Dipartimento Di Ingegneria, Università Degli Studi Roma Tre, Via Vito Volterra 62, 00146, Roma, Italy.
Environ Sci Pollut Res Int. 2022 Mar;29(13):18617-18628. doi: 10.1007/s11356-021-17094-1. Epub 2021 Oct 25.
The dairy market is one of the most important sectors worldwide, and milk packaging contributes to over one-third of the global dairy packaging demand. The end of life of the disposable packages is a critical stage of their life cycle, as demonstrated by the fact that disposable bottles are one of the litter items that are most found on beach shores. The aim of this paper is to analyse the performance of bioplastic bottles compared to other alternatives currently in use in the milk packaging sector, using the life cycle assessment (LCA) methodology. Bio-compostable plastic can be a powerful means to create a circular economy for disposable items. A PLA-based bottle is compared to a PET bottle, a HDPE bottle, a multilayer carton, and a glass bottle. In the analysis, also secondary and tertiary packaging is included. The functional unit chosen is "the packaging needed to contain 1 L of ESL milk and to guarantee a shelf life of 30 days". Two sensitivity analyses are also performed in order to assess the influence of the end-of-life stage on the total impact. The results show that, in accordance with the assumptions of an ideal scenario, bioplastic system has a better performance than fossil-based systems and multilayer carton in the categories of climate change, ozone depletion, human toxicity, freshwater eutrophication, particular matter, and land use. The recycling scenario strongly changes the impact of the glass packaging system in the considered categories.
乳制品市场是全球最重要的市场之一,而牛奶包装占全球乳制品包装需求的三分之一以上。一次性包装的使用寿命终结是其生命周期的一个关键阶段,这一点可以从一次性瓶子是海滩上最常见的垃圾物品之一的事实中得到证明。本文的目的是使用生命周期评估 (LCA) 方法分析生物塑料瓶与目前在牛奶包装领域中使用的其他替代品的性能。生物可堆肥塑料可以成为创建一次性物品循环经济的有力手段。与 PET 瓶、HDPE 瓶、多层纸盒和玻璃瓶相比,本文比较了基于 PLA 的瓶子。在分析中,还包括二级和三级包装。选择的功能单位是“包装 1 升 ESL 牛奶并保证 30 天保质期所需的包装”。还进行了两次敏感性分析,以评估使用寿命终结阶段对总影响的影响。结果表明,根据理想情况的假设,在气候变化、臭氧消耗、人类毒性、淡水富营养化、特殊物质和土地利用等类别中,生物塑料系统比基于化石的系统和多层纸盒具有更好的性能。在考虑的类别中,回收方案强烈改变了玻璃包装系统的影响。