The effect of storage conditions and washing on microplastic release from food and drink containers

微塑料 污染 食品科学 尼罗河红 环境科学 聚乙烯 制浆造纸工业 化学 材料科学 环境化学 复合材料 生物 生态学 量子力学 荧光 物理 工程类
作者
Yet Yin Hee,Keith Weston,Suhaimi Suratman
出处
期刊:Food Packaging and Shelf Life [Elsevier BV]
卷期号:32: 100826-100826 被引量:48
标识
DOI:10.1016/j.fpsl.2022.100826
摘要

Microplastic production due to storage and washing for re-use for commonly used food and drink containers in eat-in and takeaway catering was quantified and characterised using a combination of Nile Red staining, Scanning Electron Microscope imaging and infrared microscopy. The containers received ‘hot’ (water at 95 ºC added) or ‘cold’ (water with ice added) storage treatments for 1 or 5 h dependent on typical usage. All treatments resulted in microplastic production. Plastics listed by the manufacturer as being used for the production of the containers were identified as produced microplastics with additional types of microplastic also produced. Nile Red staining showed an average microplastic production of 176 particles/L (p/L) with the higher production (261 p/L) from takeaway polystyrene boxes due to its fibrous structure. Higher microplastic production also occurred in ‘hot’ treatment (192 p/L) relative to ‘cold’ treatment (90 p/L) for takeaway high-density polyethylene bags. Repeated washing of an eat-in melamine bowl showed microplastic production was an order of magnitude greater after washing 100 times (394 p/L) relative to a bowl washed once (18 p/L). Using the MP production measured in this study we estimate an individual’s annual microplastic ingestion in Southeast Asian countries to typically be ~195,000 microplastic particles from takeaway/eat-in food and drink storage. MP production from food and drink storage and washing therefore represents a key source of microplastic contamination in the human diet.
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