Open Access
Issue
E3S Web Conf.
Volume 552, 2024
16th International Conference on Materials Processing and Characterization (ICMPC 2024)
Article Number 01065
Number of page(s) 21
DOI https://doi.org/10.1051/e3sconf/202455201065
Published online 23 July 2024
  1. A.M. K. Aljebori and A. N. Alshirifi, "Effect of different parameters on the adsorption of textile dye maxilon blue GRL from aqueous solution by using white marble," Asian journal of chemistry, vol. 24, pp. 5813,(2012). [Google Scholar]
  2. Y. S. Al-Degs, M.I. El-Barghouthi, A. H. El-Sheikh, and G. M. Walker,"Effect of solution pH, ionic strength, and temperature on adsorption behaviour of reactive dyes on activated carbon," Dyes and pigments, vol. 77, pp. 16–23,(2008). [CrossRef] [Google Scholar]
  3. V. Gupta, "Application of low-cost adsorbents for dye removal-A review," Journal of environmental management, vol. 90, pp. 2313–2342, (2009). [CrossRef] [PubMed] [Google Scholar]
  4. M. A. M. Salleh, D. K. Mahmoud, W. A. W. A. Karim, and A. Idris, "Cationic and anionic dye adsorption by agricultural solid wastes: a comprehensive review," Desalination, vol. 280, pp. 1–13, (2011). [CrossRef] [Google Scholar]
  5. E. Eren and B. Afsin, "Investigation of a basic dye adsorption from aqueous solution onto raw and pre-treated sepiolite surfaces," Dyes and pigments, vol.73, pp. 162–167, (2007). [CrossRef] [Google Scholar]
  6. S. Allen and B. Koumanova, "Decolourisation of water/wastewater using adsorption," Journal of the University of Chemical Technology and Metallurgy, vol. 40, pp. 175–192, (2005). [Google Scholar]
  7. S Barbalho, F. Farinazzi-Machado, G. de Alvares, A. S. Brun-nati, and A. [Google Scholar]
  8. Otoboni, "Psidium guajava (Guava): A plant of multipurpose medicinal applications," Med Aromat Plants, vol. 1, pp. 2167–0412.1000104, 2012. [Google Scholar]
  9. Z. Aksu, "Application of adsorption for the removal of organic pollutants: a review," Process biochemistry, vol. 40, pp. 997–1026, (2005). [CrossRef] [Google Scholar]
  10. G. Crini, "Non-conventional low-cost adsorbents for dye removal: a review," Bioresource Technology, vol. 97, pp. 1061–1085, (2006). [CrossRef] [PubMed] [Google Scholar]
  11. H. Lachheb, E. Puzenat, A. Houas, M. Ksibi, E. Elaloui, C. Guillard, and J.-M. Herrmann, quot;Photocatalytic degradation of various types of dyes (Methylene Blue) in water by UV- irradiated titania," Applied Catalysis B: Environmental, vol. 39, pp. 75–90,(2002). [CrossRef] [Google Scholar]
  12. X. Chen, F. Zhang, Q. Wang, X. Han, X. Li, J. Liu, H. Lin, and F. Qu, "The synthesis of ZnO/SnO 2 porous nanofibers for dye adsorption and degradation," Dalton Transactions, vol. 44, pp. 3034–3042, (2015). [CrossRef] [PubMed] [Google Scholar]
  13. M. Asgher and H. N. Bhatti, "Evaluation of thermodynamics and effect of chemical treatments on sorption potential of Citrus waste biomass for removal of anionic dyes from aqueous solutions," Ecological Engineering, vol. 38, pp. 79–85, (2012). [CrossRef] [Google Scholar]
  14. O. S. Bello, O. M. Adelaide, M. A. Hammed, and O. A. M. Popoola, "Kinetic and equilibrium studies of methylene blue removal from aqueous solution by adsorption on treated sawdust," Macedonian Journal of Chemistry and Chemical Engineering, vol. 29, pp. 77–85, (2010). [CrossRef] [Google Scholar]
  15. R. P. Kumar, S. Varanasi, and V. Purushothaman, "Investigation of the adsorption mechanisms of Methylene blue onto press mud through kinetic modeling analysis," Indian Journal of Science and Technology, vol. 3, pp. 44–47, (2010). [CrossRef] [Google Scholar]
