Bandini Francesca, Vaccari Filippo, Soldano Mariangela, Piccinini Sergio, Misci Chiara, Bellotti Gabriele, Taskin Eren, Cocconcelli Pier Sandro, Puglisi Edoardo
Department for Sustainable Food Process, Università Cattolica del Sacro Cuore, Piacenza, PC, Italy.
Centro Ricerche Produzioni Animali S.p.A. (CRPA), Reggio Emilia, RE, Italy.
Front Microbiol. 2022 Nov 11;13:1035561. doi: 10.3389/fmicb.2022.1035561. eCollection 2022.
While bioplastics are gaining wide interest in replacing conventional plastics, it is necessary to understand whether the treatment of the organic fraction of municipal solid waste (OFMSW) as an end-of-life option is compatible with their biodegradation and their possible role in shaping the microbial communities involved in the processes. In the present work, we assessed the microbiological impact of rigid polylactic acid (PLA) and starch-based bioplastics (SBB) spoons on the thermophilic anaerobic digestion and the aerobic composting of OFMSW under real plant conditions. In order to thoroughly evaluate the effect of PLA and SBB on the bacterial, archaeal, and fungal communities during the process, high-throughput sequencing (HTS) technology was carried out. The results suggest that bioplastics shape the communities' structure, especially in the aerobic phase. Distinctive bacterial and fungal sequences were found for SBB compared to the positive control, which showed a more limited diversity. was especially abundant in composts from bioplastics' treatment, whereas was found only in compost from PLA and in that from SBB. This work shed a light on the microbial communities involved in the OFMSW treatment with and without the presence of bioplastics, using a new approach to evaluate this end-of-life option.
虽然生物塑料在替代传统塑料方面正引起广泛关注,但有必要了解将城市固体废物有机部分(OFMSW)作为一种终态处置选择的处理方式是否与其生物降解性相兼容,以及它们在塑造参与这些过程的微生物群落方面可能发挥的作用。在本研究中,我们评估了刚性聚乳酸(PLA)和淀粉基生物塑料(SBB)勺子在实际工厂条件下对OFMSW的嗜热厌氧消化和好氧堆肥的微生物学影响。为了全面评估PLA和SBB在此过程中对细菌、古菌和真菌群落的影响,我们采用了高通量测序(HTS)技术。结果表明,生物塑料会塑造群落结构,尤其是在好氧阶段。与阳性对照相比,SBB发现了独特的细菌和真菌序列,阳性对照显示出的多样性更有限。 在生物塑料处理产生的堆肥中特别丰富,而 仅在PLA产生的堆肥中发现, 在SBB产生的堆肥中发现。这项工作通过一种新方法来评估这种终态处置选择,揭示了有无生物塑料存在时参与OFMSW处理的微生物群落情况。