Please use this identifier to cite or link to this item: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/3486
Title: Comparative analysis of linear and nonlinear equilibrium models for the removal of metronidazole by tea waste activated carbon
Authors: Ebili, Peter Emmanuel
Auta, Manase
Obayomi, Kehinde Shola
Okafor, Joseph Onyebuchi
Yahya, Muibat Diekola
Faruq, Aisha Abubakar
Keywords: activation energy, linear, metronidazole, nonlinear, tea waste
Issue Date: 7-Oct-2020
Publisher: Water Science and Technology
Citation: Peter Emmanuel Ebili, Manase Auta, Kehinde Shola Obayomi, Joseph Onyebuchi Okafor Muibat Diekola Yahya and Aisha Ab Comparative analysis of linear and nonlinear equilibrium models for the removal of metronidazole by tea waste activated carbon. Water Science and Technology, 82.7 1484-1493 https://doi.org/10.2166/wst.2020.428
Series/Report no.: ;vol. 82 Issue 7
Abstract: Tea waste was carbonized at 400 C for 45 min and modified with potassium hydroxide (KOH), to enhance the active sites for the adsorption of antibiotics. The developed tea waste activated carbon (TWAC) was used as a novel eco-friendly and cost-effective adsorbent for metronidazole (MZN) removal from aqueous solution. The textural and surface properties of the adsorbent were determined using Brunauer-Emmett-Teller (BET) and FT-Raman analysis. The BET surface was found to have increased from 24.670 to 349.585 after carbonization and KOH modification. The batch experimental parameters were optimized and equilibrium time was found to be 75 min. Linear and non-linear models were carried out on the adsorption isotherm and kinetics to determine the best fit for the adsorption data. The adsorption equilibrium data were well fitted by the Freundlich isotherm and pseudo-second order models, with higher regression correlation (R2) and smaller chi-square (χ2), as predicted by the nonlinear model. The thermodynamic results revealed the adsorption of MZN as spontaneous, physical,and consistently exothermic in character. The activation energy value of 7.610 kJ/mol further revealed that the adsorption process is dominated majorly by physical adsorption. The removal of MZN onto TWAC was best described by the non-linear adsorption isotherm and kinetics model.
URI: https://doi.org/10.2166/wst.2020.428
http://repository.futminna.edu.ng:8080/jspui/handle/123456789/3486
Appears in Collections:Chemical Engineering



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