热熔碎屑生物质和表面改性生物废弃物椰壳纤维增强生物复合材料--将废弃物转化为有用产品。

IF 3.2 4区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Biopolymers Pub Date : 2024-07-19 DOI:10.1002/bip.23616
Justin Abraham Sajin, Vaithilingam Shanmugavelayutham Sreenivasan, Brailson Mansingh Bright, Murugan Sundaram Senthil Saravanan, Trijo Tharayil, Raveendra Kurup Anish, Manikandan Natarajan, Govindarajan Bharathiraja, Joseph Selvi Binoj
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引用次数: 0

摘要

聚合物复合材料以其轻质和特殊的机械特性而闻名。本研究对经过氢氧化钠(NaOH)处理的椰壳纤维(一种农业残留物)与白蚁屑粉末(一种生物残留物)填充在聚酯基体中进行了研究,以探讨其在轻质结构应用中的可能性。采用压缩成型和 NaOH 处理的椰壳纤维增强杂化聚合物复合材料(TCRHPC)制作了复合材料样品,其中 40 wt% 为处理过的椰壳纤维,1、2、3 和 4 wt% 为白蚁碎屑粉末。TCRHPC样品的机械性能、水俘获性能、摩擦学性能和热性能受白蚁碎屑粉末重量百分比的影响。白蚁碎屑含量为 3 wt%的 TCRHPC 样品具有优异的力学性能,其拉伸(41.6%)、弯曲(28.57%)、冲击(43.7%)和硬度(18.84%)性能均有所提高。由于具有完美的水俘获性,且在普通水(0.017 克)、海水(0.015 克)和 NaOH 溶液(0.010 克)中的重量增加较少,热稳定性高达 238°C 的相同复合材料样品的磨损质量也减少了 5.27%。相反,复合材料样品中的填料团聚和异质分散损害了含有 4 wt% 白蚁碎屑粉末的 TCRHPC 的热机械特性。借助 TCRHPC 样品的断裂图像,对复合材料中聚酯、处理过的棕纤维和白蚁碎屑粉末之间的粘合情况进行了评估。结果表明,TCRHPC 材料非常适合用于要求较轻重量的支撑结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermite frass biomass and surface modified biowaste coir fiber reinforced biocomposites-Conversion of waste to useful products.

Thermite frass biomass and surface modified biowaste coir fiber reinforced biocomposites-Conversion of waste to useful products.

Polymer composites are known for its light weight and specific mechanical characteristics. This study examines sodium hydroxide (NaOH)-treated coir fiber, an agro-leftover, stuffed in a polyester matrix with termite frass powder, a bio-leftover for possible use in light-weight structural applications. Composite samples were made using compression molding and NaOH-treated coir fiber reinforced hybrid polymer composite (TCRHPC) with 40 wt% treated coir fiber and 1, 2, 3, and 4 wt% termite frass powder. TCRHPC samples mechanical, water captivation, tribological, and thermal properties were affected by termite frass powder wt%. The TCRHPC sample with 3 wt% termite frass powder has excellent mechanical properties, which improved by tensile (41.6%), flexural (28.57%), impact (43.7%), and hardness (18.84%) properties. With perfect water captivation and low weight increases in normal water (0.017 g), seawater (0.015 g), and NaOH solution (0.010 g), the identical composite sample with thermal stability up to 238°C also reduced wear mass by 5.27%. Conversely, filler agglomeration and heterogeneous dispersion in composite sample impair thermo-mechanical characteristics of TCRHPC containing 4 wt% termite frass powder. The bonding among polyester, treated coir fiber, and termite frass powder in composites were appraised with the aid of fractographic images of TCRHPC samples. The results show that TCRHPC material suits well for support structures requiring lesser weight.

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来源期刊
Biopolymers
Biopolymers 生物-生化与分子生物学
CiteScore
5.30
自引率
0.00%
发文量
48
审稿时长
3 months
期刊介绍: Founded in 1963, Biopolymers publishes strictly peer-reviewed papers examining naturally occurring and synthetic biological macromolecules. By including experimental and theoretical studies on the fundamental behaviour as well as applications of biopolymers, the journal serves the interdisciplinary biochemical, biophysical, biomaterials and biomedical research communities.
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