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Biodegradation of compostable and oxodegradable plastic films by backyard composting and bioaugmentation

机译:后院堆肥和生物沉积的可肥大和脱水塑料薄膜的生物降解

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摘要

Plastics are widely used in the production of short-life products, which are discarded producing an accumulation of these materials and problems due to their persistence in the environment and waste management systems. Degradable plastics (compostable, oxodegradable) have been presented as an alternative to decrease the negative effect of plastic waste. In this research, the feasibility of degrading a commercially available compostable film and oxodegradable polyethylene, with and without previous abiotic oxidation, is assessed in a home composting system. Reactors (200 L) were used to degrade the plastic films along with a mixture of organic food waste (50 %), mulch (25 %), and dry leaves (25 %), amended with yeast and a solution of brown sugar to increase the speed of the process. The presence of the plastic film did not affect the composting process, which showed an initial increase in temperature and typical profiles for moisture content, pH, with a final C/N of 17.4. After 57 days, the compostable plastic has decreased its mechanical properties in more than 90 %, while the oxodegradable film did not show significant degradation if it was not previously degraded by UV radiation. The use of these plastics should be assessed against the prevailing waste management system in each city or country. In the case of Mexico, which lacks the infrastructure for industrial composting, home composting could be an option to degrade compostable plastics along organic waste. However, more testing is needed in order to set the optimal parameters of the process.
机译:塑料广泛用于生产短生品产品,由于它们在环境和废物管理系统的持久性持久性,丢弃了这些材料的积累和问题。已经呈现可降解塑料(可堆肥,牛油降解)作为降低塑料废物的负效应的替代方案。在本研究中,在家庭堆肥系统中评估了降解市售粘性膜和脱水聚乙烯的可行性,有和没有先前的非生物氧化。反应器(200L)用于降解塑料薄膜以及有机食品废物(50%),覆盖物(25%)和干燥叶(25%)的混合物,用酵母和棕色糖溶液增加过程的速度。塑料薄膜的存在不影响堆肥过程,其显示温度和典型型材的初始增加,用于水分含量,pH值,最终C / N为17.4。 57天后,可堆肥塑料在90%以上的机械性能下降,而牛油降解的薄膜在UV辐射以前没有降解,则氧化薄膜没有显着降解。应根据每个城市或国家的主要废物管理系统评估这些塑料的使用。在墨西哥缺乏工业堆肥基础设施的情况下,家庭堆肥可能是一种选择沿着有机废物降低可粘性塑料的选择。但是,需要进行更多的测试,以便设置该过程的最佳参数。

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