基于稻草纤维素和聚乙烯醇的生物降解泡沫的物理和机械特性分析

Helmi Haiqal, Mulda Muldarisnur
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引用次数: 0

摘要

以聚乙烯醇为结合基质,对稻秆纤维素制备的可生物降解泡沫材料进行了物理力学性能分析研究。这项研究的目的是生产一种替代被认为是不环保和有害健康的聚苯乙烯泡沫塑料。稻草纤维与聚乙烯醇的混合质量比(%)分别为40:20%、30:30%、20:40%、50:10%,纤维通过80目筛的粒度不同,稻草纤维与聚乙烯醇的组成也不同。FT-IR表征结果表明,生物泡沫中官能团含量最高的是碳(C),与传统生物泡沫中碳(C)和氢(H)元素的含量相对应,生物泡沫的抗拉强度值在18.11 MPa的比较分数(20:40%)处最高。生物泡沫吸水率在处理后样品为0.8928%,未处理样品为1.1928%的分数比(50:10%)下最高。在分数比(40:20%)为0.78%的情况下,生物泡沫的含水率与常规生物泡沫的含水率最接近。在处理后的样品中,降解率最高,相对分数(50:10%)为0.04237%/天,未处理的样品为0.06403%/天。研究结果表明,所得生物泡沫不含有害物质。通过FT-IR测试对官能团进行鉴定后,生物泡沫的抗拉强度仍未达到SNI 7188.7: 2016生物塑料标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analisis Sifat Fisis dan Mekanik Biodegradable Foam Berbahan Dasar Selulosa Jerami Padi dan Polivinyl Alcohol
Research has been carried out on analyzing the physical and mechanical properties of biodegradable foam made from rice straw cellulose with a polyvinyl alcohol binding matrix. This study aims to produce a substitute for styrofoam, which is considered not environmentally friendly and harmful to health. The composition of straw fiber and polyvinyl alcohol was varied by the mass ratio of the mixture of rice straw fiber and PVA (%) 40:20%, 30:30%, 20:40%, 50:10%, with the size of the fiber passing through the 80 mesh sieve. The results of the characterization using FT-IR showed that the highest content of functional groups was carbon (C), which corresponds to the content of conventional biofoam, which consists of the elements carbon (C) and hydrogen (H). The highest biofoam tensile strength value is in the comparison fraction (20:40%) of 18.11 MPa. The highest percentage of biofoam water absorption was obtained in the fraction ratio (50:10%) of 0.8928% in the treated sample and 1.1928% in the untreated sample. The percentage of biofoam water content closest to conventional biofoam water content is obtained at a fraction ratio (40:20%) of 0.78%. The highest degradation rate was obtained in samples with a comparative fraction (50:10%) of 0.04237%/day in treated and 0.06403%/day in untreated samples. The results of this study stated that the resulting biofoam did not contain harmful substances. After identifying the functional groups using the FT-IR test, the tensile strength of biofoam still did not meet the SNI 7188.7: 2016 bioplastic standard.
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