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(Bio)Degradable Polymeric Materials for Sustainable Future—Part 3: Degradation Studies of the PHA/Wood Flour-Based Composites and Preliminary Tests of Antimicrobial Activity

机译:(可生物降解的高分子材料实现可持续的未来—第3部分:PHA /木粉基复合材料的降解研究和抗菌活性的初步测试

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摘要

The need for a cost reduction of the materials derived from (bio)degradable polymers forces research development into the formation of biocomposites with cheaper fillers. As additives can be made using the post-consumer wood, generated during wood products processing, re-use of recycled waste materials in the production of biocomposites can be an environmentally friendly way to minimalize and/or utilize the amount of the solid waste. Also, bioactive materials, which possess small amounts of antimicrobial additives belong to a very attractive packaging industry solution. This paper presents a study into the biodegradation, under laboratory composting conditions, of the composites that consist of poly[( )-3-hydroxybutyrate- -4-hydroxybutyrate)] and wood flour as a polymer matrix and natural filler, respectively. Thermogravimetric analysis, differential scanning calorimetry and scanning electron microscopy were used to evaluate the degradation progress of the obtained composites with different amounts of wood flour. The degradation products were characterized by multistage electrospray ionization mass spectrometry. Also, preliminary tests of the antimicrobial activity of selected materials with the addition of nisin were performed. The obtained results suggest that the different amount of filler has a significant influence on the degradation profile.
机译:降低源自(生物)可降解聚合物的材料的成本的需求迫使研究开发成具有较便宜填料的生物复合材料。由于可以使用在木材产品加工过程中产生的消费后木材来制备添加剂,因此在生物复合材料的生产中重复使用回收的废料可以是减少和/或利用固废量的环保方式。而且,具有少量抗微生物添加剂的生物活性材料属于非常有吸引力的包装工业解决方案。本文介绍了在实验室堆肥条件下,分别由聚[()-3-羟基丁酸酯--4-羟基丁酸酯)]和木粉作为聚合物基质和天然填料组成的复合材料的生物降解的研究。使用热重分析,差示扫描量热法和扫描电子显微镜来评估所获得的具有不同数量木粉的复合材料的降解过程。通过多级电喷雾电离质谱法对降解产物进行表征。另外,还对加入乳链菌肽的所选材料的抗菌活性进行了初步测试。获得的结果表明,不同量的填料对降解曲线有重大影响。

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