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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Marine & Wildlife Remediation Sign in to save

Degradation of Plastics in Seawater in Laboratory

Open Journal of Polymer Chemistry 2015 37 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 30 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Margarita Beltrán-Villavicencio, Alethia Vázquez‐Morillas Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Juan Carlos Álvarez‐Zeferino, Margarita Beltrán-Villavicencio, Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Margarita Beltrán-Villavicencio, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Margarita Beltrán-Villavicencio, Juan Carlos Álvarez‐Zeferino, Alethia Vázquez‐Morillas Alethia Vázquez‐Morillas

Summary

Researchers tested how compostable and oxodegradable plastics degrade in seawater in laboratory conditions, finding that compostable plastic showed measurable breakdown (10%) while polyolefins with or without pro-oxidant additives showed very little degradation. The results suggest that many plastics marketed as degradable offer minimal benefit in marine environments.

Study Type Environmental

Degradable plastics are used as a way to decrease the environmental impact of these materials when they become waste. However, they can reach natural ecosystems due to littering and bad management. This research assesses the performance of oxodegradable and compostable plastics on marine environments through a respirometric lab test. Probes of the plastics, with and without previous simulated weathering, were put in contact for 48 days with a marine inoculum, in a system that guarantees continuous aeration and capture of the produced CO2. After the test, the samples were also assessed in terms of their loss of mechanical properties. The compostable plastic exhibited the higher degree of mineralization (10%), while there was no difference between the polyolefins (2.06% -2.78%), with or without presence of pro-oxidants or previous abiotic degradation. On the other hand, exposition to UV light promoted a higher loss of elongation at break in the oxodegradables plastic (>68%). The results show that the studied plastics achieve very low biodegradation rates while presenting a higher rate of loss of physical integrity. This combination of phenomena could lead to their fragmentation before significant biodegradation can occur. The risk of microplastics formation must be prevented by avoiding the presence of the materials in marine environments, even if they have shown suitability for some waste management scenarios.

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