The School of Packaging, Michigan State University, 157 Packaging Building, 448 Wilson Rd, East Lansing, MI, 48824, USA.
Macromol Rapid Commun. 2024 Apr;45(7):e2300641. doi: 10.1002/marc.202300641. Epub 2024 Jan 18.
Poly(lactic acid) (PLA) has garnered interest due to its low environmental footprint and ability to replace conventional polymers and be disposed of in industrial composting environments. Although PLA is compostable when subjected to a suitable set of conditions, its broader acceptance in industrial composting facilities has been affected adversely due to longer degradation timeframes than the readily biodegradable organic waste fraction. PLA must be fully exposed to thermophilic conditions for prolonged periods to biodegrade, which has restricted its adoption and hindered its acceptance in industrial composting facilities, negating its home composting potential. Thus, enhancing PLA biodegradation is crucial to expand its acceptance. PLA's biodegradability is investigated in a compost matrix under mesophilic conditions at 37 °C for 180 days by biostimulating the compost environment with skim milk, gelatin, and ethyl lactate to enhance the different stages of PLA biodegradation. The evolved CO, number average molecular weight (M), and crystallinity evolution are tracked. To achieve a M ≲ 10 kDa for PLA, the biodegradation rate is accelerated by 15% by adding skim milk, 25% by adding gelatin, and 22% by adding ethyl lactate. This work shows potential techniques to help biodegrade PLA in home composting setting by adding biostimulants.
聚乳酸(PLA)因其环境足迹低且能够替代传统聚合物,并可在工业堆肥环境中处置而受到关注。尽管 PLA 在满足适当条件下可进行堆肥,但由于其降解时间比易生物降解的有机废物部分更长,因此其在工业堆肥设施中的更广泛接受受到了不利影响。PLA 必须完全暴露在高温条件下才能进行长时间的生物降解,这限制了其采用并阻碍了其在工业堆肥设施中的接受,否定了其家庭堆肥的潜力。因此,提高 PLA 的生物降解性对于扩大其接受度至关重要。本研究通过在 37°C 的中温条件下在堆肥基质中用脱脂牛奶、明胶和乙基乳酸酯对堆肥环境进行生物刺激,以促进 PLA 生物降解的不同阶段,来研究 PLA 在堆肥基质中的生物降解性。跟踪了演变的 CO2、数均分子量(M)和结晶度演变。为了使 PLA 的 M ≲ 10 kDa,通过添加脱脂牛奶可将生物降解率提高 15%,通过添加明胶可提高 25%,通过添加乙基乳酸酯可提高 22%。这项工作展示了通过添加生物刺激剂帮助 PLA 在家庭堆肥环境中生物降解的潜在技术。