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Biodegradable and compostable alternatives to conventional plastics

机译:传统塑料的可生物降解和可堆肥替代品

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摘要

Packaging waste forms a significant part of municipal solid waste and has caused increasing environmental concerns, resulting in a strengthening of various regulations aimed at reducing the amounts generated. Among other materials, a wide range of oil-based polymers is currently used in packaging applications. These are virtually all non-biodegradable, and some are difficult to recycle or reuse due to being complex composites having varying levels of contamination. Recently, significant progress has been made in the development of biodegradable plastics, largely from renewable natural resources, to produce biodegradable materials with similar functionality to that of oil-based polymers. The expansion in these bio-based materials has several potential benefits for greenhouse gas balances and other environmental impacts over whole life cycles and in the use of renewable, rather than finite resources. It is intended that use of biodegradable materials will contribute to sustainability and reduction in the environmental impact associated with disposal of oil-based polymers.The diversity of biodegradable materials and their varying properties makes it difficult to make simple, generic assessments such as biodegradable products are all ‘good’ or petrochemical-based products are all ‘bad’. This paper discusses the potential impacts of biodegradable packaging materials and their waste management, particularly via composting. It presents the key issues that inform judgements of the benefits these materials have in relation to conventional, petrochemical-based counterparts. Specific examples are given from new research on biodegradability in simulated ‘home’ composting systems. It is the view of the authors that biodegradable packaging materials are most suitable for single-use disposable applications where the post-consumer waste can be locally composted.
机译:包装废弃物是城市固体废弃物的重要组成部分,并引起了越来越多的环境关注,导致旨在减少产生量的各种法规得到加强。在其他材料中,目前在包装应用中使用了多种油基聚合物。这些实际上都是不可生物降解的,并且由于它们是具有不同污染水平的复杂复合材料,因此有些很难回收或再利用。近来,在可生物降解的塑料的开发方面已经取得了重大进展,主要是从可再生的自然资源中生产出具有与油基聚合物相似的功能的可生物降解的材料。这些生物基材料的扩展对于整个生命周期内的温室气体平衡和其他环境影响以及使用可再生资源(而不是有限资源)具有若干潜在的好处。旨在使用生物可降解材料将有助于可持续发展并减少与油基聚合物处置相关的环境影响。生物可降解材料的多样性及其不同的特性使其难以进行简单的通用评估,例如可生物降解的产品所有“好”或石化产品都属于“坏”产品。本文讨论了可生物降解包装材料及其废物管理的潜在影响,特别是通过堆肥处理。它提出了关键问题,这些问题使人们可以判断这些材料相对于传统的,基于石化产品的同类产品具有的优势。具体的例子来自新的模拟“家庭”堆肥系统中生物降解性的研究。作者认为,可生物降解的包装材料最适合一次性使用的应用,这些应用中的消费后废物可以在当地堆肥。

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