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首页> 外文期刊>Chemical engineering journal >Preparation of ZrO2 and ZrO2-TiO2 microspheres by the sol-gel method and an experimental design approach to their strontium adsorption behaviours
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Preparation of ZrO2 and ZrO2-TiO2 microspheres by the sol-gel method and an experimental design approach to their strontium adsorption behaviours

机译:溶胶-凝胶法制备ZrO2和ZrO2-TiO2微球及其锶吸附行为的实验设计方法

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ZrO2 and ZrO2-TiO2 mixed gel spheres were prepared via sol-gel process. The source sols of Zr and Zr-Ti (with 1:1 molar ratio) were prepared by the ammonia addition method starting from ZrOCl2 and TiCl4 solutions. A simple method, using a gelation column containing two phases (methyl isobutyl ketone and ammonia) as sphere forming and gelling medium, allowing to direct preparation of ZrO2 and ZrO2-TiO2 mixed gel spheres. The adsorption behaviours of each adsorbent towards strontium were determined by the experimental design method for the possible application to its removal from radioactive waste solutions. pH, temperature, strontium concentration and shaking time were chosen as independent variables and the efficiency of strontium removal as dependent output variable. Central composite design (CCD), with seven replicates at the centre points and thus a total of 31 experiments were employed in this study for each synthesized ZrO2 and ZrO2-TiO2 microspheres. Sorption data have been interpreted in terms of Freundlich, Langmuir and Dubinin-Radushkevich equations. Thermodynamic parameters for the sorption system have been determined. Each adsorbent were subjected to thermal treatment from 600 °C to 900°C and were investigated by XRD, FTIR, DTA/TGA, SEM and BET surface area methods.
机译:通过溶胶-凝胶法制备了ZrO2和ZrO2-TiO2混合凝胶球。 Zr和Zr-Ti的源溶胶(摩尔比为1:1)是从ZrOCl2和TiCl4溶液通过氨水添加法制备的。一种简单的方法,使用包含两相(甲基异丁基酮和氨)的凝胶柱作为球形成和凝胶介质,可以直接制备ZrO2和ZrO2-TiO2混合凝胶球。通过实验设计方法确定每种吸附剂对锶的吸附行为,以用于从放射性废物溶液中去除锶的可能应用。选择pH,温度,锶浓度和振荡时间作为自变量,去除锶的效率作为因变量。中心复合设计(CCD),在中心点有七个重复项,因此对于每个合成的ZrO2和ZrO2-TiO2微球,总共进行了31个实验。吸附数据已根据Freundlich,Langmuir和Dubinin-Radushkevich方程进行了解释。已经确定了吸附系统的热力学参数。对每种吸附剂进行600°C至900°C的热处理,并通过XRD,FTIR,DTA / TGA,SEM和BET表面积方法进行研究。

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