Synthesis and Characterization of Gambas (Luffa acutangula) Peel–Based Bioplastic Reinforced by Silica

Jasmine Rahma Kesuma Nirvana, E. Budiyati, A. Mulyaningtyas
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Abstract

Gambas (Luffa acutangula) plants contain a relatively high carbohydrate of 68.2%, whereas its peel contains 38.94% of carbohydrates and 20.6% of fibers. Gambas peels are rarely utilized and are typically discarded as food waste. Silica can be used as a filler and reinforcement material to improve the physical and mechanical properties. This study discussed synthesizing and characterizing bioplastics from Gambas peel reinforced by silica using polyvinyl alcohol (PVA) as a plasticizer with a mass of 8 g and 9 g and vinegar as a compatibilizer with volumes of 7 mL and 8 mL. The gelatinization temperature was adjusted at 85°C and 95°C. The synthesized bioplastics have improved mechanical characteristics due to the addition of PVA. The addition of vinegar as a compatibilizer revealed a homogenous mixture in surface morphological analysis. The highest performance of bioplastic samples was obtained from sample 7 with 8 mL vinegar, 9 g of PVA, and at 85°C of gelatinization temperature. The results showed that the maximum tensile strength reached 0.034 N/mm2, the elongation was 225%, the value of Young’s modulus was 0.015 N/mm2, the thermal stability reached 74.34% weight loss by heating up to 400°C, and the melting temperature reached at 220°C, the absorption of water was 37.61%, and the weight loss was 20.3% after ten days of soil burial.
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二氧化硅增强Gambas(丝瓜)果皮生物塑料的合成与表征
甘巴斯(Luffa acutangula)植物含有68.2%的相对较高的碳水化合物,而其果皮含有38.94%的碳水化合物和20.6%的纤维。甘巴斯的果皮很少被利用,通常被当作食物垃圾丢弃。二氧化硅可用作填料和增强材料,以改善材料的物理力学性能。本研究以质量为8 g和9 g的聚乙烯醇(PVA)为增塑剂,容量为7 mL和8 mL的醋为增塑剂,以二氧化硅增强甘巴斯果皮为原料合成生物塑料,并对其进行了表征。糊化温度分别调节为85℃和95℃。由于PVA的加入,合成的生物塑料的力学性能得到了改善。在表面形态分析中,醋作为增容剂的加入显示出均匀的混合物。样品7加入8ml醋,9g PVA,在85°C的糊化温度下,生物塑料样品的性能最高。结果表明:最大抗拉强度达到0.034 N/mm2,伸长率为225%,杨氏模量值为0.015 N/mm2,热稳定性达到74.34%,加热至400℃,熔融温度达到220℃,吸水率为37.61%,埋土10天后失重20.3%。
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审稿时长
17 weeks
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