Processing, Properties, Modifications, and Environmental Impact of Nanocellulose/Biopolymer Composites: A Review

被引:24
作者
Aigaje, Elizabeth [1 ]
Riofrio, Ariel [2 ]
Baykara, Haci [1 ,2 ]
机构
[1] Escuela Super Politecn Litoral, Fac Ingn Mecan & Ciencias Prod, ESPOL, Campus Gustavo Galindo,Km 30-5 Via Perimetral, Guayaquil 090506, Ecuador
[2] Escuela Super Politecn Litoral, Ctr Nanotechnol Res & Dev CIDNA, ESPOL, Campus Gustavo Galindo,Km 30-5 Via Perimetral, Guayaquil 090506, Ecuador
关键词
biocomposite; biopolymer; environmental impact; nanocellulose; sustainable materials; LIFE-CYCLE ASSESSMENT; CELLULOSE NANOCRYSTALS; NANOCOMPOSITES; NANOFIBERS; FILMS;
D O I
10.3390/polym15051219
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The increasing concerns about plastic pollution and climate change have encouraged research into bioderived and biodegradable materials. Much attention has been focused on nanocellulose due to its abundance, biodegradability, and excellent mechanical properties. Nanocellulose-based biocomposites are a viable option to fabricate functional and sustainable materials for important engineering applications. This review addresses the most recent advances in composites, with a particular focus on biopolymer matrices such as starch, chitosan, polylactic acid, and polyvinyl alcohol. Additionally, the effects of the processing methods, the influence of additives, and the outturn of nanocellulose surface modification on the biocomposite's properties are outlined in detail. Moreover, the change in the composites' morphological, mechanical, and other physiochemical properties due to reinforcement loading is reviewed. Further, mechanical strength, thermal resistance, and the oxygen-water vapor barrier properties are enhanced with the incorporation of nanocellulose into biopolymer matrices. Furthermore, the life cycle assessment of nanocellulose and composites were considered to analyze their environmental profile. The sustainability of this alternative material is compared through different preparation routes and options.
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页数:36
相关论文
共 107 条
[1]   Preparation and Characterization of Bio-based Nanocomposites Packaging Films Reinforced with Cellulose Nanofibers from Unripe Banana Peels [J].
Ahmad, Kashan ;
Din, Zia-ud ;
Ullah, Hidayat ;
Ouyang, Qin ;
Rani, Sumayya ;
Jan, Ibadullah ;
Alam, Mukhtar ;
Rahman, Ziaur ;
Kamal, Tariq ;
Ali, Saqib ;
Khan, Sheraz Ahmad ;
Shahwar, Durri ;
Gul, Farhana ;
Ibrahim, Muhammad ;
Nawaz, Taufiq .
STARCH-STARKE, 2022, 74 (5-6)
[2]   Recent approaches for enhanced production of microbial polyhydroxybutyrate: Preparation of biocomposites and applications [J].
Anjana ;
Raturi, Gaurav ;
Shree, Shweta ;
Sharma, Amita ;
Panesar, Parmjit S. ;
Goswami, Saswata .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2021, 182 :1650-1669
[3]  
[Anonymous], 2019, PlasticsEvaluation of the Action of Microorganisms
[4]  
[Anonymous], 2006, 140402006 ISO
[5]  
[Anonymous], Standard test method for tensile properties of polymer matrix composite materials
[6]  
[Anonymous], 2016, CML DEP IND ECOLOGY
[7]  
[Anonymous], 2022, OPENLCA SOFTWARE
[8]   Biodegradable nano composite reinforced with cellulose nano fiber from coconut industry waste for replacing synthetic plastic food packaging [J].
Arun, Ramachandran ;
Shruthy, Ramesh ;
Preetha, Radhakrishnan ;
Sreejit, Valiathan .
CHEMOSPHERE, 2022, 291
[9]   Life Cycle Assessment of Cellulose Nanofibrils Production by Mechanical Treatment and Two Different Pretreatment Processes [J].
Arvidsson, Rickard ;
Duong Nguyen ;
Svanstrom, Magdalena .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2015, 49 (11) :6881-6890
[10]   Pearl millet starch-based nanocomposite films reinforced with Kudzu cellulose nanocrystals and essential oil: Effect on functionality and biodegradability [J].
Bangar, Sneh Punia ;
Whiteside, William Scott ;
Dunno, Kyle D. ;
Cavender, George Armstrong ;
Dawson, Paul .
FOOD RESEARCH INTERNATIONAL, 2022, 157