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Recycling of Waste Solution after Hydrothermal Conversion of Fly Ash on a Semi-Technical Scale for Zeolite Synthesis

机译:粉煤灰水热转化后的废液回收沸石合成的半技术规模

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摘要

Nowadays, using fly ash for zeolites production has become a well-known strategy aimed on sustainable development. During zeolite synthesis in a hydrothermal conversion large amount of post-reaction solution is generated. In this work, the solution was used as a substrate for Na-A and Na-X zeolites synthesis at laboratory and technical scale. Obtained materials were characterized using particle size analysis, X-ray diffraction (XRD), X-ray fluorescence spectroscopy (XRF), transmission electron microscopy (TEM), Fourier transformed infrared spectroscopy (FTIR), and nitrogen adsorption/desorption isotherm. Produced zeolites revealed high purity (>98%) and monomineral zeolitic phase composition. The SiO2 content was in the range 39–42% and 40–38%, whereas Al2O3 content was 23–22% and 25–26% for Na-X and Na-A, respectively. TEM and BET analyses revealed Na-X zeolite pores were almost identical to commercial 13X with SBET in the range 671–734 m2/g. FTIR indicated slight differences between materials obtained at laboratory and technical scale in Si-O-(Si/Al) bridges of the zeolitic skeleton. The results showed good replicability of the laboratory process in the larger scale. The proposed method allows for waste solution reusability with a view to highly pure zeolites production in line with circular economy assumptions.
机译:如今,使用用于沸石生产的粉煤灰已成为旨在可持续发展的知名策略。在沸石合成期间,在水热转化中产生大量的反应后溶液。在这项工作中,将溶液用作实验室和技术规模的Na-A和Na-X沸石合成的底物。使用粒度分析,X射线衍射(XRD),X射线荧光光谱(XRF),透射电子显微镜(TEM),傅里叶变换的红外光谱(FTIR)以及氮吸附/解吸等温线进行了所得的材料。产生的沸石显示出高纯度(> 98%)和单体沸石相组合物。 SiO 2含量为39-42%和40-38%,而Al 2 O 3含量分别为Na-X和Na-A的23-22%和25-26%。 TEM和BET分析显示Na-X沸石孔隙与商业13x几乎相同,SBET在671-734m2 / g的范围内。 FTIR在沸石骨架的Si-O-(Si / Al)桥梁在实验室和技术规模处获得的材料之间的微小差异。结果表明,实验室过程在较大规模中良好的可复制性。该方法允许废物溶液可重用性,以符合循环经济假设的高度纯沸石生产。

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