  16. Y.-S. Ho, R. Malarvizhi, and N. Sulochana, "Equilibrium isotherm studies of methylene blue adsorption onto activated carbon prepared from Delonix regia pods," Journal of Environmental Protection Science, vol. 3, pp. 111–116,(2009). [Google Scholar]
  17. P. Wang, M. Cao, C. Wang, Y. Ao, J. Hou, and J. Qian, "Kinetics andthermodynamics of adsorption of methylene blue by a magnetic graphene- carbon nanotube composite," Applied Surface Science, vol. 290, pp. 116–124,(2014). [CrossRef] [Google Scholar]
  18. M. Soni, A. K. Sharma, J. K. Srivastava, and J. Yadav, "Adsorptive removal of methylene blue dye from an aqueous solution using water hyacinth root powder as a low cost adsorbent," International Journal of Chemical Sciences and Applications, vol. 3, pp. 338–345, (2012). [Google Scholar]
  19. K. Mundhe, A. Gaikwad, R. Torane, N. Deshpande, and R. Kashalkar, "Adsorption of methylene blue from aqueous solution using Polyalthia longifolia (Ashoka) seed powder," J Chem Pharm Res, vol. 4, pp. 423–436,(2012). [Google Scholar]
  20. K. Tong, A. Azraa, and M. J. Noordin, "Isotherms and kinetics studies on the removal of methylene blue from aqueous solution by Gambir," International Journal of Environmental Science and Development, vol. 3, p. 232, (2012). [CrossRef] [Google Scholar]
  21. L. Zhou, J. Huang, B. He, F. Zhang, and H. Li, "Peach gum for efficient removal of methylene blue and methyl violet dyes from aqueous solution," Carbohydrate polymers, vol. 101, pp. 574–581, (2014). [CrossRef] [PubMed] [Google Scholar]
  22. Hassan, A. Abdel-Mohsen, and M.M. Fouda, "Comparative study of calcium alginate, activated carbon, and their composite beads on methyleneblue adsorption," Carbohydrate polymers, vol. 102, pp. 192–198, (2014). [CrossRef] [PubMed] [Google Scholar]
  23. VR Poiba, B Sowjanya, P King, M Vangalapati Advances in Materials and Processing Technologies Removal of methylene blue dye by using synthesised Grevillea robusta silver nanoparticles and optimisation of experimental parameters by response surface, 1–15,(2023). [Google Scholar]
  24. B Sowjanya, P King, M Vangalapati Skin of allium sativum (garlic) mediated green synthesis of zno nanoparticles and it’s adsorption performance for congo red dye removal: kinetic, isotherm and thermodynamic studies European Chemical Bulletin 12 (5), 326–332,(2023) [Google Scholar]
  25. VR Myneni, NR Kanidarapu, SK Kandasamy, M Vangalapati Advanced Microscopy: A Strong Analytical Tool in Materials Science Dyes Adsorption by Nanomaterials: Fixed-Bed Column Studies Using Nano Magnesium Oxide-Loaded Activated Carbon, 259–287,(2022). [Google Scholar]
  26. K Chandrika, A Chaudhary, T Mareedu, U Sirisha, M Vangalapati Adsorptive removal of acridine orange dye by green tea/copper-activated carbon nanoparticles (Gt/Cu-AC np) Materials Today: Proceedings 44, 2283–2289,(2021). [Google Scholar]
  27. VR Myneni, NR Kanidarapu, M Vangalapati Methylene blue adsorption by magnesium oxide nanoparticles immobilized with chitosan (CS-MgONP): response surface methodology, isotherm, kinetics and thermodynamic studies Iranian Journal of Chemistry and Chemical Engineering (IJCCE) 39 (6), 29–42,(2020). [Google Scholar]
  28. P VenkataRao, G SaiTarun, C Govardhani, B Manasa, PJ Joy Adsorption of congo red dye from aqueous solutions using synthesized silver nano particles of Grevillea robusta: Kinetic studies Materials Today: Proceedings 26, 3009–3014,(2023). [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.