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Sugar Alcohol-Based Deep Eutectic Solvents as Potato Starch Plasticizers

机译:糖醇基深共溶剂作为马铃薯淀粉增塑剂

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摘要

The aim of this work was to prepare sugar alcohol-based deep eutectic solvents (DES) and test them as starch plasticizers. Thermoplastic starch (TPS) films were obtained via a simple and convenient thermocompression method. Influence of starch/DES premixtures conditioning (preheating, storage time) on TPS properties was investigated. TPS/sorbitol (S)-based DES exhibited similar tensile strength (TS) (8.6 MPa) but twice higher elongation at the break (ε) (33%) when compared with TPS plasticized only with S. Extra treatment, i.e., heating or prolonged storage time, facilitated starch/DES plasticizing. Starch with selected DES was also extruded and the influence of preconditioning and extrusion rotational speed were subsequently studied on thermocompressed films. Extrusion at 100 rpm led to films with TS up to ca. 10 MPa and ε up to 52%. Some differences in film samples morphology obtained via two processing methods were observed. X-ray diffractograms revealed that extruded samples exhibited a V-type peak at 18.2°, with intensity depending on plasticizer total molecular size. Applied techniques (mechanical tests, XRD, Dynamic Mechanical Analysis (DMA), FTIR-Attenuated Total Reflection (ATR), and moisture sorption) indicated that S-based DES forms stronger interactions with starch than glycerol (G) only used as conventional plasticizer, thus leading to better mechanical properties and inhibited tendency to starch recrystallization (studied up to one year).
机译:这项工作的目的是制备糖醇基深共熔溶剂(DES),并将其作为淀粉增塑剂进行测试。热塑性淀粉(TPS)膜是通过简单便捷的热压方法获得的。研究了淀粉/ DES预混料的调理(预热,储存时间)对TPS性能的影响。与仅用S塑化的TPS相比,基于TPS /山梨醇(S)的DES表现出相似的拉伸强度(TS)(8.6 MPa),但断裂伸长率(ε)则高出两倍(33%)。延长储存时间,促进淀粉/ DES增塑。还挤出具有选择的DES的淀粉,并且随后在热压膜上研究了预处理和挤出转速的影响。以100 rpm的速度挤出时,其TS可达约3。 10 MPa和ε高达52%。观察到通过两种处理方法获得的膜样品形态的一些差异。 X射线衍射图显示,挤出的样品在18.2°处显示V型峰,强度取决于增塑剂的总分子大小。应用技术(机械测试,XRD,动态力学分析(DMA),FTIR增强的全反射(ATR)和水分吸收)表明,与仅用作常规增塑剂的甘油(G)相比,基于S的DES与淀粉形成更强的相互作用,因此,可获得更好的机械性能并抑制了淀粉重结晶的趋势(研究长达一年)。

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