Photodegradation and Biodegradation Under Thermophile Conditions of Mulching Films Based on Poly(Butylene Adipate-co-Terephthalate) and Its Blend with Poly(Lactic Acid)

己二酸 材料科学 光降解 生物降解 嗜热菌 枯草芽孢杆菌 核化学 生物可分解塑胶 短小芽孢杆菌 复合材料 光催化 有机化学 催化作用 高分子化学 细菌 生物 化学 遗传学
作者
A. Morro,F. Catalina,Enrique Sánchez-León,C. Abrusci
出处
期刊:Journal of Polymers and The Environment [Springer Nature]
卷期号:27 (2): 352-363 被引量:49
标识
DOI:10.1007/s10924-018-1350-0
摘要

Two commercial mulching films based on aliphatic–aromatic copolyesters, poly(butylene adipate-co-terephthalate) (PBAT) and its blend with poly(lactic acid) (PBAT/PLA) were selected to study their photodegradation and their biodegradation under thermophile conditions. The films were buried in an agricultural field and bacteria were isolated from these. Bacterial strains were characterized with a combination of culture-dependent methods and sequencing of part of the 16S ribosomal RNA gene (rDNA). The most prevalent genus isolated was Bacillus and other related genera were found as well. Consortia of the isolated indigenous bacterial strains, IDN-EF and IDN-EC, and an additional consortia that had been previously isolated from exposed polyethylene, Bacillus-MIX, were prepared to perform the biodegradation assay at 45 °C on highly photodegraded films. Changes in the films were studied using chemiluminescence, ATR–FTIR, contact angle, SEM, GPC, DSC and TGA. A biodegradation assay was also performed on the four monomers that constitute the polymers using Bacillus subtilis and Bacillus licheniformis. Mineralization was evaluated by carbon dioxide measurements using an indirect impedance technique. This technique showed that overall there was a higher mineralization for the photodegraded materials. However, the biodegradation was most efficient when B. subtilis was present in the bacterial consortium and especially when the materials had been previously photodegraded.

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