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Effect of process factors on properties of high dispersion spherical alpha-Al(2)O(3 )particles prepared by hydrothermal method

机译:过程因素对水热法制备高分散球形α-Al(2)O(3)颗粒的性能的影响

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摘要

Spherical alpha-Al2O3 powders were synthesized from a mixed solution consisting of Al-2(SO4)(3)center dot 18H(2)O, Al (NO3)(3)center dot 9H(2)O( )and CH4N2O by hydrothermal method with muffle calcination and microwave calcination. Effects of raw material ratio, reaction temperature, and filling factor on properties of products were investigated. Properties of thermal behavior, functional groups, phase composition, microstructure and specific surface of precursors and products were characterized by DSC-TG, FT-IR, XRD, SEM and BET, respectively. Results show that SO42- plays an important role in the sphere formation of precursors and particle size can be changed by adding different proportion of NO3-. Precursors are amorphous spherical hydrated alumina containing SO42-, and the conversion of crystalline phase is from amorphous to gamma-phase and then to alpha-phase at 1100 degrees C. Spherical morphology can be retained after crystallization to alpha-Al2O3. Compared with muffle furnace, Microwave calcination can increase calcining rate by three times and reduce insulation time by three quarters. When hydrothermal reaction temperature is 120 degrees C, the particles can be precipitated with good sphericity and narrow grain size distribution. If hydrothermal reaction temperature is too high or too low, spherical morphology can't be obtained. Size of the particles can be regulated by the different raw material ratio and filling factor from 800 nm to 3 mu m, and specific surface area is in the range of 8 m(2)/g similar to 15 m(2)/g.
机译:球形α-Al2O3粉末由由Al-2(SO 4)(3)中心点18H(2)O,Al(NO 3)(3)中心点9H(2)O()和CH 4N 2 O通过水热的混合溶液合成用Muffle煅烧和微波煅烧的方法。研究了原料比,反应温度和填充因子对产物性质的影响。通过DSC-Tg,FT-IR,XRD,SEM和BET分别表征了前体和产物的热行为,官能团,相组合物,微观结构和比表面的性质。结果表明,SO42-在面体形成中起重要作用,通过添加不同比例的NO 3-可以改变粒度。前体是含有SO 4 2-的无定形球形水合氧化铝,结晶相转化为无定形对γ-相,然后在1100℃下α相α-相。结晶至α-Al2O3后可以保留球形形态。与马弗炉相比,微波煅烧可以将煅烧率提高三次,并减少3个季度的绝缘时间。当水热反应温度为120℃时,颗粒可以用良好的球形和窄粒度分布沉淀。如果水热反应温度过高或太低,则无法获得球形形态。颗粒的尺寸可以通过不同的原料比和填充因子从800nm至3μm的填充因子调节,并且比表面积为8μm(2)/ g的范围,类似于15μm(2)/ g。

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