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A thermodynamic and kinetic study of catalyzed hydrolysis of aluminum nitride in secondary aluminum dross

机译:二次铝渣中氮化铝催化水解的热力学和动力学研究

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Aluminum dross, a harmful and abundant solid waste generated in aluminum industry, releases toxic ammonia and causes severe environmental pollution and public health disaster. Secondary aluminum dross (SAD) can be effectively treated by the efficient and complete decomposition of aluminum nitride (AlN). The hydrolysis behavior of AlN in SAD was evaluated by thermodynamic analysis and kinetic leaching experiments. Various factors such as temperature, time, liquid-to-solid ratio, additive type, and additive dosage were evaluated to optimize the hydrolysis of AlN. The chemical composition, mineralogical phases, particle size distribution, and morphology of SAD and leaching residue were determined by X-ray diffraction, X-ray fluorescence spectroscopy, laser particle size analysis, and scanning electron microscopy, respectively. The decomposition of AlN reached 96.24% under the following optimum conditions: leaching time of 180min, leaching temperature of 95°C, additive of 4wt% sodium hydroxide, and liquid-to-solid ratio of 6mLg?1. Meanwhile, the removal efficiency of chlorine and fluorine during leaching reached 95.63% and 69.17%, respectively. The hydrolysis data indicate that the effects of relevant factors on AlN removal are consistent with the shrinking unreacted-core model, where internal layer diffusion is the rate-controlling step. The rate-controlling step was changed to chemical reaction control with the addition of sodium hydroxide, which corrodes bayerite on the surface of AlN. The activation energy of AlN hydrolysis in SAD is 38.64kJmol?1.
机译:铝制渣滓,铝业产生的有害和丰富的固体废物,释放有毒的氨并导致严重的环境污染和公共卫生灾难。通过氮化铝(ALN)的有效和完全分解,可以有效地治疗二级铝渣(SAD)。通过热力学分析和动力学浸出实验评估ALN难以的水解行为。评价各种因素,如温度,时间,液体与实心比,添加剂型和添加剂剂量以优化ALN的水解。通过X射线衍射,X射线荧光光谱,激光粒度分析和扫描电子显微镜测定悲伤和浸出残留物的化学成分,矿物学相,粒度分布和形态。 Aln的分解在以下最佳条件下达到96.24%:浸出时间为180分钟,浸出温度为95℃,添加剂为4wt%的氢氧化钠,液体至固体比为6mlΩ1。同时,浸出过程中氯和氟的去除效率分别达到95.63%和69.17%。水解数据表明,相关因素对AlN去除的影响与收缩的未反应核模型一致,其中内层扩散是速率控制步骤。将速率控制步骤改变为化学反应控制,加入氢氧化钠,其在AlN的表面上腐蚀。悲伤中Aln水解的活化能量为38.64kJmol?1。

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