Biodegradation of weathered polystyrene films in seawater microcosms
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Summary
The results suggest that acclimated marine populations are capable of degrading weathered PS pieces.
- Type
- article
- Published
- 2017-12-01
- Cited by
- 154
- References
- 64
- Access
- Open access
- OpenAlex
- https://openalex.org/W2773894267
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7896346
Keywords
Microcosm, Gammaproteobacteria, Polystyrene, Alphaproteobacteria, Biodegradation
References
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- Marine biofilms on artificial surfaces: structure and dynamics.
- Marine microplastic-associated biofilms - a review
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- Spatial and seasonal variation in diversity and structure of microbial biofilms on marine plastics in Northern European waters.
- Biofilm and Diatom Succession on Polyethylene (PE) and Biodegradable Plastic Bags in Two Marine Habitats: Early Signs of Degradation in the Pelagic and Benthic Zone?
- Prospects for microbiological solutions to environmental pollution with plastics
- Comparison of the biodegradability of various polyethylene films containing pro-oxidant additives
- Biodegradation of polyethylene by the thermophilic bacterium Brevibacillus borstelensis
- Microbial degradation of low density polyethylene (LDPE): A review
- Adhesion as a weapon in microbial competition
- Marine debris in central California: quantifying type and abundance of beach litter in Monterey Bay, CA.
- Microbial degradation and deterioration of polyethylene – A review
- Constructing robust and functional micropatterns on polystyrene surfaces by using deep UV irradiation.
- Millimeter-Sized Marine Plastics: A New Pelagic Habitat for Microorganisms and Invertebrates
- Biological degradation of plastics: a comprehensive review.
- Life in the "plastisphere": microbial communities on plastic marine debris.
- Plastic waste inputs from land into the ocean
- Bacterial competition: surviving and thriving in the microbial jungle
- Abundance and Diversity of n-Alkane-Degrading Bacteria in a Forest Soil Co-Contaminated with Hydrocarbons and Metals: A Molecular Study on alkB Homologous Genes
Cited by
- Regional approach to modeling the transport of floating plastic debris in the Adriatic Sea.
- Do plastics serve as a possible vector for the spread of antibiotic resistance? First insights from bacteria associated to a polystyrene piece from King George Island (Antarctica).
- Artificial selection of microbial communities to enhance degradation of recalcitrant polymers
- Biotechnological tools for the effective management of plastics in the environment
- Does nanosized plastic affect aquatic fungal litter decomposition?
- The Plastisphere – Uncovering tightly attached plastic “specific” microorganisms
- Polyvinyl chloride biodegradation by Pseudomonas citronellolis and Bacillus flexus.
- Biodegradation of mixture of plastic films by tailored marine consortia.
- Microbial Ecotoxicology of Marine Plastic Debris: A Review on Colonization and Biodegradation by the “Plastisphere”
- Biodegradation of oil-based plastics in the environment: Existing knowledge and needs of research and innovation.
- Studies on biological degradation of polystyrene by pure fungal cultures
- Marine Microbial Assemblages on Microplastics: Diversity, Adaptation, and Role in Degradation.
- Early Colonization of Weathered Polyethylene by Distinct Bacteria in Marine Coastal Seawater
- Can biotechnology strategies effectively manage environmental (micro)plastics?
- Bacterial Candidates for Colonization and Degradation of Marine Plastic Debris.
- Micro‐by‐micro interactions: How microorganisms influence the fate of marine microplastics
- Integrated approaches in microbial degradation of plastics
- Microplastics in the water column, bottom sediments, and beach sands of the southeastern Baltic Sea: concentrations, particle distributions by size and shape
- Degradation Rates of Plastics in the Environment
- Ranking environmental degradation trends of plastic marine debris based on physical properties and molecular structure
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