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Surface Modification of MgO Microcrystals by Cycles of Hydration-Dehydration

机译:水合-脱水循环对MgO微晶的表面改性

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Relatively inert surface of microcrystalline MgO was modified into chemically active one by carrying out controlled hydration followed by dehydration at elevated temperature under dynamic vacuum. Even though the treatment by the first cycle of hydration-dehydration did not alter the porosity of MgO, it largely enhanced surface reactivity of the MgO toward adsorbed water, turning its outer layer into brucite upon rehydration. Treatment by the second cycle of hydration-dehydration generated micropores, and slit-shaped mesopores, raising the porosity of the MgO. The overlayer of Fe2O3 of the core/shell type composite magnesium oxide enhanced this surface modification, turning its surface into more porous and more active one than that of uncoated MgO, after the treatment by the hydration-dehydration.
机译:通过在受控条件下水合,然后在动态真空下于高温下脱水,将相对惰性的微晶MgO表面改性为化学活性表面。即使通过第一水合-脱水循环进行的处理没有改变MgO的孔隙率,它仍大大增强了MgO对吸附水的表面反应性,在重新水合后其外层变成水镁石。水合-脱水的第二个循环处理产生微孔和狭缝状的中孔,从而提高了MgO的孔隙率。通过水合-脱水处理后,核/壳型复合氧化镁的Fe2O3覆盖层增强了这种表面改性,使其表面比未涂覆的MgO更具多孔性和活性。

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