Green cellulose-based adsorbent as an effective PFAS sampling tool

The development of efficient, sustainable sorbents with high reusability is a key issue in PFAS removal from water. This project aims to develop an amine-functionalised cellulose adsorbent with magnetic properties to facilitate reusability and enhance adsorption. Increasing amounts of polyethylenimi...

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Main Author: Lim, Kang Brian
Other Authors: Dalton Tay Chor Yong
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2023
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Online Access:https://hdl.handle.net/10356/167142
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1671422023-05-27T16:46:04Z Green cellulose-based adsorbent as an effective PFAS sampling tool Lim, Kang Brian Dalton Tay Chor Yong School of Materials Science and Engineering A*STAR Institute of Material Research and Engineering Thenapakiam Sathasivam Kai Dan cytay@ntu.edu.sg, thena_sathasivam@isce2.a-star.edu.sg, kaid@imre.a-star.edu.sg Engineering::Materials The development of efficient, sustainable sorbents with high reusability is a key issue in PFAS removal from water. This project aims to develop an amine-functionalised cellulose adsorbent with magnetic properties to facilitate reusability and enhance adsorption. Increasing amounts of polyethylenimine were grafted onto cellulose nanofibrils to improve the overall surface functionalisation while adding adsorption sites. They were then characterised by elemental analysis, acid base titration, fourier transform infrared (FT-IR) spectroscopy, transmission electron microscopy and scanning electron microscopy to determine the most optimal ratio. Thereafter, silica coated ferrous magnetic nanoparticles are synthesised and functionalised with amine groups to facilitate grafting to the amine-functionalised cellulose product, thus providing the magnetic properties for reuptake. The final product was synthesised with increasing amounts of amine functionalised magnetic nanoparticles, and characterised with the techniques mentioned before, along with vibrating-sample magnetometer (VSM) analysis to determine the optimal ratio. A 2:1 mass ratio of polyethylenimine to cellulose nanofibrils was determined to provide the most amine loading among the synthesised formulations, while a 1:1 mass ratio of amine functionalised magnetic nanoparticles to the 2:1 polyethylenimine:cellulose nanofibrils ratio was ascertained to provide the most amine group loading and saturation magnetism. Bachelor of Engineering (Materials Engineering) 2023-05-23T14:11:02Z 2023-05-23T14:11:02Z 2023 Final Year Project (FYP) Lim, K. B. (2023). Green cellulose-based adsorbent as an effective PFAS sampling tool. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/167142 https://hdl.handle.net/10356/167142 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Materials
spellingShingle Engineering::Materials
Lim, Kang Brian
Green cellulose-based adsorbent as an effective PFAS sampling tool
description The development of efficient, sustainable sorbents with high reusability is a key issue in PFAS removal from water. This project aims to develop an amine-functionalised cellulose adsorbent with magnetic properties to facilitate reusability and enhance adsorption. Increasing amounts of polyethylenimine were grafted onto cellulose nanofibrils to improve the overall surface functionalisation while adding adsorption sites. They were then characterised by elemental analysis, acid base titration, fourier transform infrared (FT-IR) spectroscopy, transmission electron microscopy and scanning electron microscopy to determine the most optimal ratio. Thereafter, silica coated ferrous magnetic nanoparticles are synthesised and functionalised with amine groups to facilitate grafting to the amine-functionalised cellulose product, thus providing the magnetic properties for reuptake. The final product was synthesised with increasing amounts of amine functionalised magnetic nanoparticles, and characterised with the techniques mentioned before, along with vibrating-sample magnetometer (VSM) analysis to determine the optimal ratio. A 2:1 mass ratio of polyethylenimine to cellulose nanofibrils was determined to provide the most amine loading among the synthesised formulations, while a 1:1 mass ratio of amine functionalised magnetic nanoparticles to the 2:1 polyethylenimine:cellulose nanofibrils ratio was ascertained to provide the most amine group loading and saturation magnetism.
author2 Dalton Tay Chor Yong
author_facet Dalton Tay Chor Yong
Lim, Kang Brian
format Final Year Project
author Lim, Kang Brian
author_sort Lim, Kang Brian
title Green cellulose-based adsorbent as an effective PFAS sampling tool
title_short Green cellulose-based adsorbent as an effective PFAS sampling tool
title_full Green cellulose-based adsorbent as an effective PFAS sampling tool
title_fullStr Green cellulose-based adsorbent as an effective PFAS sampling tool
title_full_unstemmed Green cellulose-based adsorbent as an effective PFAS sampling tool
title_sort green cellulose-based adsorbent as an effective pfas sampling tool
publisher Nanyang Technological University
publishDate 2023
url https://hdl.handle.net/10356/167142
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