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Transesterification of sago starch and waste palm cooking oil in densified CO2

机译:致密二氧化碳中Sago淀粉和废棕榈料油的酯交换

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In this work, the synthesis of biodegradable and yet renewable thermoplastics materials through a transesterification reaction of sago starch and waste palm cooking oil (WPO) in densified CO2 as the solvent is reported. The aim of this research is to investigate the potential used of sago starch and WPO as raw materials in the thermoplastics starch synthesis. The starch esters was successfully synthesized using sago starch and WPO as reagent in densified CO2 as shown from the presence of carbonyl group (C=O, 1743 cm~(-1)) in the FT-IR spectra coupled with the presence of the proton (~1H-NMR) of the fatty acid in the starch backbone (0.8 - 2 ppm). The product crystallinity decreases as shown in XRD results and resulting with a change in the thermal properties (melting and crystalline temperature) of the products. In addition, the products show a different granular morphology and a higher hydrophobicity compared with native sago starch. This research shows the potential used of sago starch and WPO in the thermoplastics starch synthesis and opens a new perspective on the product application.
机译:在这项工作中,报道了在诸如致密化二氧化碳中的Sago淀粉和废棕榈油(WPO)的酯交换反应作为溶剂的可生物降解和可再生热塑性塑料材料的合成。该研究的目的是研究热塑性塑料淀粉合成中Sago淀粉和WPO作为原料的潜力。使用Sago淀粉和WPO在致密化CO 2中成功地合成淀粉酯,如羰基(C = O,1743cm〜(-1)中的羰基(C = O,1743cm〜(-1))与质子的存在相结合(〜1H-NMR)淀粉骨架(0.8-2ppm)中的脂肪酸。产品结晶度如XRD结果所示降低,并导致产品的热性质(熔化和结晶)的变化。此外,与天然Sago淀粉相比,该产品显示出不同的颗粒形态和较高的疏水性。本研究表明,在热塑性塑料淀粉合成中使用SAGO淀粉和WPO的潜力,并在产品应用上打开了一种新的视角。

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