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Tytuł pozycji:

Potential of Oil Palm Empty Fruit Bunch Resources in Nanocellulose Hydrogel Production for Versatile Applications: A Review

Tytuł:
Potential of Oil Palm Empty Fruit Bunch Resources in Nanocellulose Hydrogel Production for Versatile Applications: A Review
Autorzy:
Farah Nadia Mohammad Padzil
Seng Hua Lee
Zuriyati Mohamed Asa’ari Ainun
Ching Hao Lee
Luqman Chuah Abdullah
Temat:
hydrogel
nanocellulose
processing methods
biomass
applications
Technology
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Engineering (General). Civil engineering (General)
TA1-2040
Microscopy
QH201-278.5
Descriptive and experimental mechanics
QC120-168.85
Źródło:
Materials, Vol 13, Iss 5, p 1245 (2020)
Wydawca:
MDPI AG, 2020.
Rok publikacji:
2020
Kolekcja:
LCC:Technology
LCC:Electrical engineering. Electronics. Nuclear engineering
LCC:Engineering (General). Civil engineering (General)
LCC:Microscopy
LCC:Descriptive and experimental mechanics
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
1996-1944
13051245
Relacje:
https://www.mdpi.com/1996-1944/13/5/1245; https://doaj.org/toc/1996-1944
DOI:
10.3390/ma13051245
Dostęp URL:
https://doaj.org/article/db04b49a0c6a47ad9569437a705b88d1  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.b04b49a0c6a47ad9569437a705b88d1
Czasopismo naukowe
Oil palm empty fruit bunch (OPEFB) is considered the cheapest natural fiber with good properties and exists abundantly in Malaysia. It has great potential as an alternative main raw material to substitute woody plants. On the other hand, the well-known polymeric hydrogel has gathered a lot of interest due to its three-dimensional (3D) cross-linked network with high porosity. However, some issues regarding its performance like poor interfacial connectivity and mechanical strength have been raised, hence nanocellulose has been introduced. In this review, the plantation of oil palm in Malaysia is discussed to show the potential of OPEFB as a nanocellulose material in hydrogel production. Nanocellulose can be categorized into three nano-structured celluloses, which differ in the processing method. The most popular nanocellulose hydrogel processing methods are included in this review. The 3D printing method is taking the lead in current hydrogel production due to its high complexity and the need for hygiene products. Some of the latest advanced applications are discussed to show the high commercialization potential of nanocellulose hydrogel products. The authors also considered the challenges and future direction of nanocellulose hydrogel. OPEFB has met the requirements of the marketplace and product value chains as nanocellulose raw materials in hydrogel applications.
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