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Forensic engineering of advanced polymeric materials Part IV: Case study of oxo-biodegradable polyethylene commercial bag – Aging in biotic and abiotic environment

机译:先进聚合物材料的法医工程第四部分:氧可生物降解聚乙烯商业用袋的案例研究–在生物和非生物环境中老化

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摘要

The public awareness of the quality of environment stimulates the endeavor to safe polymeric materials and their degradation products. The aim of the forensic engineering case study presented in this paper is to evaluate the aging process of commercial oxo-degradable polyethylene bag under real industrial composting conditions and in distilled water at 70 °C, for comparison. Partial degradation of the investigated material was monitored by changes in molecular weight, thermal properties and Keto Carbonyl Bond Index and Vinyl Bond Index, which were calculated from the FTIR spectra. The results indicate that such an oxo-degradable product offered in markets degrades slowly under industrial composting conditions. Even fragmentation is slow, and it is dubious that biological mineralization of this material would occur within a year under industrial composting conditions. The slow degradation and fragmentation is most likely due to partially crosslinking after long time of degradation, which results in the limitation of low molecular weight residues for assimilation. The work suggests that these materials should not be labeled as biodegradable, and should be further analyzed in order to avoid the spread of persistent artificial materials in nature.
机译:公众对环境质量的意识激发了人们对安全的聚合物材料及其降解产物的努力。本文介绍的法医工程案例研究的目的是评估在实际工业堆肥条件下和在70°C的蒸馏水中的商业可氧化降解聚乙烯袋的老化过程,以进行比较。通过分子量,热性质以及酮基羰基键指数和乙烯基键指数的变化来监测所研究材料的部分降解,这些变化是通过FTIR光谱计算得出的。结果表明,市场上提供的这种可氧化降解的产品在工业堆肥条件下降解缓慢。甚至碎片化也很慢,并且在工业堆肥条件下,这种材料的生物矿化会在一年之内发生是令人怀疑的。缓慢的降解和断裂很可能是由于长时间降解后发生了部分交联,从而限制了低分子量残基的同化作用。这项工作表明,这些材料不应被标记为可生物降解的,而应进行进一步分析,以避免持久性人造材料在自然界中扩散。

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