Original ArticleInternational Journal of Pharmaceutical InvestigationVol. 11 | Issue 4 | pp. 384–388Open access
Highly Efficient Adsorption and Removal of Amoxicillin from Aqueous Solution by Magnetic Graphene Oxide Nanocomposite
- 1,
- 2,
- 3,
- 4,
- 1*
- 1 Department of Environmental Health Engineering, Health Promotion Research Center, Zahedan University of Medical Sciences, Zahedan, IRAN.
- 2 Student Research Committee, Zahedan University of Medical Sciences, Zahedan, IRAN.
- 3 Department of Chemistry, Sam Higginbottom University of Agriculture Technology and Sciences (SHUATS), Allahabad, Uttar Pradesh, INDIA.
- 4 Department of Medical Language, Zahedan University of Medical Sciences, Zahedan, IRAN.
Published in International Journal of Pharmaceutical Investigation
Correspondence: Davoud Balarak
Department of Environmental Health Engineering, Health Promotion Research Center, Zahedan University of Medical Sciences, Zahedan, IRAN.
Email: dbalarak2@gmail.com
- Received:
- Sep 14, 2021
- Accepted:
- Nov 13, 2021
- DOI:
- 10.5530/ijpi.2021.4.69
How to cite
Mostafapour, F. K., Bazi, M., Siddiqui, S. H., Bagheri, H., & Balarak, D. Highly Efficient Adsorption and Removal of Amoxicillin from Aqueous Solution by Magnetic Graphene Oxide Nanocomposite. International Journal of Pharmaceutical Investigation, 11(4), 384–388. https://doi.org/10.5530/ijpi.2021.4.69
Abstract
Background: Antibiotics have lasting effects on the environment. Among the properties of these substances are non-biodegradable, carcinogenic, high toxicity, and an increase in antibiotic-resistant bacteria. Therefore, they should be removed from aqueous solutions and the point of this think was to adsorb amoxicillin (AMO) by magnetic graphene oxide nanocomposite (MGO). Methods: The adsorption behavior of AMO was studied in a series of batch experiments as a function of pH (3-11), contact time (0-120 min), and AMO concentration (10-100 mg/L) different MGO dosages (0.1-1 g/L). The structures of MGO were confirmed by scanning electron microscope (SEM), and the X-ray diffraction (XRD). Results: The results revealed in optimized conditions (pH=3, contact time=75 min, AMO concentration= 10mg/L and adsorbent dose=0.75 g/L) maximum adsorption capacity and removal efficiency of AMO were 98.41 mg/g, respectively. The thermodynamical parameters showed that the sorption method was endothermal and spontaneous. Conclusion: MGO nanoparticles have extended capabilities such as easy and rapid separation from solution and high potential in removing AMO, so, it can be introduced as an appropriate adsorbent for removal of this antibiotics from water and wastewater.
Keywords
Subject
Article metadata
| Title | Highly Efficient Adsorption and Removal of Amoxicillin from Aqueous Solution by Magnetic Graphene Oxide Nanocomposite |
|---|---|
| Authors | Ferdos Kord Mostafapour; Maryam Bazi; Shaziya Haseeb Siddiqui; Hossein Bagheri; Davoud Balarak |
| Affiliations | Department of Environmental Health Engineering, Health Promotion Research Center, Zahedan University of Medical Sciences, Zahedan, IRAN.; Student Research Committee, Zahedan University of Medical Sciences, Zahedan, IRAN.; Department of Chemistry, Sam Higginbottom University of Agriculture Technology and Sciences (SHUATS), Allahabad, Uttar Pradesh, INDIA.; Department of Medical Language, Zahedan University of Medical Sciences, Zahedan, IRAN. |
| Corresponding author | dbalarak2@gmail.com |
| Journal | International Journal of Pharmaceutical Investigation |
| Volume / Issue | Vol. 11, Issue 4 |
Also in this issue
- P-glycoprotein Expression in Solid Tumors – An Analysispp. 345–348
- Overview of Post Approval Changes Requirements for Active Pharmaceutical Ingredients in Canada, Australia and Saudi Arabiapp. 349–353
- Anticancer Activity of Elytraria acaulis L. Extracts on Triple Negative Breast Cancer Cell Linepp. 354–357
- Anti-inflammatory Activity of Chlorella vulgaris in Experimental models of Ratspp. 358–361
- Standardization of Kirāmpu kutinīr Decoction and Extract Granules using Pharmacognostic, Physicochemical and HPTLC Studiespp. 362–367
Recommended articles
- Thermodynamic Study of Amoxicillin and Naphthalene Adsorption on Activated Carbon Derived from Salvadora persica
Fredos Kord Mostafapour, Shaziya Haseeb, Davoud Balarak · International Journal of Pharmaceutical Investigation
- Thermodynamic Study of Adsorption of Amoxicillin on Synthesized NiO of Pharmaceutical Wastewater
Navid Naghsh, Shiva Barnoos, Fatemeh Zisti · International Journal of Pharmaceutical Investigation
- Batch Studies on Biosorption of Ciprofloxacin on Freshwater Macro Alga Lemna minor
Davoud Balarak, Kethineni Chandrika · International Journal of Pharmaceutical Investigation
- Antibiotics Removal from Aqueous Solution and Pharmaceutical Wastewater by Adsorption Process: A Review
Davoud Balarak, Aram Dokht Khatibi, Kethineni Chandrika · International Journal of Pharmaceutical Investigation
- Montmorillonite Nanoparticles Effectiveness in Removal of Amoxicillin from Water Solutions
Davoud Balarak, Fatemeh Ganji, Kethineni Chandrika · International Journal of Pharmaceutical Investigation
- Adsorption Equilibrium and Thermodynamic Studies of Ciprofloxacin from Aqueous Solutions by Magnetic Bentonite Nanocomposites
Davoud Balarak, Marzieh Baniasadi, Maryam Bazzi · International Journal of Pharmaceutical Investigation
Readers Also Viewed
AMR Curator-An Interactive Platform for Analysing AMR Literature Using NLP
Umesh Rani, Naval Singh, Deepshikha Kaushik
Aug 11, 2026
Epigenetic Mechanisms of Foetal Imprinting: Integrating Garbha-Sanskar with Prenatal Stress and Cognitive Development
Manoj Mahavir Khavate, Dipess Ramdas Chikane, Sanket Rajendra Vakte
Aug 11, 2026
Preliminary Phytochemical Investigation and Screening of Antimicrobial Activity of Leaf Extracts of Artocarpus altilis
Vasugi Raman, D. Sudhahar, K. Anandarajagopal
Sep 10, 2012