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Recyclable mono materials for packaging of fresh chicken fillets: New design for recycling in circular economy

机译:用于包装新鲜鸡肉内圆角的可回收单体材料:循环经济中回收的新设计

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The focus on sustainability and circular economy is leading to a need for development of new food packaging concepts, including recyclable materials that ideally consist of a single material in a monolayer system. This research was focused on the possibility of replacing complex multilayered material [amorphous polyethylene terephthalate/polyethylene (APET/PE)] with simple recyclable mono material [high-density polyethylene (HDPE)] for packaging of chicken fillets in modified atmosphere packaging (CO2/N-2: 60%/40%). Bacterial growth measured as total viable count (TVC), lactic acid bacteria andEnterobacteriaceae, Brochothrix thermosphactaandEscherichia colifor chicken fillets packed in HDPE mono materials was compared with chicken fillets packed in APET/PE. TVC increased during the storage period (24 days) with high level of TVC count (7 log(10)CFU/g) recorded at Days 19-20 of storage in both HDPE and APET/PE material. No significant differences were recorded in off-odour between chicken stored in APET/PE compared with HDPE in CO2/N(2)atmosphere during the storage period (samples were regarded as acceptable on the 24th day of storage). The drip loss increased in all samples during storage, and no significant differences between samples stored in different materials were recorded. Significant differences in bacterial growth were recorded between samples with different gas volume to product volume (G/P) ratio (Day 17), implying that higher G/P ratio is resulting in lower TVC count. The lowest G/P ratio caused the highest drip loss, whereas addition of CO(2)emitter reduced the drip loss to some extent. This research is very encouraging as it provides new insight into the use of monolayer materials as well as the importance of design for recycling in circular economy.
机译:对可持续性和循环经济的关注导致开发新的食品包装概念,包括理想地由单层系统中的单一材料组成的可回收材料。该研究专注于用简单的可再循环单体材料[高密度聚乙烯(HDPE)[高密度聚乙烯(HDPE)包装改性气氛包装(CO2 /)包装鸡圆角(二氧化碳/)的可能性(CO2 /)的可能性集中于更换复杂的多层材料[无定形聚对苯二甲酸乙二醇酯/聚乙烯(APET / PE)](CO2 / N-2:60%/ 40%)。将细菌生长测量为总活性计数(TVC),乳酸菌和肽杆菌菌,将繁殖的HDPE单体材料填充的Brochothrix Therophactaandscherichia Colifor鸡肉圆角与Apet / Pe填充的鸡肉片进行比较。 TVC在存储期间(24天)增加,具有高水平的TVC计数(70-20天在HDPE和APET / PE材料中的存储时记录的70-20天数。在储存期间与CO 2 / N(2)气氛中的HDPE相比,在APET / PE中储存的鸡肉之间没有显着差异在储存期间(样品被认为在储存的第24天)中的HDPE相比。在储存期间的所有样品中滴落损失增加,记录了储存在不同材料中的样品之间没有显着差异。在具有不同气体体积的样品与产品体积(G / P)比(第17天)的样品之间记录细菌生长的显着差异,这意味着较高的G / P比率导致较低的TVC计数。最低的G / P比率导致滴漏的最高损耗,而加入CO(2)发射器在一定程度上降低了DRIP损耗。这项研究非常令人鼓舞,因为它提供了新的洞察单层材料的使用以及在循环经济中回收的重要性。

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