A Comparative Study of COD Removal Efficacy from Pharmaceutical Wastewater by Areca Nut Husk Produced and Commercially Available Activated Carbons
Sharmin Akter, Ferdousi Sultana, Md. Rakibul Kabir, Partha Pratim Brahma, Atkeeya Tasneem, Nandita Sarker, Mst. Mahmoda Akter, Md. Mahbub Kabir, Md. Khabir Uddin
Asian Journal of Environment & Ecology · pp. 47–56 · Published 21 May 2021
10.9734/ajee/2021/v14i430215Abstract
Pharmaceutical industries in Bangladesh are considered as one major industrial as well as environmental pollution problems which discharge a significant amount of organic contaminants in the environment hence require advanced treatment technologies to decontaminate pharmaceutical wastewater. In the present investigation, areca nut husk treated activated carbon (ANHC) was used as an adsorbent to remove chemical oxygen demand (COD) from pharmaceutical effluent as well as a comparative adsorption efficiency with commercial activated carbon (CAC) was performed. The batch experiments were carried out in a laboratory scale. The materials also evaluated for different adsorbent dosages and contact times. The experiment revealed a removal percentage up to 70% for ANHC and 90% for CAC for 3g of adsorbents in 180 min. The adsorption processes were satisfactorily described by pseudo-second-order (PSO) kinetic model which shows a better fitting with the maximum regression coefficient for both adsorbents. The results show that Langmuir model best described the experimental data with a highest correlation coefficient (R2=0.9856 for ANHC and 0.9993 for CAC) compared to Freundlich model and the experimental data showed asorption capacity of 36.549 and 64.935 mg/g for ANHC and CAC, correspondingly. According to the adsorption studies, the results revealed that COD adsorption process followed by the monolayer chemisorption mechanisms. The results revealed that ANHC adsorbent is potentially low cost and environmental friendly adsorbent for the removal of organic matter from pharmaceutical effluent.
Cited by 4
F. Sahlabadi, M. Salmani, Negin Rezaeiarshad · International journal of phytoremediation · 2023
F. Elayadi, M. Achak, W. Boumya · Water · 2023
N. Bakar, N. Othman, Z. M. Yunus · Biomass Conversion and Biorefinery · 2021
A. R. W. Sangma, S. Joshi
Related research
- Rescue and Emergency Management of a Water-Related Disaster: A Bangladeshi Experience — shares topic coverage
- Risk Factors Assessment of Zoonotic Anthrax among the People at Risk (PAR) in Selected Areas of Bangladesh — shares topic coverage
- Injury in Construction Site of Bangladesh - Findings from a Nationwide Cross Sectional Survey — shares topic coverage
- Respiratory, Neurological and Other Health Outcomes among Plastic Factory Workers in Gazipur, Bangladesh — shares topic coverage
- Five Year Survival Rate of Adolescents and Young Adults (AYA) Cancer Patients: A Prospective Fixed Cohort Study in Bangladesh — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
4
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.