AI Article Synopsis

  • Class F South African coal fly ash was successfully used to synthesize zeolite A through microwave irradiation, with adjustments in synthesis conditions to minimize impurities.
  • Optimizing the Si/Al ratio and using the correct extraction method were crucial, as ineffective ratios led to the formation of unwanted phases like sodalite.
  • This method resulted in zeolite A with desirable properties for environmental applications, highlighting microwave synthesis as a more eco-friendly alternative to traditional methods that require more energy and time.

Article Abstract

Class F South African coal fly ash was used as a precursor for the synthesis of zeolite A via complete microwave irradiation. To attain optimal conditions for the synthesis of zeolite A with minimum impurities, the microwave synthesis time, irradiation power, and Si/Al ratio were varied. Sodalite with fly ash phases were obtained when the Si/Al ratio in the coal fly ash was not adjusted and when the microwave irradiated coal fly ash slurry was used instead of the extract solution. Increased microwave irradiation time power and time favored the crystallization of zeolite A phase due to sufficient energy needed to ensure the dissolution of Al and Si from coal fly ash. A Brunauer-Emmett-Teller surface area of 29.54 m/g and a cation exchange capacity of 3.10 mequiv/g were achieved for zeolite A, suggesting its potential application as an adsorbent and cation exchange material for environmental remediation. Complete microwave irradiation offers a greener approach toward zeolite synthesis from coal fly ash compared to conventional hydrothermal and fusion methods that consume a lot of energy and require longer reaction times.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7542601PMC
http://dx.doi.org/10.1021/acsomega.0c00931DOI Listing

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