Green Synthesis of Bioplastics from Microalgae: A State-of-the-Art Review

被引:15
作者
Adetunji, Adegoke Isiaka [1 ]
Erasmus, Mariana [1 ]
机构
[1] Univ Free State, Ctr Mineral Biogeochem, ZA-9301 Bloemfontein, South Africa
关键词
bioplastics; production; microalgae; circular bioeconomy; biopolymers; applications; POLY-BETA-HYDROXYBUTYRATE; BIO-BASED PLASTICS; POLYHYDROXYBUTYRATE PRODUCTION; MECHANICAL-PROPERTIES; WASTE-WATER; RALSTONIA-EUTROPHA; CELLULOSE; ACCUMULATION; STARCH; POLYHYDROXYALKANOATES;
D O I
10.3390/polym16101322
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 synthesis of conventional plastics has increased tremendously in the last decades due to rapid industrialization, population growth, and advancement in the use of modern technologies. However, overuse of these fossil fuel-based plastics has resulted in serious environmental and health hazards by causing pollution, global warming, etc. Therefore, the use of microalgae as a feedstock is a promising, green, and sustainable approach for the production of biobased plastics. Various biopolymers, such as polyhydroxybutyrate, polyurethane, polylactic acid, cellulose-based polymers, starch-based polymers, and protein-based polymers, can be produced from different strains of microalgae under varying culture conditions. Different techniques, including genetic engineering, metabolic engineering, the use of photobioreactors, response surface methodology, and artificial intelligence, are used to alter and improve microalgae stocks for the commercial synthesis of bioplastics at lower costs. In comparison to conventional plastics, these biobased plastics are biodegradable, biocompatible, recyclable, non-toxic, eco-friendly, and sustainable, with robust mechanical and thermoplastic properties. In addition, the bioplastics are suitable for a plethora of applications in the agriculture, construction, healthcare, electrical and electronics, and packaging industries. Thus, this review focuses on techniques for the production of biopolymers and bioplastics from microalgae. In addition, it discusses innovative and efficient strategies for large-scale bioplastic production while also providing insights into the life cycle assessment, end-of-life, and applications of bioplastics. Furthermore, some challenges affecting industrial scale bioplastics production and recommendations for future research are provided.
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页数:25
相关论文
共 224 条
[1]   The sustainability of microbial bioplastics, production and applications [J].
Abd El-malek, Fady ;
Khairy, Heba ;
Farag, Aida ;
Omar, Sanaa .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2020, 157 :319-328
[2]  
Abdo S.M., 2019, Bull. Natl. Res. Cent., V43, DOI [10.1186/s42269-019-0135-5,0-3, DOI 10.1186/S42269-019-0135-5, 10.1186/s42269-019-0135-5]
[3]   CHEMICAL-COMPOSITION OF THE CELL-WALL IN SOME GREEN-ALGAE SPECIES [J].
ABOSHADY, AM ;
MOHAMED, YA ;
LASHEEN, T .
BIOLOGIA PLANTARUM, 1993, 35 (04) :629-632
[4]   Photobioreactors for the production of microalgae [J].
Acien Fernandez, F. G. ;
Fernandez Sevilla, J. M. ;
Molina Grima, E. .
REVIEWS IN ENVIRONMENTAL SCIENCE AND BIO-TECHNOLOGY, 2013, 12 (02) :131-151
[5]   Natural Polymeric Materials: A Solution to Plastic Pollution from the Agro-Food Sector [J].
Acquavia, Maria Assunta ;
Pascale, Raffaella ;
Martelli, Giuseppe ;
Bondoni, Marcella ;
Bianco, Giuliana .
POLYMERS, 2021, 13 (01) :1-39
[6]   Photobioreactor design and illumination systems for H2 production with anoxygenic photosynthetic bacteria: A review [J].
Adessi, Alessandra ;
De Philippis, Roberto .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2014, 39 (07) :3127-3141
[7]   From garbage to treasure: A review on biorefinery of organic solid wastes into valuable biobased products [J].
Adetunji, Adegoke Isiaka ;
Oberholster, Paul Johan ;
Erasmus, Mariana .
BIORESOURCE TECHNOLOGY REPORTS, 2023, 24
[8]   Production strategies and biotechnological relevance of microbial lipases: a review [J].
Adetunji, Adegoke Isiaka ;
Olaniran, Ademola Olufolahan .
BRAZILIAN JOURNAL OF MICROBIOLOGY, 2021, 52 (03) :1257-1269
[9]   Statistical modelling and optimization of protease production by an autochthonous Bacillus aryabhattai Ab15-ES: A response surface methodology approach [J].
Adetunji, Adegoke Isiaka ;
Olaniran, Ademola Olufolahan .
BIOCATALYSIS AND AGRICULTURAL BIOTECHNOLOGY, 2020, 24
[10]   Optimization of culture conditions for enhanced lipase production by an indigenous Bacillus aryabhattai SE3-PB using response surface methodology [J].
Adetunji, Adegoke Isiaka ;
Olaniran, Ademola Olufolahan .
BIOTECHNOLOGY & BIOTECHNOLOGICAL EQUIPMENT, 2018, 32 (06) :1514-1526