Biodegradable Plastic Blends Create New Possibilities for End-of-Life Management of Plastics but They Are Not a Panacea for Plastic Pollution
Биоразлагаемые пластиковые смеси открывают новые возможности для обращения с пластиками по окончании срока их эксплуатации, но не являются панацеей от загрязнения пластиком
2018-08-29
SCID: 54.1/7urefxzb
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ISO and ASTM biodegradation standardsbiodegradable plastic blendspolycaprolactone (PCL)polylactic acid (PLA)thermophilic anaerobic digestion
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Abstract (AI)
Plastic waste pollution is a global environmental problem which could be addressed by biodegradable plastics. The latter are blended together to achieve commercially functional properties, but the environmental fate of these blends is unknown. We have tested neat polymers, polylactic acid (PLA), polyhydroxybutyrate, polyhydroxyoctanoate, poly(butylene succinate), thermoplastic starch, polycaprolactone (PCL), and blends thereof for biodegradation across seven managed and unmanaged environments. PLA is one of the world's best-selling biodegradable plastics, but it is not home compostable. We show here that PLA when blended with PCL becomes home compostable. We also demonstrate that the majority of the tested bioplastics and their blends degrade by thermophilic anaerobic digestion with high biogas output, but degradation times are 3-6 times longer than the retention times in commercial plants. While some polymers and their blends showed good biodegradation in soil and water, the majority of polymers and their blends tested in this study failed to achieve ISO and ASTM biodegradation standards, and some failed to show any biodegradation. Thus, biodegradable plastic blends need careful postconsumer management, and further design to allow more rapid biodegradation in multiple environments is needed as their release into the environment can cause plastic pollution.
Key Findings
1
Although some materials biodegraded effectively in soil and water, most failed ISO and ASTM biodegradation standards, with some showing no degradation.
2
Anaerobic digestion degradation times were 3–6 times longer than commercial plant retention times.
3
Biodegradable plastic blends require careful postconsumer management and further design to prevent environmental plastic pollution.
4
Blending PLA with PCL enables PLA to become home compostable, unlike neat PLA.
5
Most tested bioplastics and blends degraded under thermophilic anaerobic digestion and produced high biogas outputs.
Research Object
Biodegradable plastic polymers and blends, including PLA, PCL, polyhydroxybutyrate, polyhydroxyoctanoate, poly(butylene succinate), and thermoplastic starch, across managed and unmanaged environments
Research Subject
Biodegradation behavior, compostability, anaerobic-digestion performance, degradation rates, and compliance with ISO and ASTM standards across different environments
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2018-08-29
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