Alcohol Sensing Bimetallic Tin Vanadium Metal Oxide and Their Removal Efficacy of Lead And Cadmium Metal Ions from Aqueous Solution Through Ion Exchange Method

  • Unique Paper ID: 150782
  • Volume: 7
  • Issue: 10
  • PageNo: 51-55
  • Abstract:
  • Bimetallic tin vanadium metal oxide were synthesized by simple sol-gel method and characterized by different instrumental techniques. The material has an ion exchange capacity of 1.01 meqg-1 and carried out different metal ions distribution study. The material has high removing ability towards lead and cadmium metal ions from aqueous solutions. Synthetic binary separation of lead and cadmium ions was carried out. The material has sensing ability to detect 300ppm level phenol from aqueous solution and can be regenerated the material.

Copyright & License

Copyright © 2025 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{150782,
        author = {Vinisha Valsaraj P and Mahesh S},
        title = {Alcohol Sensing Bimetallic Tin Vanadium Metal Oxide and Their Removal Efficacy of Lead And Cadmium Metal Ions from Aqueous Solution Through Ion Exchange Method},
        journal = {International Journal of Innovative Research in Technology},
        year = {},
        volume = {7},
        number = {10},
        pages = {51-55},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=150782},
        abstract = {Bimetallic tin vanadium metal oxide were synthesized by simple sol-gel method and characterized by different instrumental techniques. The material has an ion exchange capacity of 1.01 meqg-1 and carried out different metal ions distribution study. The material has high removing ability towards lead and cadmium metal ions from aqueous solutions. Synthetic binary separation of lead and cadmium ions was carried out. The material has sensing ability to detect 300ppm level phenol from aqueous solution and can be regenerated the material.},
        keywords = {Meatl oxide, sol-gel method, sensor},
        month = {},
        }

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