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Tacca Leontopetaloides Starch: New Sources Starch for Biodegradable Plastic

机译:Tacca Leontopetaloides淀粉:用于可生物降解的塑料的新来源淀粉

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Thermoplastic starch (TPS) based plastic is a promising material for solving various environmental issues. Therefore, this research was conducted to investigate the potential of Tacca leontopetaloides starch plasticized using glycerol and crude palm oil (CPO) as an aid in plastic development. Fourier Transform Infrared (FTIR) analysis of CPO-TPS shows the samples have a lower limit since the bends undergo less disruption after degradability test was performed. The functional group of glycerol TPS was 100% disrupted after degradation test where no peaks observed by FTIR. The thermal decomposition of TPSs analyzed by using Thermogravimetric Analysis (TGA) showed Glycerol TPS gave similar thermal stability behavior as conventional TPS. However, glycerol TPS has faster degradation rate since the samples started to degrade at low temperature 70 °C compared with conventional bio-plastic at 110 °C. This finding shows the benefit of a new renewable source of starch as a bio-plastic. This is fiscible since starch is not a staple food for Malaysia population.
机译:热塑性淀粉(TPS)基塑料是解决各种环境问题的有希望的材料。因此,进行了该研究以研究使用甘油和原油棕榈油(CPO)作为塑性发育的辅助塑化的Tacca Leontopetaloides淀粉的潜力。 CPO-TPS的傅里叶变换红外(FTIR)分析显示样品具有下限,因为在进行可降解性试验后弯曲较小的破坏。在降解试验后,甘油TP的官能团100%被破坏,其中FTIR没有观察到峰。通过使用热重分析(TGA)分析的TPS的热分解显示甘油TPS具有与常规TPS相似的热稳定性行为。然而,甘油TP具有更快的降解速率,因为在110℃下与常规生物塑料相比,样品在低温70℃下开始降解。这一发现显示了新的可再生淀粉来源作为生物塑料的益处。这是对马来西亚人群的淀粉不是主食来堆积。

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