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一次性聚乳酸基产品的厌氧生物降解:评估与物理、化学和微观结构性质的相关性。

Anaerobic biodegradation of disposable PLA-based products: Assessing the correlation with physical, chemical and microstructural properties.

作者信息

Bracciale Maria Paola, De Gioannis Giorgia, Falzarano Marica, Muntoni Aldo, Polettini Alessandra, Pomi Raffaella, Rossi Andreina, Sarasini Fabrizio, Tirillò Jacopo, Zonfa Tatiana

机构信息

DICMA Department, Sapienza University of Rome, Via Eudossiana 18, 00184 Roma, Italy.

DICAAR Department, University of Cagliari, Piazza D'Armi 1, 09123 Cagliari, Italy.

出版信息

J Hazard Mater. 2023 Jun 15;452:131244. doi: 10.1016/j.jhazmat.2023.131244. Epub 2023 Mar 21.

Abstract

In the present study commercial Polylactic Acid-based disposable cups and plates were selected for lab scale anaerobic degradability tests. The experiments were carried out under thermophilic conditions at different inoculum to substrate ratios and test material sizes, and the specific biogas production and associated kinetics were evaluated. Maximum biogas production was comparable for almost all the experimental runs (1620 and 1830 NmL/gTOC) and a biodegradation degree in the range 86-100% was attained. Moreover, physical, chemical and microscopical analyses were used to characterize the tested materials before and after the degradation. The products composition was assessed and the presence of some additives (mainly Ca-based) was detected. Potential correlations among the process parameters and product composition were derived and a delay in process kinetics with increasing amount of additives embedded in the polymeric matrix was observed, confirming the relevant influence of the chemical blend on the biodegradation process.

摘要

在本研究中,选用了基于聚乳酸的商用一次性杯子和盘子进行实验室规模的厌氧降解性测试。实验在嗜热条件下进行,改变接种物与底物的比例以及测试材料的尺寸,并评估了特定沼气产量及相关动力学。几乎所有实验运行的最大沼气产量相当(1620和1830 NmL/gTOC),且生物降解程度达到了86 - 100%。此外,在降解前后使用物理、化学和显微镜分析对测试材料进行表征。评估了产物组成,并检测到一些添加剂(主要是钙基)的存在。得出了工艺参数与产物组成之间的潜在相关性,并观察到随着聚合物基体中添加剂含量的增加,工艺动力学出现延迟,证实了化学混合物对生物降解过程的相关影响。

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