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Biodegradation of plastics in soil and effects on nitrification activity. A laboratory approach

机译:塑料在土壤中的生物降解及其对硝化活性的影响。实验室方法

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摘要

The progressive application of new biodegradable plastics in agriculture calls for improved testing approaches to assure their environmental safety. Full biodegradation (≥90%) prevents accumulation in soil, which is the first tier of testing. The application of specific ecotoxicity tests is the second tier of testing needed to show safety for the soil ecosystem. Soil microbial nitrification is widely used as a bioindicator for evaluating the impact of chemicals on soil but it is not applied for evaluating the impact of biodegradable plastics. In this work the International Standard test for biodegradation of plastics in soil () was applied both to measure biodegradation and to prepare soil samples needed for a subsequent nitrification test based on another International Standard (). The plastic mulch film tested in this work showed full biodegradability and no inhibition of the nitrification potential of the soil in comparison with the controls. The laboratory approach suggested in this Technology Report enables (i) to follow the course of biodegradation, (ii) a strict control of variables and environmental conditions, (iii) the application of very high concentrations of test material (to maximize the possible effects). This testing approach could be taken into consideration in improved testing schemes aimed at defining the biodegradability of plastics in soil.
机译:新的可生物降解塑料在农业中的逐步应用要求改进测试方法以确保其环境安全。完全生物降解(≥90%)可防止土壤中的积累,这是测试的第一层。特定生态毒性测试的应用是表明土壤生态系统安全性所需的第二层测试。土壤微生物硝化被广泛用作评估化学品对土壤影响的生物指示剂,但不适用于评估可生物降解塑料的影响。在这项工作中,采用了土壤中塑料生物降解的国际标准测试()来测量生物降解并根据另一国际标准()准备进行后续硝化测试所需的土壤样品。与对照相比,这项工作中测试的塑料覆盖膜表现出完全的生物降解性,并且对土壤的硝化潜力没有抑制作用。本技术报告中建议的实验室方法使(i)能够遵循生物降解的过程,(ii)严格控制变量和环境条件,(iii)应用非常高浓度的测试材料(以最大程度地发挥可能的效果) 。可以在旨在定义土壤中塑料的生物降解性的改进测试方案中考虑这种测试方法。

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