Biodegradation of Wasted Bioplastics in Natural and Industrial Environments: A Review
Биоразложение отработавших биопластиков в природных и промышленных средах: обзор
2020-07-27
SCID: 54.1/grjbsasb
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aerobic and anaerobic conditionsanaerobic digestionbioplastic biodegradationmicrobial biodegradationnatural and industrial environments
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Abstract (AI)
The problems linked to plastic wastes have led to the development of biodegradable plastics. More specifically, biodegradable bioplastics are the polymers that are mineralized into carbon dioxide, methane, water, inorganic compounds, or biomass through the enzymatic action of specific microorganisms. They could, therefore, be a suitable and environmentally friendly substitute to conventional petrochemical plastics. The physico-chemical structure of the biopolymers, the environmental conditions, as well as the microbial populations to which the bioplastics are exposed to are the most influential factors to biodegradation. This process can occur in both natural and industrial environments, in aerobic and anaerobic conditions, with the latter being the least researched. The examined aerobic environments include compost, soil, and some aquatic environments, whereas the anaerobic environments include anaerobic digestion plants and a few aquatic habitats. This review investigates both the extent and the biodegradation rates under different environments and explores the state-of-the-art knowledge of the environmental and biological factors involved in biodegradation. Moreover, the review demonstrates the need for more research on the long-term fate of bioplastics under natural and industrial (engineered) environments. However, bioplastics cannot be considered a panacea when dealing with the elimination of plastic pollution.
Key Findings
1
Anaerobic biodegradation is less researched than aerobic biodegradation, particularly in natural and industrial environments.
2
Biodegradable bioplastics can be mineralized by specific microorganisms into carbon dioxide, methane, water, inorganic compounds, or biomass.
3
Biodegradation is primarily influenced by polymer physicochemical structure, environmental conditions, and the microbial populations exposed to the bioplastics.
4
Bioplastic biodegradation occurs under aerobic and anaerobic conditions across compost, soil, aquatic environments, and anaerobic digestion plants.
5
Further research is needed on long-term bioplastic fate, and bioplastics should not be viewed as a complete solution to plastic pollution.
Research Object
Wasted biodegradable bioplastics in natural and industrial environments under aerobic and anaerobic conditions
Research Subject
Extent and rates of bioplastic biodegradation and the environmental, physicochemical, and biological factors governing it, including its long-term fate
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2020-07-27
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