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聚乳酸/聚3-羟基丁酸酯(PLA/PHB)共混物在堆肥过程中影响其崩解的因素评估

Evaluation of the Factors Affecting the Disintegration under a Composting Process of Poly(lactic acid)/Poly(3-hydroxybutyrate) (PLA/PHB) Blends.

作者信息

Iglesias-Montes Magdalena L, Soccio Michelina, Luzi Francesca, Puglia Debora, Gazzano Massimo, Lotti Nadia, Manfredi Liliana B, Cyras Viviana P

机构信息

Instituto de Investigaciones en Ciencia y Tecnología de Materiales (INTEMA), Facultad de Ingeniería, Universidad Nacional de Mar del Plata-Consejo de Investigaciones Científicas y Técnicas (CONICET), Mar del Plata 7600, Argentina.

Department of Civil, Chemical, Environmental and Materials Engineering, University of Bologna, 40131 Bologna, Italy.

出版信息

Polymers (Basel). 2021 Sep 18;13(18):3171. doi: 10.3390/polym13183171.

Abstract

The overall migration behavior and the disintegration under composting conditions of films based on plasticized poly(lactic acid)/poly(3-hydroxybutyrate) (PLA-PHB) blends were studied, with the main aim of determining the feasibility of their application as biodegradable food packaging materials. The role of composition in the disintegration process was evaluated by monitoring the changes in physical and thermal properties that originated during the degradation process. PLA and PHB were blended in two weight ratios with 15 wt% of tributyrin, using a Haake mixer and then compression molded into ~150 μm films. We found that the migration level of all of the studied blends was below check intended meaning retained in non-polar simulants, while only plasticized blends could withstand the contact with polar solvents. The disintegration of all of the materials in compost at 58 °C was completed within 42 days; the plasticized PHB underwent the fastest degradation, taking only 14 days. The presence of the TB plasticizer speeded up the degradation process. Different degradation mechanisms were identified for PLA and PHB. To evaluate the annealing effect separately from bacteria degradation, the influence of temperature on materials in the absence of a compost environment was also studied. With the increasing time of degradation in compost, both melting temperature and maximum degradation temperature progressively decreased, while the crystallinity degree increased, indicating that the samples were definitely degrading and that the amorphous regions were preferentially eroded by bacteria.

摘要

研究了基于增塑聚乳酸/聚3-羟基丁酸酯(PLA-PHB)共混物的薄膜在堆肥条件下的整体迁移行为和降解情况,主要目的是确定其作为可生物降解食品包装材料应用的可行性。通过监测降解过程中产生的物理和热性能变化,评估了组成在降解过程中的作用。将PLA和PHB以两种重量比与15 wt%的三丁酸甘油酯混合,使用哈克混合器,然后压制成约150μm的薄膜。我们发现,所有研究的共混物在非极性模拟物中的迁移水平低于规定值,而只有增塑共混物能够耐受与极性溶剂的接触。所有材料在58℃堆肥中的降解在42天内完成;增塑的PHB降解最快,仅需14天。三丁酸甘油酯增塑剂的存在加快了降解过程。PLA和PHB的降解机制不同。为了单独评估退火效应与细菌降解的影响,还研究了在无堆肥环境下温度对材料的影响。随着在堆肥中降解时间的增加,熔点和最大降解温度逐渐降低,而结晶度增加,表明样品确实在降解,且无定形区域优先被细菌侵蚀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa2a/8472262/f53cfac1b597/polymers-13-03171-g001.jpg

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