Study and Characterization of Biofoam from Bagasse (Saccharum officinarum L.) with Chitosan Addition

R. Rismawati, Paulina Taba, Fahruddin Fahruddin
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Abstract

The increase in styrofoam waste can cause environmental pollution, therefore efforts are required to reduce the use of styrofoam. One of them is by replacing it with biofoam made from agricultural industry waste such as bagasse because if this garbage is not used, it may cause environmental issues. Bagasse has a potential to be utilized as biofoam. This research aims to extract cellulose from bagasse through delignification and bleaching processes, as well as synthesize and characterize biofoam using cellulose from bagasse with the addition of chitosan variations of 2, 3.5, 5, and 6.5 g. The stages of this research are the extraction of cellulose from bagasse waste with FTIR and XRD analysis, making biofoam and biofoam characterization tests. The results of cellulose extraction from bagasse are O-H, C-H and C-O functional groups that indicate the presence of cellulose. In XRD analysis, the cel - lulose sample has a crystallinity index of 70.74%. Biofoam based on sugarcane bagasse cellulose with the addition of 2 g chitosan has the best characterization, which has a density of 1.23 g/mL, with a water absorption value of 46.03% at 24 hours immersion and biodegradability of 20.68% for 28 days.
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添加壳聚糖的甘蔗渣(Saccharum officinarum L.)生物泡沫的研究与表征
发泡胶垃圾的增加会造成环境污染,因此需要努力减少发泡胶的使用。其中之一就是用蔗渣等农业产业废弃物制成的生物泡沫塑料取而代之,因为如果不使用这些垃圾,可能会造成环境问题。甘蔗渣具有用作生物泡沫塑料的潜力。本研究旨在通过脱木素和漂白工艺从甘蔗渣中提取纤维素,并利用甘蔗渣中的纤维素合成生物泡沫,同时添加 2、3.5、5 和 6.5 克的壳聚糖,并对生物泡沫进行表征。从甘蔗渣中提取纤维素的结果显示,O-H、C-H 和 C-O 官能团表明存在纤维素。在 XRD 分析中,纤维素样品的结晶度指数为 70.74%。以甘蔗渣纤维素为基础并添加 2 克壳聚糖的生物泡沫具有最佳特性,其密度为 1.23 克/毫升,浸泡 24 小时后的吸水率为 46.03%,28 天的生物降解率为 20.68%。
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