EventsThe 2nd International Electronic Conference on Mineral Science
Published
This submission belongs to the session D. Mineral Geochemistry and Geochronology of the event The 2nd International Electronic Conference on Mineral Science
Published date
25 Feb, 2021
Citation
Silvana Gjyli, Arjan Korpa, Valdet Teneqja, Dritan Siliqi, Claudia Belviso, Siliceous Fly Ash Utilization Conditions for Zeolite Synthesis, in Proceedings of The 2nd International Electronic Conference on Mineral Science, 1 March–15 March 2021, MDPI: Basel, Switzerland, doi: 10.3390/iecms2021-09359
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Siliceous Fly Ash Utilization Conditions for Zeolite Synthesis

Arjan Korpa 2
Valdet Teneqja 2
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1. Department of Industrial Chemistry, Faculty of Natural Sciences, University of Tirana, 1000 Albania
2. Department of Chemistry, Faculty of Natural Sciences, University of Tirana, 1000 Albania
3. Istituto di Cristallografia, Consiglio Nazionale delle Ricerche, 70126 Bari, Italy
4. Institute of Methodologies for Environmental Analysis - IMAA-CNR, Tito Scalo (PZ), 85050 Italy
Abstract

Fly Ash is a coal combustion product partly disposed of in landfills since it finds no other application. Recycling this solid is of great benefit in terms of quality, cost effectiveness and environment. The chemical and mineralogical composition of siliceous fly ash makes it an attractive and economic raw material for the synthesis of zeolites. Zeolites are microporous, aluminosilicate minerals characterized by a three-dimensional network of tetrahedral units produced industrially on a large scale. In this work synthetic zeolite X and zeolite A with a high crystallinity and high value of surface area were synthesized by pre-fusion method followed by hydrothermal treatment at various conditions. The data indicate that zeolitic products were obtained using NaOH while no zeolitic material was crystallized using KOH and LiOH. Pre-treatment of fly ash with acid before being used in the synthesis of artificial zeolites is considered an important parameter for the purity phase of zeolites. Without sodium aluminate additions, synthetic zeolite A was not formed. The results confirm that temperature, crystallization time, SiO2/Al2O3 ratio, type of water (distilled water and seawater), are also important parameters influencing type of zeolite synthesized. Zeolite X was used as novel catalyst for alkylation of phenol using diethyl carbonate.

Keywords
fly ash
synthesis
zeolite structure
crystallinity
Manuscript
Oral Presentation
Poster
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