Adsorption of Cefixime from aqueous solutions by biochar prepared from pine leaves (Pinus kesiya)

Authors

  • Huynh Phuong Thao Dalat University Author
  • Nguyen Van Ha Dalat University Author
  • Nguyen Tien Dat Vietnam Atomic Energy Institute Author
  • Nguyen Phi Ho Dalat University Author
  • Tran Nguyen Ngoc Duyen Dalat University Author

DOI:

https://doi.org/10.51316/jca.2023.046

Keywords:

biochar, pine leaves, kinetics, isotherms, Adsorption of Cefixime

Abstract

Nowadays, water pollution due to antibiotics is a serious matter. This present research investigated to analyze the characteristics of biochar from pine leaves (Pinus kesiya) to remove the antibiotic Cefixime from aqueous solutions. The influence of some factors: pH (2-10); contact time (10-240 mins); initial concentration of Cefixime were carried out. The characterization of materials was determined by using FT-IR (Fourier Transform Infrared Spectrometer), BET (Brunauer - Emmett - Teller), and SEM (Scanning Electron Microscope). Biosorption data was suitable for Langmuir and Freundlich isotherm models. Through the linear equation of the Langmuir isotherm model, the maximum adsorption capacities of Cefixime (qmax) were 21,51 mg/g. The biosorption process obeyed the Pseudo second-order kinetic models. This research proves that biochar is a potential biosorbent for antibiotic Cefixime removal from an aqueous solution with high efficiency, low cost, and environmental friendliness.

Downloads

Download data is not yet available.

References

M. Godoy, J. Sánchez, Antibiotic Materials in Healthcare (2020) 221. https://doi.org/10.1016/B978-0-12-820054-4.00012-4

J.E. Sosa-Hernández, L.I. Rodas-Zuluaga, I. Y.López-Pacheco, E. M.Melchor-Martínez, Z. Aghalari, D.S. Limón, H. M.N.Iqbal, R. Parra-Saldívar, Case Studies in Chemical and Environmental Engineering 4 (2021) 100127. https://doi.org/10.1016/j.cscee.2021.100127

V. Hasanzadeh, O. Rahmanian, M. Heidari, Microchemical Journal 152 (2020). https://doi.org/10.1016/j.microc.2019.104261

M.H. Rasoulifard, S. Khanmohammadi, A. Heidari, Water Sci Technol 74 (2016) 1069. https://doi.org/10.2166/wst.2016.230

M. Vithanage, S.S. Mayakaduwa, I. Herath, Y.S. Ok, D. Mohan, Chemosphere 150 (2016) 781. https://doi.org/10.1016/j.chemosphere.2015.11.002

O.A. Ajala, S.O. Akinnawo, A. Bamisaye, D.T. Adedipe, M.O. Adesina, O.A. Okon-Akan, T.A. Adebusuyi, A.T. Ojedokun, K.A. Adegoke, O.S. Bello, RSC Adv 13 (2023) 4678. https://doi.org/10.1039/D2RA06436G

M.E. Bidhendi, Z. Poursorkh, H. Sereshti, H.R. Nodeh, S. Rezania, M.A. Kamboh, International Journal of Environmental Research and Public Health 17 (2020) 4223. http://dx.doi.org/10.3390/ijerph17124223

S.A. Bizaki, N. Bahramifar, R. Zandipak, F. Bahmeei, International Journal of Environmental Analytical Chemistry 102 (2022) 7800. https://doi.org/10.1080/03067319.2020.1838496

H.P. Thảo, T.Đ. Tiệp, N.V Hạ, N.N Tuấn, Đ.T Nhân. Journal of Chemistry, 55(2017), 162-166.

H.P. Thảo, N.V Hạ, N.N Tuấn. Journal of Analytical Sciences, 24 (2019) 46-49.

H.P. Thảo, N.V Hạ, N.N Tuấn, N. Giằng, Đ.T Nhân. Journal of Chemistry, 57 (2019) 275-279.

H.P. Thảo, N.V Hạ, N.N Tuấn, Đ.T Nhân, T.Q Hiếu. Journal of Analytical Sciences, 24(2019) 86-90.

O.A. Ajala, S.O. Akinnawo, A. Bamisaye, D.T. Adedipe, M.O. Adesina, O.A. Okon-Akan, T.A. Adebusuyi, A.T. Ojedokun, K.A. Adegoke, O.S. Bello, RSC Adv 13 (2023) 4678. https://doi.org/10.1039/D2RA06436G

Z. Haddadian, M.A Amin Shavandi, Z. Zainalabidin, A. Fakhru’l-Razi, and M. Shah Ismail. Chemical Science Transactions 2 (2013) 900. http://dx.doi.org/10.7598/cst2013.439

A.S Yusuff, A.O Gbadamosi, M.A Lala, J.F Ngochindo. Environmental Science and Pollution Research 25 (2018) 19143. https://doi.org/10.1007/s11356-018-2075-2

T. Benabbouha, R. Nmila, M. Siniti, K. Chefira, H. El Attari & H. Rchid. SN Applied Sciences, 2 (2020). https://doi.org/10.1007/s42452-020-2492-y

Y. Sun, T. Wang, C. Han, X. Lv, L. Bai, X. Sun, P. Zhang. Bioresource Technology 344 (2022). https://doi.org/10.1016/j.biortech.2021.126186

R. Khazaei, A. Rahmani, A. Seidmohammadi, J. Faradmal, M. Leili. Scientific Journal of Kurdistan University of Medical Sciences 24 (2019) 22. http://dx.doi.org/10.29252/sjku.24.4.22

D. Naghipour, A. Amouei, K.T. Ghasemi, and K. Taghavi. Desalination and Water Treatment 201 (2020), 219. http://dx.doi.org/10.5004/dwt.2020.26133

P.T Huynh, N.T Nguyen, H.N Van, P.T Nguyen, T.D Nguyen, and V.P Dinh. Desalination and Water Treatment 173 (2020) 383. https://doi.org/doi:%2010.5004/dwt.2020.24807

H.R. Pouretedal and N. Sadegh. Journal of Water Process Engineering 1 (2014) 64. https://doi.org/10.1016/j.jwpe.2014.03.006

A.C. Martins, O. Pezoti, A.L. Cazetta, K.C. Bedin, D.A.S. Yamazaki, G.F.G. Bandoch, T. Asefa, J.V. Visentainer, V.C. Almeida. Chemical Engineering Journal 260 (2015) 291. https://doi.org/10.1016/j.cej.2014.09.017

H. Sereshti, E.B. Abadi, M.E. Bidhendi, I. Ahamd, S. Shahabuddin, H.R. Nodeh, N. Sridewi, W.N Wan Ibrahim. Nanomaterials (Basel) 12 (2022) 3576. https://doi.org/10.3390/nano12203576

Published

30-09-2023

Issue

Section

Full Articles

How to Cite

Adsorption of Cefixime from aqueous solutions by biochar prepared from pine leaves (Pinus kesiya). (2023). Vietnam Journal of Catalysis and Adsorption, 12(3), 45-51. https://doi.org/10.51316/jca.2023.046

Share

Similar Articles

1-10 of 167

You may also start an advanced similarity search for this article.