Production of Biodegradable Straw from Banana Peel

I. Putu, Karang Adisurya, M. Affan, Fajar Falah
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Abstract

This study aims to determine the effect of enhancement in stirring temperature (75oC, 80oC, 85oC) and type of plasticizer (glycerol and sorbitol) on the characteristics of biodegradable straw from ambon banana peel waste and to compare them with the characteristics of conventional boba’s straws. Methods used in this study were tensile strength, elongation, biodegradation, and water uptake tests. The result showed enhancement of stirring temperature and type of plasticizer did not significantly affect the characteristics of biodegradable straws from ambon banana peel waste (p > 0.05). Enhancement of stirring temperature will increase the tensile strength and water resistance value, but decreased elongation and biodegradation value because enhancement of stirring temperature will decrease the water content and increase the molecular density. In addition, plasticizer will increase elongation value and level of biodegradation, but decrease tensile strength and water resistance values. Plasticizer has the ability to increase the elasticity of polymers, as well as increase water absorption because it has hydrophilic hydroxyl groups. Biodegradable straw that have been developed has a colour of black, being rigid, with a length of 13 cm and an external diameter of 1.2 cm. The colour and external diameter of biodegradable boba’s straw looks similar with conventional boba’s straw but shorter in length. Therefore, ambon banana peel waste was promising to be used as an alternative material for biodegradable straw in the future.
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以香蕉皮为原料生产可生物降解秸秆
本研究旨在确定提高搅拌温度(75℃、80℃、85℃)和增塑剂类型(甘油和山梨醇)对活性炭香蕉皮废弃物生物降解秸秆特性的影响,并与常规香蕉皮秸秆特性进行比较。本研究使用的方法是抗拉强度、伸长率、生物降解和吸水试验。结果表明,提高搅拌温度和增塑剂种类对香蕉皮废弃物生物降解秸秆的性能影响不显著(p > 0.05)。提高搅拌温度会提高拉伸强度和水阻值,但会降低延伸率和生物降解值,因为搅拌温度的提高会降低含水量,增加分子密度。此外,增塑剂会提高延伸值和生物降解水平,但会降低拉伸强度和耐水性值。增塑剂有能力增加聚合物的弹性,以及增加吸水性,因为它有亲水性羟基。生物可降解的稻草颜色为黑色,坚硬,长度为13厘米,外径为1.2厘米。可生物降解的波巴吸管的颜色和外径与传统的波巴吸管相似,但长度更短。因此,安木香蕉皮废弃物在未来有望作为可生物降解秸秆的替代材料。
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