含氧生物可降解塑料性能、标准和法规的范围界定和批判性审查

Q2 Multidisciplinary
J. C. Salcedo Reyes, Octavio Alejandro Castañeda Uribe, Luis David Gomez Méndez, A. Pedroza Rodriguez, Raul Alberto Poutou Piñales
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引用次数: 1

摘要

根据最近关于塑料化合物的转化和生物降解机制的科学技术发展,在相关定义的概念化和技术标准的制定方面取得了进展,这些标准允许以更精确和可重复的方式确定所确定材料的生物降解率。从这些进展中,他们进一步开发了所谓的氧化生物降解塑料,其中将促氧化剂添加剂添加到原料聚合物中,从而允许最佳的非生物转化过程(光/热氧化),在合适的条件下产生材料的碎片,以同时或连续进行生物降解(酶氧化)。虽然,目前,氧生物可降解塑料被广泛应用于不同的应用,例如,在农业和一次性塑料中,直到最近才制定了一项技术标准,允许确定不同类型的塑料在非生物和生物条件下的相对降解率。这一过程意味着,为了使生产者能够在广告中使用生物降解和氧-生物降解的具体术语,声称提供环境友好型产品,有关实体必须根据新的定义和技术标准进行计量测试。此外,已经产生了大量的专业文献,在非常特定的环境和条件下确定了氧生物降解塑料的生物降解率。本文详细介绍了氧/生物降解的不同定义和科学概念,并说明了这些概念是如何随着时间的推移而演变的。它还显示了技术标准的演变,总的来说,这些标准是适应塑料领域新的科学和技术发展的。最后,对科学文献中报告的结果进行了详细的分析,表明氧生物降解取决于不同的参数(紫外线辐射、温度、暴露时间、酶的类型)、特定的环境(土壤、堆肥、废物、回收等)、不同类型的塑料(LDPE、HDPE、LLDPE、促氧化添加剂),以及使用的不同分析技术(FTIR、DSC、TGA、SEM、拉伸试验)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A scoping and critical review of properties, standards, and regulations of oxo-biodegradable plastics
Based on recent scientific-technical developments referring to the transformation and biodegradation mechanisms of plastic compounds, progress has been made both in the conceptualization of relevant definitions and in the development of technical standards that allow determining, in a more precise and reproducible way, the ratio of biodegradability of a determined material. From these advances, they have developed, furthermore, the so-called oxo-biodegradable plastics, in which pro-oxidant additives are added to the raw polymer in such a way that allow a optimal abiotic transformation process (photo/thermo oxidation), producing the fragmentation of the material under suitable conditions for its simultaneous or successive biotic degradation (enzymatic oxidation). Although, currently, oxobiodegradable plastics are widely used in different applications such as, for example, in agriculture andsingle-use plastics, until very recently a technical standard was developed that allows determining the relative degradation ratio of different types of plastics under abiotic and biotic conditions. This process implies that for producers to be able to use specific terms of bio-degradation and oxo-biodegradation for advertising purposes that claim to offer an environmentally friendly product, the relevant entities must carry out metrological tests in light of the new definitions and technical standards. Furthermore, a large amount of specialized literature has been generated in which the bio-degradation ratio of oxobiodegradable plastics is determined in very specific environments and conditions. This review gives a detailed account of the different definitions and scientific concepts involved in oxo-/bio- degradation and shows how these concepts have evolved over time. It also shows the evolution of the technical standards, which, in general, are adapted to the new scientific and technical developments in the field of plastics. Finally, a detailed analysis of results reported in the scientific literature shows the dependence of oxo-biodegradation on different parameters (UV radiation, temperature, exposure time, type of enzymes), specific environments (soil, composting, waste, recycling, etc.), different types of plastics (LDPE, HDPE, LLDPE, pro-oxidant additives) and, finally, on different analytical techniques used (FTIR, DSC, TGA, SEM, tensile test).
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来源期刊
Universitas Scientiarum
Universitas Scientiarum Multidisciplinary-Multidisciplinary
CiteScore
1.20
自引率
0.00%
发文量
9
审稿时长
15 weeks
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