Research Article

Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations

Volume: 10 Number: 2 December 31, 2024
EN

Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations

Abstract

Bu çalışma anyonik (reaktif turuncu 16 (RO16), direkt sarı 50 (DY50), asit mavisi 25 (AB25) ve katyonik (malakit yeşili (MG), metilen mavisi (MB)) gibi çeşitli boyaların kitosan, lesitin ve mantar özütü ile hazırlanan nanopartiküllü biyonanosorbent (KLcPEE)’in adsorpsiyon kapasitesini analiz etmektedir. Biyosorbentin yüzeyini karakterize etmek için FE-SEM ve FTIR teknikleri kullanılmıştır. KLcPEE biyonanosorbent, MG, MB, RO16, DY50 ve AB25'in 100 mg/L sulu ortamı için sırasıyla 56,77, 59,76, 74,33, 83,45 ve 147,30'luk maksimum boya giderme kapasitesi sergilemiştir. KLcPEE biyonanosorbentteki tüm katyonik ve anyonik boyaların adsorpsiyon süreci, psödo 1.ci dereceden kinetik modeliyle uyumlu olduğu gözlemlenmiştir. Genel olarak, bu çalışma çevre dostu, sürdürülebilir, biy-olojik bir biyonanosorbent sunumakta ve KLcPEE, atık suda hızlı ve etkili organik katyonik ve anyonik boyaların adsorpsiyonu için önemli bir potansiyel sergilemektedir.

Keywords

References

  1. Xu, Z., Yang, Q., Zheng, X., Liu, X., Zhao, J., Tan, S.H., Liu, Z. (2024). All-weather-available down carbon fiber hydrogel with enhanced mechanical properties for simultaneous efficient clean water generation and dye adsorption from dye wastewater. Journal of Colloid and Interface Science, 669, 864-876.
  2. Baran, M.F., Yildirim, A., Acay, H., Keskin, C., & Aygun, H. (2020). Adsorption performance of Bacillus licheniformis sp. bacteria isolated from the soil of the Tigris River on mercury in aqueous solutions. International Journal of Environmental Analytical Chemistry, 102(9), 2013–2028.
  3. Paşa, S., Demir, İ., & Aytepe, Y. (2024). Comparative Investigation of the Color Removal Efficiency of Different Mosses Species from Dye Solutions. International Journal of Pure and Applied Sciences, 10(1), 136-151.
  4. Tepe, Ö. (2022). Pseudomonas putida ile Üretilmiş Biyojenik Mangan Oksit Kullanarak Remazol Brilliant Blue R Giderimi. International Journal of Pure and Applied Sciences, 8(2), 449-459.
  5. Alabbad, E.A. (2023). Effect of Direct yellow 50 removal from an aqueous solution using nano bentonite; adsorption isotherm, kinetic analysis and also thermodynamic behaviour. Arabian Journal of Chemistry, 16(2), 2023, b104517.
  6. Yildirim, A. (2021). Removal of the Anionic Dye ReactiveOrange 16 by Chitosan/Tripolyphosphate/Mushroom. Chemical Engineering & Technology, 44(8), 1371-1381.
  7. Saheed, I.O., Oh, W.D., Suah, F.B.M. (2021). Enhanced adsorption of acid Blue-25 dye onto chitosan/porous carbon composite modified in 1-allyl-3-methyl imidazolium bromide ionic liquid. International Journal of Biological Macromolecules, 183, 1026-1033.
  8. Mandale, P., Kulkarni, K., Jadhav, K., Kulkarni, A., Mahajan, R. (2024). Adsorption of malachite green dye from aqueous solution on bioadsorbent as low-cost adsorbent. Materials Today: Proceedings, XX.

Details

Primary Language

English

Subjects

Analytical Chemistry (Other)

Journal Section

Research Article

Early Pub Date

December 30, 2024

Publication Date

December 31, 2024

Submission Date

August 27, 2024

Acceptance Date

December 28, 2024

Published in Issue

Year 2024 Volume: 10 Number: 2

APA
Yıldırım, A., & Acay, H. (2024). Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations. International Journal of Pure and Applied Sciences, 10(2), 642-655. https://doi.org/10.29132/ijpas.1539646
AMA
1.Yıldırım A, Acay H. Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations. International Journal of Pure and Applied Sciences. 2024;10(2):642-655. doi:10.29132/ijpas.1539646
Chicago
Yıldırım, Ayfer, and Hilal Acay. 2024. “Harmful Dye Adsorption via Chitosan-Lecithin-Pleurotus Eryngii Extract Bionanosorbent: Kinetic Investigations”. International Journal of Pure and Applied Sciences 10 (2): 642-55. https://doi.org/10.29132/ijpas.1539646.
EndNote
Yıldırım A, Acay H (December 1, 2024) Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations. International Journal of Pure and Applied Sciences 10 2 642–655.
IEEE
[1]A. Yıldırım and H. Acay, “Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations”, International Journal of Pure and Applied Sciences, vol. 10, no. 2, pp. 642–655, Dec. 2024, doi: 10.29132/ijpas.1539646.
ISNAD
Yıldırım, Ayfer - Acay, Hilal. “Harmful Dye Adsorption via Chitosan-Lecithin-Pleurotus Eryngii Extract Bionanosorbent: Kinetic Investigations”. International Journal of Pure and Applied Sciences 10/2 (December 1, 2024): 642-655. https://doi.org/10.29132/ijpas.1539646.
JAMA
1.Yıldırım A, Acay H. Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations. International Journal of Pure and Applied Sciences. 2024;10:642–655.
MLA
Yıldırım, Ayfer, and Hilal Acay. “Harmful Dye Adsorption via Chitosan-Lecithin-Pleurotus Eryngii Extract Bionanosorbent: Kinetic Investigations”. International Journal of Pure and Applied Sciences, vol. 10, no. 2, Dec. 2024, pp. 642-55, doi:10.29132/ijpas.1539646.
Vancouver
1.Ayfer Yıldırım, Hilal Acay. Harmful dye adsorption via chitosan-lecithin-pleurotus eryngii extract bionanosorbent: kinetic investigations. International Journal of Pure and Applied Sciences. 2024 Dec. 1;10(2):642-55. doi:10.29132/ijpas.1539646
download?token=eyJ1aWQiOjExNDQyMSwiYXV0aF9yb2xlcyI6WyJST0xFX1VTRVIiXSwiZW5kcG9pbnQiOiJqb3VybmFsIiwib3JpZ2luYWxuYW1lIjoiVFJEaXppbmxvZ29fbGl2ZS1lMTU4Njc2Mzk1Nzc0Ni5wbmciLCJwYXRoIjoiZmQ0MS83M2Q5LzM2NDkvNjlhMDA3ODA1YTlmMTcuOTY1MTM2NDYucG5nIiwiZXhwIjoxNzcyMDk4OTYwLCJub25jZSI6IjZiYTZlMjJkZWUxOWZkZmQ0Y2Y5ZGU2ZDM5ZGYxYWIwIn0.cBh4PLOiOk2HZxiMIuHbYkE-VqlAI6yS9_1ogzjRrlY

154501544915448154471544615445