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Microanalysis Study on Hydrothermal Synthesis of Mg, Al-Hydrotalcite

机译:水热合成镁铝水滑石的微观分析研究

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In this study, the reactants are Al(NO3)3, Mg(NO3)2, Na2CO3 and precipitant is NaOH. The Mg, Al-hydrotalcite (Mg-Al-LDH) crystals is prepared by hydrothermal method. The products are investigated by X-ray diffraction, scanning electron microscope and X-ray energy dispersive spectrometer. The influences of Mg-Al-LDH crystals micro-structure and growth are systematic researched in different conditions of pH values, hydrothermal temperature and reaction time. At the same time, we discussed the growth mechanism. The results indicated that the systematic pH value has great influence on growth of Mg-Al-LDH. The growth units [Mg-(OH)6]~(4-) and [Al-(OH)_6~-]~(3-) can not form when the pH value is lower, so the product is not Mg-Al-LDH. While when pH=12, the formation of die ligand tend to stabilize and the hexagon Mg-Al-LDH has good crystalline and regularity. Keeping pH value at 12 and increasing the temperature, the crystals size tends to increase. When the temperature reached 160 °C, the product size is stable and is about 230-300 nm. When the system is in the optimum conditions of pH value and temperature, the reaction time has hardly any influence on crystals growth. As long as hydrothermal system is balanced for a certain time, the good crystalline Mg-Al-LDH crystals can be prepared but increasing time is only in favor of the crystals growth and regularity. The energy dispersive spectrometer analysis result verified that the Mg/Al is about 3 which approached to the theoretical value.
机译:在这项研究中,反应物为Al(NO3)3,Mg(NO3)2,Na2CO3,沉淀物为NaOH。镁铝水滑石(Mg-Al-LDH)晶体是通过水热法制备的。通过X射线衍射,扫描电子显微镜和X射线能量色散光谱仪研究产物。在不同的pH值,水热温度和反应时间条件下,系统研究了Mg-Al-LDH晶体的微观结构和生长的影响。同时,我们讨论了增长机制。结果表明,系统pH值对Mg-Al-LDH的生长有很大影响。当pH值较低时,不能形成[Mg-(OH)6]〜(4-)和[Al-(OH)_6〜-]〜(3-)的生长单元,因此产物不是Mg-Al -LDH。当pH = 12时,配体的形成趋于稳定,六边形Mg-Al-LDH具有良好的结晶性和规则性。将pH值保持在12并增加温度,晶体尺寸趋于增加。当温度达到160℃时,产物尺寸稳定并且为约230-300nm。当系统处于pH值和温度的最佳条件下时,反应时间几乎不会对晶体生长产生任何影响。只要水热系统在一定时间内保持平衡,就可以制备出良好的Mg-Al-LDH晶体,但是增加时间仅有利于晶体的生长和规则性。能量色散光谱仪分析结果表明,Mg / Al约为3,接近理论值。

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