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Study on kinetics of the pyrolysis process of aluminum sulfate

机译:硫酸铝热解过程的动力学研究

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Using high aluminum gangue as a raw material, aluminum sulfate 18 hydrate was made by the sulfuric acid leaching method under certain conditions. The product was characterized using X-ray diffraction (XRD) analysis of the phases, x-ray-fluorescence (XRF) analysis of the aluminum and sulfur content and thermogravimetric analysis of the crystallized water [Al-2(SO4)(3)center dot 18H(2)O]. Change characteristics of the crystal form and morphology during pyrolysis of octadecahydrate aluminum sulfate were studied by thermogravimetric Analysis (TGA), differential scanning calorimetry (DSC), differential thermogravimetry (DTG), XRD and scanning electron microscope (SEM). The theoretical basis for the preparation of metallurgical alumina from octadecahydrate aluminum sulfate was provided. According to the characteristics of the crystal structure change, the pyrolysis process of octadecahydrate aluminum sulfate can be separated into three stages. The first stage (dehydration stage 87-250 degrees C) had a weight loss rate of 40.5% and a loss of 15 water molecules; the weight loss rate of the second stage (dehydration stage 280-414 degrees C) was 8.1% with three water molecules lost; the weight loss rate of the third stage (decomposition stage 770-900 degrees C) was 36.1%, where three SO3 molecules were lost. The pyrolysis products were mainly Al2O3. The activation energies of the three reaction stages were calculated using the Coats-Redfern method as 90.02 kJ/mol, 205.74 kJ/mol and 284.40 kJ/mol, respectively.
机译:使用高铝煤矸石作为原料,通过硫酸浸出方法在某些条件下制备硫酸铝18水合物。该产物的特征在于使用X射线衍射(XRD)分析分析,铝和硫含量的X射线荧光(XRF)分析和结晶水的热重分析[Al-2(SO4)(3)中心点18h(2)o]。通过热量分析(TGA),差示扫描量热法(DSC),差分热重量(DTG),XRD和扫描电子显微镜(SEM)研究了十八碳酸铝硫酸铝硫酸铝硫酸铝热解期间晶体形式和形态的变化特征。提供了制备来自十八碳酸铝硫酸铝硫酸铝冶金氧化铝的理论依据。根据晶体结构变化的特点,十八碳酸铝硫酸铝的热解过程可以分为三个阶段。第一阶段(脱水阶段87-250℃)的体重减轻率为40.5%,损失15个水分子;第二阶段的减肥率(脱水阶段280-414℃)为8.1%,其中三种水分子损失;第三阶段的减肥率(分解阶段770-900c)为36.1%,其中损失了三种SO 3分子。热解产品主要是Al 2 O 3。三种反应阶段的活化能量分别使用涂层涂层方法为90.02kJ / mol,205.74kJ / mol和284.40kJ / mol。

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