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Macrofouling communities and the degradation of plastic bags in the sea: an in?situ experiment

机译:大污垢群落和海洋中塑料袋的降解:原位实验

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摘要

The increasing amount of plastic littered into the sea may provide a new substratum for benthic organisms. These marine fouling communities on plastic have not received much scientific attention. We present, to our knowledge, the first comprehensive analysis of their macroscopic community composition, their primary production and the polymer degradation comparing conventional polyethylene (PE) and a biodegradable starch-based plastic blend in coastal benthic and pelagic habitats in the Mediterranean Sea. The biomass of the fouling layer increased significantly over time and all samples became heavy enough to sink to the seafloor. The fouling communities, consisting of 21 families, were distinct between habitats, but not between polymer types. Positive primary production was measured in the pelagic, but not in the benthic habitat, suggesting that large accumulations of floating plastic could pose a source of oxygen for local ecosystems, as well as a carbon sink. Contrary to PE, the biodegradable plastic showed a significant loss of tensile strength and disintegrated over time in both habitats. These results indicate that in the marine environment, biodegradable polymers may disintegrate at higher rates than conventional polymers. This should be considered for the development of new materials, environmental risk assessment and waste management strategies.
机译:越来越多的散落入海的塑料可能为底栖生物提供新的基础。这些在塑料上造成的海洋污染社区并没有受到太多科学关注。据我们所知,我们对地中海沿岸底栖和中上生境中的常规聚乙烯(PE)和可生物降解的淀粉基塑料混合物进行了比较,对它们的宏观群落组成,主要生产和聚合物降解进行了首次全面分析。结垢层的生物量随时间显着增加,所有样品变得沉重到足以沉入海底。由21个科组成的污垢群落在生境之间是不同的,但在聚合物类型之间却没有。在中上层(而非底栖生境)中测得的初级生产为正,这表明大量的漂浮塑料可能构成当地生态系统的氧气源以及碳汇。与PE相反,可生物降解的塑料在两个生境中均显示出明显的拉伸强度损失,并随着时间的流逝而分解。这些结果表明,在海洋环境中,可生物降解的聚合物可能比常规聚合物分解的速率更高。在开发新材料,环境风险评估和废物管理策略时应考虑这一点。

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