Politecnico di Milano, Department of Civil and Environmental Engineering - Piazza Leonardo Da Vinci 32, 20133 Milano, Italy.
Politecnico di Milano, Department of Civil and Environmental Engineering - Piazza Leonardo Da Vinci 32, 20133 Milano, Italy.
Bioresour Technol. 2024 Sep;408:131212. doi: 10.1016/j.biortech.2024.131212. Epub 2024 Aug 3.
This study evaluated the fate of food delivery boxes when subjected to biological treatments, reproducing at the lab-scale the conditions of full-scale plants. Four paper-based boxes were composted: two made of paper only, one coupled with polylactic acid (PLA), and one with a barrier coating. One paper only box and the box with PLA were also investigated for their anaerobic degradability with biochemical methane potential (BMP) and semi-continuous tests. During composting, the boxes were not recognisable inside the compost after four (paper only boxes), eight (box with PLA), and twelve (box with barrier coating) weeks. In BMP tests, the paper only box showed a degradability similar to that of food waste (92 %), while the box with PLA degraded only at 76 %. Furthermore, undigested pieces of PLA were found in semi-continuous tests. Accordingly, paper resulted suitable for biological treatments, while the presence of PLA or other barrier coatings can be critical.
本研究评估了食物配送盒在生物处理下的命运,在实验室规模上再现了全规模工厂的条件。对四个纸质盒子进行了堆肥:两个仅由纸制成,一个与聚乳酸(PLA)结合,一个具有阻隔涂层。还对仅用纸制成的盒子和具有 PLA 的盒子进行了生物甲烷潜力(BMP)和半连续测试,以研究其厌氧降解性。在堆肥过程中,四个星期后(仅纸盒子)、八个星期后(PLA 盒子)和十二个星期后(具有阻隔涂层的盒子),盒子在堆肥中已无法辨认。在 BMP 测试中,仅纸盒子的降解率与食物垃圾相似(92%),而 PLA 盒子的降解率仅为 76%。此外,在半连续测试中发现了未消化的 PLA 碎片。因此,纸适合生物处理,而 PLA 或其他阻隔涂层的存在可能是关键。