoride removal from water: Acetate mediated nano FeOOH growth and adsorption mechanism
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FeOOH-graphene oxide nanocomposites for fluoride removal from water: Acetate mediated nano FeOOH growth and adsorption mechanism

机译:FeOOH-石墨烯氧化物纳米复合材料用于氟化物从水中除去:醋酸介导的纳米FeOOH生长和吸附机理

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Fluoride adsorption capacity in water matrices depends highly on the properties of each component of the adsorption system, the most important one of these is the physchemical properties of the adsorbent. Nanoparticle Goethite anchored onto graphene oxide (FeOOH+Ac/GO) and rice spike-like Akaganeite anchored onto graphene oxide (FeOOH/GO) were synthesized via an in-situ hydrolysis procedure and compared their fluoride adsorption performances in order to address the effect of crystalline structure growth induced by acetate sodium (NaAc), one important organic ligand in water and soil. The morphology, crystallinity, surface functional groups, elemental compositions and atomic percentage of the two hybrid graphene based nanocomposites were characterized. In order to evaluate fluoride adsorption capacity and reveal fluoride adsorption mechanism, adsorption kinetics and dynamics, effects of pH, effects of co-existing anions and mass transfer coefficients were comprehensively investigated for two adsorbents in water matrix. The results show that organic ligands like acetate greatly modify the crystalline structure of iron (oxy)hydroxide (FeOOH), thus altered its fluoride adsorption performance and adsorption mechanism. It would be very important to know the interface behaviors of mineral mediated by natural organic ligands in water or soil matrices. (C) 2016 Elsevier Inc. All rights reserved.
机译:在水基体氟化物吸附能力高度依赖于吸附系统的每个组件的属性,这些的最重要的一个是吸附剂的physchemical性质。纳米颗粒针铁矿锚定在石墨烯氧化物(针铁矿+ AC / GO)和水稻尖峰状Akaganeite锚定在石墨烯氧化物(针铁矿/ GO)经原位水解方法合成并以解决的效果相比,它们的氟化物吸附性能由乙酸钠(NaAc缓冲)诱导的晶体结构的生长,水和土壤中一个重要的有机配体。形态,结晶度,表面官能团,元素的组合物和所述双杂交基于石墨烯的纳米复合材料的原子百分比进行表征。为了评价氟化物吸附容量和揭示氟化物吸附机构,吸附动力学和动力学,pH值的影响,共存阴离子和传质系数的影响进行了综合研究用于水基质两种吸附剂。结果表明如乙酸即有机配位体大大修改铁(氧)氢氧化物(针铁矿),从而改变了它的氟化物吸附性能和吸附机理的晶体结构。这将是非常重要的是知道在水或土壤基质天然有机配体介导的矿物的接口行为。 (c)2016 Elsevier Inc.保留所有权利。

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