Precipitation of Xylan from Agricultural Waste Using Acid and Alcohol to produce Bio-Polymer Film

Thivagaran Veeraiya, S. Harun, M. A. Manaf
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Abstract

Xylan from natural sources such as agricultural waste can be used to produce biopolymer packaging films and reduce the use up of petrochemical film. In this study, three different agricultural wastes (oil palm frond, sugarcane bagasse and corn stover) were used to extract xylan by using various alkaline and acidic solvents. From the analysis of the composition of oil palm fronds, it was found that oil palm frond contains (%) 30.8 ± 0.4 glucan, 19.3 ± 0.3 xylan and 18.4± 0.8 lignin. The percentage of extraction of xylan with sodium hydroxide is higher than sulfuric acid and dimethyl sulfoxide. Xylan extracted with dimethyl sulfoxide contains acetyl qualifiers and is suitable for producing carboxymethyl xylan. For xylan deposition, the use of a high concentration of ethanol gave a high xylan precipitation. Finally, the film with sorbitol as a plasticizing material showed low water absorption and high tensile strength of 4,855 gs-1m-1 Pa and 26 Mpa respectively.
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利用酸和醇从农业废弃物中沉淀木聚糖制备生物聚合物薄膜
来自农业废弃物等天然来源的木聚糖可用于生产生物聚合物包装薄膜,减少石化薄膜的使用。本研究以三种不同的农业废弃物(油棕叶、甘蔗渣和玉米秸秆)为原料,采用不同的碱性和酸性溶剂提取木聚糖。从油棕叶的成分分析,发现油棕叶中含有(%)30.8±0.4葡聚糖,19.3±0.3木聚糖和18.4±0.8木质素。氢氧化钠对木聚糖的提取率高于硫酸和二甲亚砜。二甲基亚砜提取的木聚糖含有乙酰基限定符,适于生产羧甲基木聚糖。对于木聚糖沉积,使用高浓度的乙醇可以得到高的木聚糖沉淀。最后,以山梨糖醇为塑化材料的薄膜吸水率低,抗拉强度高,分别为4855 gs-1m-1 Pa和26 Mpa。
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