Open Access
Open access
Scientific Reports, volume 14, issue 1, publication number 970

Isotherms, kinetics and thermodynamic mechanism of methylene blue dye adsorption on synthesized activated carbon

Atef El Jery 1
Heba Saed Kariem Alawamleh 2
Mustafa Humam Sami 3
Hussein Abdullah Abbas 4
Saad Sh. Sammen 5
Amimul Ahsan 6, 7
M. A. Imteaz 7
Abdallah Shanableh 8, 9
Md. Shafiquzzaman 10
Haitham Osman 1
Nadhir Al-Ansari 11
Show full list: 11 authors
Publication typeJournal Article
Publication date2024-01-10
scimago Q1
SJR0.900
CiteScore7.5
Impact factor3.8
ISSN20452322
Multidisciplinary
Abstract

The treatment of methylene blue (MB) dye wastewater through the adsorption process has been a subject of extensive research. However, a comprehensive understanding of the thermodynamic aspects of dye solution adsorption is lacking. Previous studies have primarily focused on enhancing the adsorption capacity of methylene blue dye. This study aimed to develop an environmentally friendly and cost-effective method for treating methylene blue dye wastewater and to gain insights into the thermodynamics and kinetics of the adsorption process for optimization. An adsorbent with selective methylene blue dye adsorption capabilities was synthesized using rice straw as the precursor. Experimental studies were conducted to investigate the adsorption isotherms and models under various process conditions, aiming to bridge gaps in previous research and enhance the understanding of adsorption mechanisms. Several adsorption isotherm models, including Langmuir, Temkin, Freundlich, and Langmuir–Freundlich, were applied to theoretically describe the adsorption mechanism. Equilibrium thermodynamic results demonstrated that the calculated equilibrium adsorption capacity (qe) aligned well with the experimentally obtained data. These findings of the study provide valuable insights into the thermodynamics and kinetics of methylene blue dye adsorption, with potential applications beyond this specific dye type. The utilization of rice straw as an adsorbent material presents a novel and cost-effective approach for MB dye removal from wastewater.

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