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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Rapid fabrication of nanostructured magnesium hydroxide and hydromagnesite via microwave-assisted technique
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Rapid fabrication of nanostructured magnesium hydroxide and hydromagnesite via microwave-assisted technique

机译:微波辅助技术快速制备纳米结构氢氧化镁和菱镁矿

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摘要

Magnesium hydroxide and hydromagnesite nano and microstructures have been prepared by using microwave-assisted technique. Magnesium chloride, magnesium acetate and magnesium metal have been used as a magnesium source. Urea has been added to the solution with controlled pH = 10 while the temperature was 220 °C. The hydrolysis of urea under these hydrothermal conditions leads to the production of hydromagnesite instead of magnesium hydroxide. The as-prepared samples were investigated using scanning electron microscope (SEM), X-ray diffraction (XRD), thermographmetric analysis (TGA) and differential scanning calorimetry (DSC). SEM shows a wide distribution of pseudo-hexagonal nanodisk up to microdisk. Spherical rosette morphology has been noticed in the samples in which the urea has been used. XRD reveals the existence of Mg(OH)2 with some impurities which can be attributed to the high concentrations of the initial materials and absorption of carbon dioxide from the air when urea is not employed and hydromagnesite when urea is present in the synthesis. TGA showed a weight loss within the temperature range of 360-450 °C with a total percentage of weight loss 29% which can be attributed to the (Mg(0H)2). However in the case of synthesis with urea the weight loss was 57% which is the expected value for hydromagnesite. The production of pure hydromagnesite utilizing hydrothermal methods has been reported; the synthesis reported here is much simpler and faster.
机译:采用微波辅助技术制备了氢氧化镁和菱镁矿的纳米结构。氯化镁,乙酸镁和金属镁已被用作镁源。在温度为220°C的情况下,将尿素添加到控制pH = 10的溶液中。在这些水热条件下尿素的水解导致产生菱镁矿而不是氢氧化镁。使用扫描电子显微镜(SEM),X射线衍射(XRD),热谱分析(TGA)和差示扫描量热法(DSC)研究制备的样品。 SEM显示伪六边形纳米磁盘到微型磁盘的分布范围很广。在使用尿素的样品中已经注意到球形玫瑰花形形态。 X射线衍射表明存在Mg(OH)2和一些杂质,这可以归因于初始物质的高浓度以及当不使用尿素时从空气中吸收二氧化碳,而在合成过程中存在尿素时则是菱镁矿。 TGA在360-450°C的温度范围内显示出重量减轻,重量减轻的总百分比为29%,这可归因于(Mg(0H)2)。但是,在用尿素合成的情况下,重量损失为57%,这是对菱镁矿的预期值。已经报道了利用水热法生产纯净菱镁矿的方法。这里报告的综合更加简单和快捷。

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