Luís André Mendes, Ricardo Beiras, Jorge Domínguez
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引用次数: 0
摘要
过去几年中,可堆肥塑料袋的供应量大幅增加,因为人们认为这类塑料袋在处理后会降解。然而,在对土壤生态系统的潜在影响方面还存在一些知识空白。我们用蚯蚓物种 Eisenia andrei 评估了四种不同类型的商用堆肥袋样本在蚯蚓堆肥系统中的降解率。我们还评估了蚯蚓对来自塑料袋碎片(<2000 µm)的微塑料(MPs)的生物反应(存活和繁殖),并分别按照经合组织(OECD)和国际标准化组织(ISO)的指导方针,评估了暴露在微粒化塑料(<250 µm)和相应浸出液中的普通花园芹菜(Lepidium sativum L.)的出苗情况。降解率的显著差异取决于塑料的类型而不是蚯蚓堆肥系统中的基质。这一发现表明,降解过程更依赖于定殖在不同类型塑料中的微生物群落,而不是蚯蚓的活动。关于土壤系统的生物反应,L. sativum 的出苗没有受到显著影响;但蚯蚓的繁殖受到了影响,这表明尽管可以堆肥,但某些配方可能对土壤动物有潜在毒性。
Earthworm (Eisenia andrei)-Mediated Degradation of Commercial Compostable Bags and Potential Toxic Effects
The availability of compostable plastic bags has increased greatly in the past few years, as it is perceived that this type of bags will be degraded after disposal. However, there are some knowledge gaps regarding the potential effects on the soil ecosystems. We assessed the rate of degradation of samples of four different types of commercial compostable bags in vermicomposting systems with the earthworm species Eisenia andrei. We also evaluated the biological response of E. andrei (survival and reproduction) to microplastics (MPs) from fragments of the plastic bags (<2000 µm) and assessed seedling emergence in common garden cress (Lepidium sativum L.) exposed to micronized plastic (<250 µm) and the respective leachate, following OECD and ISO guidelines, respectively. The rate of degradation differed significantly depending on the type of plastic rather than the substrate in the vermicomposting system. This finding suggests that the degradation process is more dependent on the microbial community colonizing the different plastic types than on earthworm activity. Regarding the biological response of the soil system, L. sativum seedling emergence was not significantly affected; however, earthworm reproduction was affected, suggesting that although compostable, some of the formulations may potentially be toxic to soil fauna.