Synthesis and Characterization of Bioplastic from Macroalgae Padina australis

Lily Surayya Eka Putri, N. Saridewi, Sabrina Farah
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Abstract

Synthetic plastics are one of the more significant contributors to waste in the environment. Bioplastic is a type of plastic that is environmentally friendly because it is made from biomass. In this study. brown macroalgae. Padina australis. is one of the potential raw materials found in large quantities in Indonesian waters and used to produce bioplastics with filtration technique. The aim of this study was to synthesis bioplastics using P. australis alginate with glycerol plasticizer.The alginate macroalgae were mixed with glycerol as a plasticizer in the following proportions: 1:15. 1:25. 2:15. and 2:25. with the quality determined through tensile strength measurements. water solubility. and degradation time. On day 12. the tensile strength of P. australis bioplastic was 3.24-7.33 MPa. the water solubility was 61.79-65.19%. and the biodegradability rate was 0.1-20.0%. When the macroalgae alginate and glycerol formulation was 2:25. the best bioplastic film produced had a tensile strength of 7.33 MPa and a water solubility of 61.79%. which was lower than the Indonesia National Standard number 7818/2016 for bioplastic products. P. australis. however. has the potential to be a promising alternative bioplastic product that contributes to the reduction of petroleum-based plastic pollution in the environment. Furthermore. as a preliminary study. it will be improved to meet industrial standards or find the products that match these characteristics.
从大型藻类 Padina australis 中合成生物塑料并确定其特性
合成塑料是造成环境废物的重要因素之一。生物塑料是一种环保塑料,因为它是由生物质制成的。在这项研究中,棕色大型藻类 Padina australisPadina australis 是印度尼西亚水域中发现的大量潜在原材料之一,可用于利用过滤技术生产生物塑料。本研究的目的是使用 P. australis 藻酸盐与甘油增塑剂合成生物塑料。藻酸盐大型海藻与作为增塑剂的甘油按以下比例混合:1:15.通过拉伸强度测量、水溶性和降解时间来确定质量。第 12 天,P. australis 生物塑料的拉伸强度为 3.24-7.33 兆帕,水溶性为 61.79-65.19%,生物降解率为 0.1-20.0%。当大型藻类海藻酸盐和甘油的配比为 2:25 时,生产出的最佳生物塑料薄膜的拉伸强度为 7.33 兆帕,水溶性为 61.79%,低于印度尼西亚生物塑料产品国家标准 7818/2016。然而,P. australis 有潜力成为一种有前途的生物塑料替代产品,为减少环境中的石油基塑料污染做出贡献。此外,作为一项初步研究,它将得到改进,以符合工业标准或找到符合这些特性的产品。
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
CiteScore
0.80
自引率
0.00%
发文量
15
审稿时长
24 weeks
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