含有植物来源多功能物质的可生物降解聚酯共混物

Q3 Materials Science
M. Latos‐Brozio, A. Masek
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引用次数: 0

摘要

该研究旨在开发基于生物可降解聚合物(聚乳酸PLA和聚(羟基丁酸酯)PHB的共混物)和植物源性添加剂的聚酯材料。叶绿素、-胡萝卜素、单宁酸和比较品红keyplastm染料等物质作为稳定剂和染料加入聚合物共混物中。样品进行了热氧化和紫外老化。根据力学性能的变化,计算了复合材料的老化系数K。此外,还对颜色变化进行了分析。样品的热转变也通过差示扫描量热法来确定,以确定玻璃化转变温度,材料的熔化和结晶,以及比较聚合物成分的抗热氧化性。叶绿素、-胡萝卜素和单宁酸增加PLA/PHB共混物的抗热氧化性(DSC分析中氧化温度越高,表明抗热氧化性越高)。含有叶绿素、-胡萝卜素和品红有机染料的材料具有较高的老化系数,因此具有较好的抗降解能力。含有-胡萝卜素的样品在热和紫外线老化的影响下显示出明显的颜色变化。关注样品老化时间短,这可能不足以分析聚合物成分的降解过程和植物稳定物质的影响。在未来,材料的老化时间可以延长,并可以使用其他类型的降解因素。实际意义包括使用PLA/PHB共混物作为包装材料的可能性。添加植物来源的物质可以获得色彩丰富,视觉上吸引人的材料,类似于专用于聚合物的品红染料。此外,添加剂可以控制样品的可降解性。该研究的独创性在于制备PLA/PHB聚酯共混物,并添加植物物质作为多功能剂(稳定剂和染料)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biodegradable polyester blends containing multifunctional substances of plant origin
The research aimed to develop polyester materials based on biodegradable polymers (blends of polylactide PLA and poly(hydroxybutyrate) PHB) with additives of plant origin. Substances such as chlorophyll, -carotene, tannic acid and comparative Magenta KeyplastTM dye have been added as stabilisers and dyes of polymer blends.The samples were subjected to thermooxidation and UV aging. Based on changes in mechanical properties, the ageing coefficients K of the composition were calculated. In addition, the colour change was analysed. Thermal transformations of the samples were also determined by differential scanning calorimetry in order to determine the glass transition temperature, melting and crystallisation of materials, as well as to compare the resistance to thermal oxidation of polymeric composition.Chlorophyll, -carotene and tannic acid increased resistance to thermal oxidation of PLA/PHB blends (higher oxidation temperatures in the DSC analysis, indicating a higher resistance to thermal oxidation). Materials with chlorophyll, -carotene and Magenta organic dye had higher ageing coefficientsand, thus, better resistance to degradation. The sample containing -carotene showed a significant colour change under the influence of heat and UV ageing.Concerned the short ageing time of the samples, which may have been insufficient to analyse the degradation process of polymer compositions and the effects of plant stabilising substances. In the future, the ageing time of materials can be extended, and other types of degrading factors can be used.Practical implications include the possibility of using PLA/PHB blends as packaging materials. Adding substances of plant origin allowed obtaining colorful, visually attractive materials, similar to the Magenta dye dedicated to using in polymers. Moreover, the additives allowed control of the degradability of the samples.The originality of the research was the preparation of PLA/PHB polyester blends with the addition of plant substances as multifunctional agents (stabilisers and dyes).
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来源期刊
Archives of materials science and engineering
Archives of materials science and engineering Materials Science-Materials Science (all)
CiteScore
2.90
自引率
0.00%
发文量
15
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