Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging material
Since its discovery, plastic has been a part of human life and is widely employed in our daily lives. Excessive use of plastic has raised pollution rates around the world, with plastic ending up in landfills or the sea, posing a threat to both terrestrial and aquatic life. Considering this proble...
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my.iium.irep.951182021-12-23T01:13:49Z http://irep.iium.edu.my/95118/ Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging material Mohd Razali, Nur Izzati Ali, Fathilah Azmi, Azlin Suhaida Tuan Ismail, Tuan Noor Maznee Mirghani, Mohamed Elwathig Saeed Omar, Mohamad Firdaus TP1080 Polymers, plastics and their manufacture Since its discovery, plastic has been a part of human life and is widely employed in our daily lives. Excessive use of plastic has raised pollution rates around the world, with plastic ending up in landfills or the sea, posing a threat to both terrestrial and aquatic life. Considering this problem, the widespread use of polyurethanes (PUs) in many industries has resulted in unavoidable PUs pollution in everyday life. A reaction involving prepolymer, isocyanate, and polyol can be used to make PUs. Petroleum-based polyol and vegetable oil-based polyol are the two types of polyols available. Isocyanate will become the hard domain of the polymer in the PUs polymer chain, while polyol will become the soft domain. Polylactic acid-diol is the prepolymer used to make PU (PLA-diol). PLA-diol was previously made using a traditional heating approach, which takes a long time. To overcome this traditional method, microwaveassisted synthesis is proposed to synthesize the PLA-diol. The synthesis process involved synthesizing PLA-diol at different microwave power (450W – 900W) and at different reaction time (1 hour – 2 hours). The peak of hydroxyl group in synthesized PLA-diol was characterized via the Fourier Transform Infrared Spectroscopy (FTIR) characterization to determine the functional groups of PLA-diol and gel permeation chromatography (GPC) characterization was done to determine the molecular weight of PLA-diol. The resulting PLA-diol will then be used to synthesis biodegradable PUs in the subsequence study 2021 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/95118/1/95118_Microwave-assisted%20synthesis%20of%20polylactic%20acidDiol.pdf Mohd Razali, Nur Izzati and Ali, Fathilah and Azmi, Azlin Suhaida and Tuan Ismail, Tuan Noor Maznee and Mirghani, Mohamed Elwathig Saeed and Omar, Mohamad Firdaus (2021) Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging material. In: 6th International Conference on Biotechnology Engineering (ICBioE 2021), 22-23 June 2021, Kuala Lumpur, Malaysia. https://iopscience.iop.org/journal/1757-899X doi:10.1088/1757-899X/1192/1/012015 |
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TP1080 Polymers, plastics and their manufacture |
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TP1080 Polymers, plastics and their manufacture Mohd Razali, Nur Izzati Ali, Fathilah Azmi, Azlin Suhaida Tuan Ismail, Tuan Noor Maznee Mirghani, Mohamed Elwathig Saeed Omar, Mohamad Firdaus Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging material |
description |
Since its discovery, plastic has been a part of human life and is widely employed in
our daily lives. Excessive use of plastic has raised pollution rates around the world, with plastic
ending up in landfills or the sea, posing a threat to both terrestrial and aquatic life. Considering
this problem, the widespread use of polyurethanes (PUs) in many industries has resulted in
unavoidable PUs pollution in everyday life. A reaction involving prepolymer, isocyanate, and
polyol can be used to make PUs. Petroleum-based polyol and vegetable oil-based polyol are the
two types of polyols available. Isocyanate will become the hard domain of the polymer in the
PUs polymer chain, while polyol will become the soft domain. Polylactic acid-diol is the
prepolymer used to make PU (PLA-diol). PLA-diol was previously made using a traditional
heating approach, which takes a long time. To overcome this traditional method, microwaveassisted synthesis is proposed to synthesize the PLA-diol. The synthesis process involved
synthesizing PLA-diol at different microwave power (450W – 900W) and at different reaction
time (1 hour – 2 hours). The peak of hydroxyl group in synthesized PLA-diol was characterized
via the Fourier Transform Infrared Spectroscopy (FTIR) characterization to determine the
functional groups of PLA-diol and gel permeation chromatography (GPC) characterization was
done to determine the molecular weight of PLA-diol. The resulting PLA-diol will then be used
to synthesis biodegradable PUs in the subsequence study |
format |
Conference or Workshop Item |
author |
Mohd Razali, Nur Izzati Ali, Fathilah Azmi, Azlin Suhaida Tuan Ismail, Tuan Noor Maznee Mirghani, Mohamed Elwathig Saeed Omar, Mohamad Firdaus |
author_facet |
Mohd Razali, Nur Izzati Ali, Fathilah Azmi, Azlin Suhaida Tuan Ismail, Tuan Noor Maznee Mirghani, Mohamed Elwathig Saeed Omar, Mohamad Firdaus |
author_sort |
Mohd Razali, Nur Izzati |
title |
Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging
material |
title_short |
Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging
material |
title_full |
Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging
material |
title_fullStr |
Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging
material |
title_full_unstemmed |
Microwave-assisted synthesis of polylactic acidDiol for polyurethane as biodegradable packaging
material |
title_sort |
microwave-assisted synthesis of polylactic aciddiol for polyurethane as biodegradable packaging
material |
publishDate |
2021 |
url |
http://irep.iium.edu.my/95118/1/95118_Microwave-assisted%20synthesis%20of%20polylactic%20acidDiol.pdf http://irep.iium.edu.my/95118/ https://iopscience.iop.org/journal/1757-899X |
_version_ |
1720436674346876928 |