Zeolite Synthesis and Steam: Preliminary data Using coal fly ash as raw Material

被引:0
作者
Claudia Belviso
Antonio Lettino
Francesco Cavalcante
机构
[1] Istituto di Metodologie per l’Analisi Ambientale,
[2] IMAA–CNR,undefined
[3] Tito Scalo (PZ),undefined
来源
Journal of Cluster Science | 2023年 / 34卷
关键词
Vapor-phase crystallization method; Coal fly ash; Steam, zeolite;
D O I
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中图分类号
学科分类号
摘要
In this work, vapor-phase crystallization method (VPC) was used to form sodalite from coal fly ash, a waste material obtained from burning coal in thermoelectric power plants. During the experiments, raw material was contacted only with steam from distilled water heated at 45, 60 and 90 °C. The preliminary results indicated that VPC treatment controls the zeolite synthesis through an intermediate mechanism between solid-state transformation and hydrothermal synthesis. The increasing sodalite-cancrinite interzeolite formation up to 90 °C confirms this mechanism. In detail, the data show the sodalite crystallization at 45 °C. The amount of this newly formed phase increases up to 60 °C, showing a better defined shape at this temperature. VPC treatment at 90 °C determines a progressive sodalite transformation into cancrinite and/or nosean. Compared to other conventional methods for zeolite synthesis, the steam assisted process results in less liquid waste production thus offering many advantages for the environment.
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页码:3041 / 3046
页数:5
相关论文
共 221 条
[1]  
Awala H(2015)undefined Nat. Mater 14 447-451
[2]  
Gilson JP(2009)undefined Chem. Eng. Process 48 1288-1292
[3]  
Retoux R(2020)undefined Materials 13 4780-25
[4]  
Boullay P(2017)undefined J. Assoc. Arab Univ. Basic Appl. Sci 24 19-330
[5]  
Goupil JM(2016)undefined Microporous Mesoporous Mat 226 325-617
[6]  
Valtchev V(2006)undefined J. Chem. Technol. Biotechnol 81 614-6130
[7]  
Mintova S(2017)undefined ACS Sustainable Chem. Eng 5 6124-186
[8]  
Karami D(2014)undefined Appl. Clay Sci 97 182-37
[9]  
Rohani S(2016)undefined Microporous Mesoporous Mat 219 29-29
[10]  
Belviso C(2018)undefined Microporous Mesoporous Mat 270 24-84