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Ultrathin layered double hydroxide nanosheets prepared from a water-in-ionic liquid surfactant-free microemulsion for phosphate removal from aquatic systems

机译:由无水包离子型液体表面活性剂的微乳液制备的超薄层状双氢氧化物纳米片,用于从水生体系中去除磷酸盐

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A water-in-(ionic liquid) surfactant-free reverse microemulsion were used for the controllable preparation of the small sized Mg2Al-layered double hydroxide (LDH) nanosheets. The metallic salts and alkali aqueous solutions were respectively employed as water phase for preparation of BmimPF6-dimethylformamide-water reverse microemulsions. Then the uncontaminated LDH sheets (LDH-M) have been afforded with a narrow diameter distribution (similar to 10-35 nm). The LDH nanoplatelets present a uniform lateral dimension (similar to 31 nm) and a small thickness (similar to 0.71 nm), which may probably be composed of single brucite-like layer. They display larger surface areas (110-291 m(2)/g) and smaller pore sizes (17.57 nm and similar to 3.83 nm) than LDH based on traditional co-precipitation technique. The treatment of its calcined product (LDO) in water results in the flower-like LDH nanosheets with obvious aggregation and larger size. The phosphate adsorption experiments show that the small sized LDH nanosheets perform superior removal ability toward low concentration phosphate to the large sized LDH sheets. However, the LDO product exhibits further excellent adsorption efficiency due to losing the interaction of carbonate with metal hydroxide layers. After five recycle usage, the ultrathin LDH-M nanoflakes and the calcined product LDO keep about 88.7-93.5% uptake efficiency of the original adsorbents, indicating a good reusability. (C) 2016 Elsevier B.V. All rights reserved.
机译:无水(离子液体)表面活性剂的反向微乳液用于可控制的小型Mg2Al层状双氢氧化物(LDH)纳米片的制备。将金属盐和碱水溶液分别用作水相,以制备BmimPF6-二甲基甲酰胺-水反相微乳液。然后,提供了未污染的LDH薄板(LDH-M),其直径分布较窄(类似于10-35 nm)。 LDH纳米片具有均匀的横向尺寸(类似于31 nm)和较小的厚度(类似于0.71 nm),其可能由单个水镁石状层组成。与传统的共沉淀技术相比,它们显示的表面积更大(110-291 m(2)/ g),孔径更小(17.57 nm,与3.83 nm类似)。在水中对其煅烧产物(LDO)进行处理会导致花状LDH纳米片具有明显的聚集和较大的尺寸。磷酸盐吸附实验表明,小尺寸的LDH纳米片对低浓度磷酸盐的清除能力优于大尺寸的LDH片。然而,由于失去了碳酸盐与金属氢氧化物层的相互作用,LDO产物表现出进一步优异的吸附效率。经过五次循环使用后,超薄LDH-M纳米薄片和煅烧产物LDO保持了原始吸附剂约88.7-93.5%的吸收效率,表明具有良好的可重复使用性。 (C)2016 Elsevier B.V.保留所有权利。

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