Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi

The potential of oil palm trunk cellulose (OP Cellulose) powder as adsorbent to removing methylene blue (MB) was observed. The functional group of OP cellulose was characterized by using Fourier Transform Infrared (FTIR). The pH of zero point charge was 5.10. The effect of pH, dosage, initial co...

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Main Author: Ahmad Azmi, Noorfazlin
Format: Student Project
Language:English
Published: Faculty Of Applied Sciences 2019
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/25228/1/PPb_NOORFAZLIN%20AHMAD%20AZMI%20AS%20C%2019_5.PDF
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author Ahmad Azmi, Noorfazlin
author_facet Ahmad Azmi, Noorfazlin
author_sort Ahmad Azmi, Noorfazlin
collection UITM
description The potential of oil palm trunk cellulose (OP Cellulose) powder as adsorbent to removing methylene blue (MB) was observed. The functional group of OP cellulose was characterized by using Fourier Transform Infrared (FTIR). The pH of zero point charge was 5.10. The effect of pH, dosage, initial concentration and contact time were investigated. The adsorption equilibrium was achieved after 10 minutes. The MB maximum uptake was pH 10 with 90.41 % removal. Pseudo-first order and Pseudo-second order kinetics models were applied. The result showed that pseudo-second order achieve high correlation (R2 >0.9999). The adsorption fitted well with Langmuir isotherm equation. In this study suggested that OP cellulose are effectively to remove MB.
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spelling uitm.eprints-52282019-08-23T03:09:30Z https://ir.uitm.edu.my/id/eprint/25228/ Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi Ahmad Azmi, Noorfazlin Extraction (Chemistry) The potential of oil palm trunk cellulose (OP Cellulose) powder as adsorbent to removing methylene blue (MB) was observed. The functional group of OP cellulose was characterized by using Fourier Transform Infrared (FTIR). The pH of zero point charge was 5.10. The effect of pH, dosage, initial concentration and contact time were investigated. The adsorption equilibrium was achieved after 10 minutes. The MB maximum uptake was pH 10 with 90.41 % removal. Pseudo-first order and Pseudo-second order kinetics models were applied. The result showed that pseudo-second order achieve high correlation (R2 >0.9999). The adsorption fitted well with Langmuir isotherm equation. In this study suggested that OP cellulose are effectively to remove MB. Faculty Of Applied Sciences 2019 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/25228/1/PPb_NOORFAZLIN%20AHMAD%20AZMI%20AS%20C%2019_5.PDF Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi. (2019) [Student Project] <http://terminalib.uitm.edu.my/25228.pdf> (Unpublished)
spellingShingle Extraction (Chemistry)
Ahmad Azmi, Noorfazlin
Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi
title Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi
title_full Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi
title_fullStr Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi
title_full_unstemmed Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi
title_short Methylene blue adsorption on cellulose extracted from oil palm (elaeis guineensis) trunk / Noorfazlin Ahmad Azmi
title_sort methylene blue adsorption on cellulose extracted from oil palm elaeis guineensis trunk noorfazlin ahmad azmi
topic Extraction (Chemistry)
url https://ir.uitm.edu.my/id/eprint/25228/1/PPb_NOORFAZLIN%20AHMAD%20AZMI%20AS%20C%2019_5.PDF
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