Biodegradable polymer films from seaweed polysaccharides: A review on cellulose as a reinforcement material

Биоразлагаемые полимерные пленки из полисахаридов морских водорослей: обзор целлюлозы как армирующего материала
H. P. S. Abdul Khalil, Ying Ying Tye, Chaturbhuj K. Saurabh, Cheu Peng Leh, Tze Kiat Lai, E. W. N. Chong, M. R. Nurul Fazita, J. Mohd Hafiidz, A. Banerjee, Muhammad Syakir
2017-01-01

biodegradable composite filmsbiopolymer blendingcellulose reinforcementseaweed polysaccharideswater vapour barrier
Seaweed and cellulose are promising natural polymers.This article reviews the basic information and recent developments of both seaweed and cellulose biopolymer materials as well as analyses the feasible formation of seaweed/cellulose composite films.Seaweed and cellulose both exhibit interesting film-forming properties.Nevertheless, seaweed has poor water vapour barrier and mechanical properties, whereas cellulose is neither meltable nor soluble in water or common organic solvents due to its highly crystalline structure.Therefore, modification of these hydrocolloids has been done to exploit their useful properties.Blending of biopolymers is a must recommended approach to improve the desired characteristics.From the review, seaweed is well compatible with cellulose, which possesses excellent mechanical strength and water resistance properties.Moreover, seaweed/cellulose composite films can prolong a product's shelf life while maintaining its biodegradability.Additionally, the films show potential in contributing to the bioeconomy.In order to widen seaweed and cellulose in biocomposite application across various industries, some of the viewpoints are highlighted to be focused for future developments and applications.
1
Chemical or physical modification and biopolymer blending are identified as necessary strategies for improving seaweed and cellulose film performance.
2
Seaweed and cellulose are natural polymers with promising film-forming properties for biodegradable packaging materials.
3
Seaweed films have poor water-vapor barrier and mechanical properties, while cellulose processing is limited by high crystallinity, insolubility, and non-meltability.
4
Seaweed is compatible with cellulose, whose mechanical strength and water resistance can enhance seaweed/cellulose composite films.
5
Seaweed/cellulose composite films may extend product shelf life while retaining biodegradability and supporting bioeconomy applications.

Seaweed/cellulose composite biodegradable films

Film-forming properties, mechanical strength, water resistance, biodegradability, and shelf-life extension of seaweed/cellulose composites

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2017-01-01
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H. P. S. Abdul Khalil
Ying Ying Tye
Chaturbhuj K. Saurabh
Cheu Peng Leh
Tze Kiat Lai
E. W. N. Chong
M. R. Nurul Fazita
J. Mohd Hafiidz
A. Banerjee
Muhammad Syakir
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