A case study on the rotomolding behavior of black tea waste and bio-based high-density polyethylene composites: Do active compounds in the filler degrade during processing?

IF 5.3 Q2 MATERIALS SCIENCE, COMPOSITES
Mateusz Barczewski , Zaida Ortega , Paweł Piaskowski , Joanna Aniśko , Paulina Kosmela , Joanna Szulc
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Abstract

This study verified the possibility of using waste material from the food industry (black tea) as functional filler of rotomolded biobased high-density polyethylene-based composites. As part of the experimental work, the influence of the materials preparation, i.e., dry blending versus twin-screw extrusion, on the effectiveness of the stabilizing antioxidant effect of the black tea was analyzed. The aim of the work was to verify whether, despite the initial degradation of the structure of the lignocellulosic filler, it would be possible to keep its antioxidant capacity and the stabilizing effect on the polyethylene matrix. The research showed that the filler allowed to stabilize the polymeric matrix during the rotomolding process, despite the appearance of numerous defects in the form of pores and a reduction in mechanical properties, more significant for composites prepared by dry blending, obtaining elastic modulus drops of about 50 %. Furthermore, the pre-processing step by melt mixing results in a significant improvement of the composite's thermo-oxidation stability, with increases in the oxidation induction time (OIT), from 25 min for the HDPE to over 70 min for composites with 5 % black tea, and improved rheological behavior, preventing the crosslinking of the matrix, indicative of its thermo-oxidative degradation. The tea brewing process caused the decrease of antioxidant activity of the filler; however, it did not significantly affect the antioxidant behavior, maintaining its influence on the polymeric matrix when the material is prepared via twin-screw compounding, which was proved to provide better stability, increasing OIT by approximately 20 min later when compared to dry blending.

关于红茶废料和生物基高密度聚乙烯复合材料滚塑行为的案例研究:填料中的活性化合物是否会在加工过程中降解?
这项研究验证了使用食品工业废料(红茶)作为滚塑生物基高密度聚乙烯基复合材料功能填料的可能性。作为实验工作的一部分,分析了材料制备(即干混与双螺杆挤压)对红茶抗氧化稳定效果的影响。这项工作的目的是验证,尽管木质纤维素填料的结构发生了初步降解,但是否仍能保持其抗氧化能力和对聚乙烯基体的稳定作用。研究表明,在滚塑过程中,尽管出现了许多气孔形式的缺陷,机械性能也有所下降,但填料仍能稳定聚合物基体。此外,熔融混合的预处理步骤显著提高了复合材料的热氧化稳定性,氧化诱导时间(OIT)从高密度聚乙烯的 25 分钟增加到含有 5%红茶的复合材料的 70 分钟以上,流变性能也得到改善,防止了基体的交联,这表明其热氧化降解。茶叶冲泡过程会导致填料的抗氧化活性降低;但对抗氧化行为的影响并不显著,在通过双螺杆共混制备材料时仍能保持对聚合物基体的影响,事实证明这种方法具有更好的稳定性,与干混法相比,OIT 增加了约 20 分钟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
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