制备沸石和铝沸石作为铝盐渣增值的方法

A. Jiménez, A. Misol, Á. Morato, M. Vicente, V. Rives, R. Trujillano, A. Gil, S. Korili
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引用次数: 0

摘要

如今,科学技术的进步使人类改善了生活方式,但与此同时,其他问题也出现了。目前,环境问题是最重要的问题之一。许多国家制定了大量的环境法,目的是减少人类和工业对环境的影响。在这项工作中,对铝回收过程中产生的最重要的废物之一,即盐渣,开发了一种增值程序,发现最终的固体可以用于环境应用。该工艺分为两个步骤:1)从各种渣段中回收铝,b)利用回收的铝合成两种沸石,即铝矾(NaAlSi2O6·H2O)和污染石(CsAlSi2O6·nH2O)。盐渣经研磨、筛分(1 mm)、洗涤后分离成两组不同粒度的矿渣,一组大于0.4 mm,另一组小于0.4 mm。在回流条件下,用不同浓度的NaOH或CsOH溶液处理<0.4 mm的馏分。萃取液中含有铝和碱金属阳离子;加入必要量的Si后,在200℃下水热合成24小时,得到沸石材料。采用粉末x射线衍射、热分析、红外光谱、元素化学分析和电子显微镜对固体进行了表征。第一步的结果表明,在<0.4 mm的馏分中,可以回收高纯度的Al (~ 44 wt.%)。第二步的实验结果表明,从萃取液和硅源中可以水热合成结晶性的铝石和沸石,这是PXRD检测到的唯一相。致谢MINECO和ERDF(融资,MAT2016-78863-C2-R)。卡斯蒂利亚和莱昂军政府(形成方案,AJ和AM)。桑坦德银行(Santander Bank)
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Preparation of Pollucite and Analcime Zeolites as a Method to Valorize Aluminum Saline Slags
Nowadays scientific and technological advances have allowed to Mankind to improve the life-style, but in this way, other problems have appeared. Currently, environmental problems are one of the most important. Many countries have developed a large number of environmental laws with the purpose of reducing human and industrial effects in the environment. In this work, a valorization procedure is developed for one of the most important wastes generated during aluminum recycling, namely, saline slag, finding that the final solids can be used for environmental applications. The procedure is divided into two steps: 1) recovery of aluminum from various slag fractions, and b) the use of recovered aluminum in the synthesis of two zeolites, namely, analcime (NaAlSi2O6·H2O) and pollucite (CsAlSi2O6·nH2O). Saline slag was ground, sieved (1 mm), washed and separated into two fractions of different sizes, one larger than 0.4 mm and other lower than 0.4 mm. The fraction <0.4 mm was treated under reflux conditions with NaOH or CsOH solutions of different concentrations. The extraction liquor contained aluminum and alkali metal cations; thus after adding the necessary amount of Si, hydrothermal synthesis was carried out at 200 °C for 24 hours, obtaining the zeolitic materials. The solids were characterized by powder X-ray diffraction, thermal analysis, FT–IR spectroscopy, element chemical analysis and electron microscopy. The results of the first step showed that a high percentage of Al (~ 44 wt.%) in the fraction <0.4 mm, can be recovered. The results of the second step indicated that crystalline analcime and pollucite zeolites can be hydrothermally synthesized from extractions liquors and a source of Si, being the only phases detected by PXRD. Acknowledgements. MINECO and ERDF (financing, MAT2016-78863-C2-R). Junta de Castilla y Leon (formation programs, AJ and AM). Santander Bank (AG).
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