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Research & review articles are invited for publication in September 2026 (Vol. 28, Issue 3) || Submission: up to 28th September || Editorial decision: within 48 hrs.

Kinetic modelling of dumpsite leachate treatment using Musa sapientum peels as bio-sorbent

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  • Kinetic modelling of dumpsite leachate treatment using Musa sapientum peels as bio-sorbent

L Salami 1, *, DO Olumuyiwa 2, EA Alfred 2 and OS Olakanmi 2

1 Environmental Engineering Research Unit, Department of Chemical Engineering, Lagos State University, Epe, Lagos State, Nigeria.
2 Department of Chemical Engineering, Lagos State University, Epe, Lagos State, Nigeria.
 
Research Article
Global Journal of Engineering and Technology Advances, 2021, 09(02), 024–031.
Article DOI: 10.30574/gjeta.2021.9.2.0117
DOI url: https://doi.org/10.30574/gjeta.2021.9.2.0117
Received on 14 August 2021; revised on 13 November 2021; accepted on 15 November 2021
 
Kinetics models are very vital to dumpsite operators and planners as they provide relevant information for effective treatment of leachates. The aim of this work is to model the kinetic process of treatment of Lagos dumpsite leachate using Musa sapientum peels as bio-sorbent with a view of establishing the kinetic parameters of the treatment process. Musa sapientum peels which were collected from Ayetoro market in Epe Local Government area of Lagos State were used to prepare the bio-sorbent. Kinetic process was carried out using 1 g of the prepared bio-sorbent in 100 ml Lagos dumpsite leachate in different conical flasks and at various contacting time. The kinetic data obtained were fitted to different kinetics models. The kinetics models tested were Fractional power model, Lagregren pseudo first – order model, Pseudo second – order model, Kuo – Lotse kinetic model, Blanchard kinetic model and Elovich kinetic model. Other kinetics models considered were Sobkowsk – Czerwi kinetic model, Intraparticle diffusion (IPD) model, Behnajady – Modirshahla – Ghanbery (BMG) model and Diffusion – Chemisorption model. Coefficient of determination (R2) values and the expected nature of the plots of the models were used to screen the tested models. The results revealed that the Pseudo second – order kinetic model has the best R2 value of 0.99996 and the graph followed the expected nature of the plot hence it was adopted in this work. It was concluded that Pseudo second – order kinetic model can be used to navigate the treatment process of Lagos dumpsite using Musa sapientum peels as bio-sorbent.
 
Bio-sorbent; Kinetic; Leachate; Modeling; Musa sapientum and treatment
 
https://gjeta.com/sites/default/files/fulltext_pdf/GJETA-2021-0117.pdf

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L Salami, DO Olumuyiwa, EA Alfred and OS Olakanmi. Kinetic modelling of dumpsite leachate treatment using Musa sapientum peels as bio-sorbent. Global Journal of Engineering and Technology Advances, 2021, 9(2), 024-031. Article DOI: https://doi.org/10.30574/gjeta.2021.9.2.0117

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