Synthesis and characterization of Faujasite-Na from fly ash by the fusion-hydrothermal method

IF 2.7 4区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS Boletin de la Sociedad Espanola de Ceramica y Vidrio Pub Date : 2023-11-01 DOI:10.1016/j.bsecv.2023.01.004
Ricardo Adolfo Parra-Huertas, Carlos Ordulio Calderón-Carvajal, Jairo Alberto Gómez-Cuaspud, Enrique Vera-López
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引用次数: 6

Abstract

This research focused on the synthesis and characterization of Faujasite-Na zeolites from fly ash (FA). The FA was subjected to pretreatment processes, washings with hydrochloric acid solutions and heat treatments at 700 °C for 3 h, to remove unburned carbon that would affect the synthetic process. After a fusion with NaOH at 550 °C for 3 h, the resulting material was disposed in a hydrothermal reactor at 100 °C for 12 h to obtain the corresponding zeolite. The products were characterized by XRD analysis, where quartz, mullite, sillimanite and lime phases were identified for the fly ash; quartz, mullite and in higher proportion Faujasite-Na for the synthesized material. The average size of the crystals of the fly ash and zeolite Faujasite-Na was 35.0 and 38.7 nm respectively, while the FTIR results allowed the identification of vibrational bands, characteristic of SiOSi and SiO bonds. The TGA-DTA analysis, allowed the identification of signals associated with exothermic and endothermic processes related to water removal and Faujasite-Na formation, while the EDX analysis coupled to SEM allowed verifying that the composition of the samples is consistent with the results sought and that the morphological characteristics validate the proposed methodology. The XRF results confirm the composition of the fly ash and the obtained Faujasite in accordance with some previous results and an improved composition. Surface area analyses (BET) showed that synthesized Faujasite possess an active area of 460 m2 g−1 while the fly ash for its physicochemical properties just an area of 6 m2 g−1. The overall results confirmed the efficiency of Faujasite-Na synthesis from FA by the proposed fusion-hydrothermal method.

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利用熔融-水热法从粉煤灰中合成 Faujasite-Na 并确定其特性
这项研究的重点是利用粉煤灰合成 Faujasite-Na 沸石并确定其特性。对粉煤灰进行了预处理、盐酸溶液洗涤和 700 °C 下 3 小时的热处理,以去除会影响合成过程的未燃碳。在 550 °C 下与 NaOH 熔合 3 小时后,将所得材料放入 100 °C 的水热反应器中 12 小时,以获得相应的沸石。通过 XRD 分析对产品进行了表征,在粉煤灰中发现了石英、莫来石、矽线石和石灰相;在合成材料中发现了石英、莫来石和比例较高的 Faujasite-Na。粉煤灰和沸石 Faujasite-Na 晶体的平均尺寸分别为 35.0 纳米和 38.7 纳米,而傅立叶变换红外光谱分析结果则确定了 SiOSi 和 SiO 键的特征振动带。通过 TGA-DTA 分析,可以确定与脱水和 Faujasite-Na 形成有关的放热和吸热过程相关的信号,而结合 SEM 进行的 EDX 分析可以验证样品的成分与所寻求的结果一致,并且形态特征验证了所建议的方法。XRF 分析结果证实了粉煤灰的成分和获得的褐铁矿与之前的一些结果一致,并且成分有所改进。表面积分析(BET)显示,合成的 Faujasite 的活性面积为 460 平方米 g-1,而具有物理化学特性的粉煤灰的面积仅为 6 平方米 g-1。总体结果证实了利用拟议的熔融-水热法从 FA 合成 Faujasite-Na 的效率。
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来源期刊
Boletin de la Sociedad Espanola de Ceramica y Vidrio
Boletin de la Sociedad Espanola de Ceramica y Vidrio 工程技术-材料科学:硅酸盐
CiteScore
5.50
自引率
2.90%
发文量
72
审稿时长
103 days
期刊介绍: The Journal of the Spanish Ceramic and Glass Society publishes scientific articles and communications describing original research and reviews relating to ceramic materials and glasses. The main interests are on novel generic science and technology establishing the relationships between synthesis, processing microstructure and properties of materials. Papers may deal with ceramics and glasses included in any of the conventional categories: structural, functional, traditional, composites and cultural heritage. The main objective of the Journal of the Spanish Ceramic and Glass Society is to sustain a high standard research quality by means of appropriate reviewing procedures.
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