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首页> 外文期刊>Frontiers in Materials >Soil Biodegradation of Unidirectional Polyhydroxybutyrate-Co-Valerate (PHBV) Biocomposites Toughened With Polybutylene-Adipate-Co-Terephthalate (PBAT) and Epoxidized Natural Rubber (ENR)
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Soil Biodegradation of Unidirectional Polyhydroxybutyrate-Co-Valerate (PHBV) Biocomposites Toughened With Polybutylene-Adipate-Co-Terephthalate (PBAT) and Epoxidized Natural Rubber (ENR)

机译:用聚丁烯 - 己二酸丁二醇酯(PBAT)和环氧化天然橡胶(eNOXI化天然橡胶(ENR)加强单向聚羟基丁酸酯 - 共 - 戊酸酯(PHBV)生物复合物的土壤生物分子

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The detrimental impact of discarded plastics on the environment has become of increasing concern and this has led to the development of environmentally friendly ‘green’ polymers. PHBV is one such green polymer that offers biodegradability and renewability, however its mechanical performance is quite limited. This can be improved by reinforcement with natural fibres to form green composites, which offer better mechanical properties while retaining biodegradability. There are, however, few studies examining the biodegradation of toughened PHBV composites. In this work, the biodegradation properties of PHBV/30 vol.% unidirectional flax composites both untoughened and toughened with PBAT and ENR, were studied. Composites were prepared by compression moulding PHBV powder interleaved with unidirectional flax fabric. The toughening agents were cryoground and mixed with the PHBV powder prior to moulding. Biodegradation was conducted in a natural outdoor soil environment and biodegradability was evaluated through weight loss analysis, optical microscopy and electron microscopy. The biodegradability of neat PHBV was minimal but was increased markedly by addition of flax fibres. The toughened composites showed a faster degradation rate than untoughened PHBV/flax, with PHBV/ENR/flax composites having the highest rate likely due to a specific strain of bacteria found worldwide in soil that attacks natural rubber. The biodegradation properties of the composites were superior to those of conventional plastics used in applications such as computer and mobile phone casings, which indicates potential suitability of this class of materials for these applications.
机译:废弃塑料对环境的不利影响已成为越来越关注的问题,这导致了环保的“绿色”聚合物的发展。 PHBV是一种这种绿色聚合物,可提供生物降解性和可再生性,但其机械性能非常有限。通过用天然纤维加固以形成绿色复合材料,可以改善这,其提供更好的机械性能,同时保持生物降解性。然而,有很少的研究检查增韧PHBV复合材料的生物降解。在这项工作中,研究了PHBV / 30体积的生物降解性质。研究了PBAT和ENR强化和增韧的单向亚麻复合材料的%单向亚麻复合材料。通过压缩模塑PHBV粉末与单向亚麻织物交错来制备复合材料。钢化剂是Cryoground并在模塑之前与PHBV粉末混合。生物降解在天然的户外土壤环境中进行,通过减肥分析,光学显微镜和电子显微镜评估生物降解性。通过添加亚麻纤维,纯pHBV的生物降解性最小,但显着增加。增韧复合材料显示出比不合作的PHBV /亚麻的降解率更快,PHBV / EN /亚麻复合材料具有最高速率,其可能由于全球攻击天然橡胶的土壤中发现的特异性细菌。复合材料的生物降解性质优于应用于计算机和移动电话壳体的常规塑料的性质,这表明这类材料对于这些应用的潜在适用性。

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