Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon

Existing techniques for the treatment of pollutants include membrane separation, ion exchange, precipitation, transformation and biosorption. Of all of this technology, biosorption has several positive aspects which include low operating expenses, very efficient detoxification of toxicants at low co...

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Main Authors: Marbawi, Hartinie, Saidon Khudri, Muhammad Arif Mukhriz Ros, Othman, Ahmad Razi, Halmi, Mohd Izuan Effendi, Gansau, Jualang @ Azlan Abdullah, Yasid, Nur Adeela
Format: Article
Language:English
Published: Hibiscus Publisher 2019
Online Access:http://psasir.upm.edu.my/id/eprint/81170/1/KINETIC.pdf
http://psasir.upm.edu.my/id/eprint/81170/
https://journal.hibiscuspublisher.com/index.php/BSTR/article/view/461
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spelling my.upm.eprints.811702021-06-20T15:18:49Z http://psasir.upm.edu.my/id/eprint/81170/ Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon Marbawi, Hartinie Saidon Khudri, Muhammad Arif Mukhriz Ros Othman, Ahmad Razi Halmi, Mohd Izuan Effendi Gansau, Jualang @ Azlan Abdullah Yasid, Nur Adeela Existing techniques for the treatment of pollutants include membrane separation, ion exchange, precipitation, transformation and biosorption. Of all of this technology, biosorption has several positive aspects which include low operating expenses, very efficient detoxification of toxicants at low concentrations, low amount of disposal materials and does not need nutrient requirements as in bacterial-based remediation, the latter of which is limited by the presence of heavy metals and other toxicants. The biosorption of glyphosate on palm oil fronds activated carbon can be an efficient and low-cost tool for remediation of glyphosate. The absorption kinetics data of biosorption isotherm on the biosorption of glyphosate on palm oil fronds activated carbon were analyzed using three models—pseudo-1st, pseudo-2nd and Elovich, and fitted using non-linear regression. The Elovich model was the poorest in fitting the curve based on visual observation followed by the pseudo-1st order. Statistical analysis based on root-mean-square error (RMSE), adjusted coefficient of determination (adjR2), bias factor (BF), accuracy factor (AF), corrected AICc (Akaike Information Criterion), Bayesian Information Criterion (BIC) and Hannan–Quinn information criterion (HQC) that showed that the pseudo-second order model is the best model. Kinetic analysis using the pseudo-second order model at 250 mg/L glyphosate gave a value of equilibrium sorption capacity qe of 94.12 mg g-1 (95% confidence interval from 89.913 to 98.332) and a value of the pseudo-second-order rate constant, k2 of 0.02 (95% confidence interval from 0.012 to 0.023). Further analysis is needed to provide proof for the chemisorption mechanism usually tied to this kinetic. Hibiscus Publisher 2019 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/81170/1/KINETIC.pdf Marbawi, Hartinie and Saidon Khudri, Muhammad Arif Mukhriz Ros and Othman, Ahmad Razi and Halmi, Mohd Izuan Effendi and Gansau, Jualang @ Azlan Abdullah and Yasid, Nur Adeela (2019) Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon. Bioremediation Science and Technology Research, 7 (1). pp. 29-33. ISSN 2289-5892 https://journal.hibiscuspublisher.com/index.php/BSTR/article/view/461
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Existing techniques for the treatment of pollutants include membrane separation, ion exchange, precipitation, transformation and biosorption. Of all of this technology, biosorption has several positive aspects which include low operating expenses, very efficient detoxification of toxicants at low concentrations, low amount of disposal materials and does not need nutrient requirements as in bacterial-based remediation, the latter of which is limited by the presence of heavy metals and other toxicants. The biosorption of glyphosate on palm oil fronds activated carbon can be an efficient and low-cost tool for remediation of glyphosate. The absorption kinetics data of biosorption isotherm on the biosorption of glyphosate on palm oil fronds activated carbon were analyzed using three models—pseudo-1st, pseudo-2nd and Elovich, and fitted using non-linear regression. The Elovich model was the poorest in fitting the curve based on visual observation followed by the pseudo-1st order. Statistical analysis based on root-mean-square error (RMSE), adjusted coefficient of determination (adjR2), bias factor (BF), accuracy factor (AF), corrected AICc (Akaike Information Criterion), Bayesian Information Criterion (BIC) and Hannan–Quinn information criterion (HQC) that showed that the pseudo-second order model is the best model. Kinetic analysis using the pseudo-second order model at 250 mg/L glyphosate gave a value of equilibrium sorption capacity qe of 94.12 mg g-1 (95% confidence interval from 89.913 to 98.332) and a value of the pseudo-second-order rate constant, k2 of 0.02 (95% confidence interval from 0.012 to 0.023). Further analysis is needed to provide proof for the chemisorption mechanism usually tied to this kinetic.
format Article
author Marbawi, Hartinie
Saidon Khudri, Muhammad Arif Mukhriz Ros
Othman, Ahmad Razi
Halmi, Mohd Izuan Effendi
Gansau, Jualang @ Azlan Abdullah
Yasid, Nur Adeela
spellingShingle Marbawi, Hartinie
Saidon Khudri, Muhammad Arif Mukhriz Ros
Othman, Ahmad Razi
Halmi, Mohd Izuan Effendi
Gansau, Jualang @ Azlan Abdullah
Yasid, Nur Adeela
Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon
author_facet Marbawi, Hartinie
Saidon Khudri, Muhammad Arif Mukhriz Ros
Othman, Ahmad Razi
Halmi, Mohd Izuan Effendi
Gansau, Jualang @ Azlan Abdullah
Yasid, Nur Adeela
author_sort Marbawi, Hartinie
title Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon
title_short Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon
title_full Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon
title_fullStr Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon
title_full_unstemmed Kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon
title_sort kinetic analysis of the adsorption of glyphosate onto palm oil fronds activated carbon
publisher Hibiscus Publisher
publishDate 2019
url http://psasir.upm.edu.my/id/eprint/81170/1/KINETIC.pdf
http://psasir.upm.edu.my/id/eprint/81170/
https://journal.hibiscuspublisher.com/index.php/BSTR/article/view/461
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score 13.211869