Université de Nantes, Oniris, CNRS, GEPEA, UMR 6144, F- 44600 Saint Nazaire, France; UR1268 Biopolymères Interactions Assemblages, INRA, F-44316 Nantes, France; IBSM, Rue de la Géraudière, BP 71627, 44316 Nantes cedex 3, France.
UR1268 Biopolymères Interactions Assemblages, INRA, F-44316 Nantes, France; UMR408 Sécurité et Qualité des Produits d'Origine Végétale, INRA, Université Avignon, F-84000, Avignon, France; IBSM, Rue de la Géraudière, BP 71627, 44316 Nantes cedex 3, France.
Carbohydr Polym. 2020 Feb 15;230:115591. doi: 10.1016/j.carbpol.2019.115591. Epub 2019 Nov 13.
Maize starch was plasticized by glycerol, choline chloride ([Chol][Cl]) and ionic liquids (Choline acetate ([Chol][Ace]), 1-Ethyl-3-methylimidazolium Chloride ([EMIM][Cl]) and 1-Ethyl-3-methylimidazolium acetate ([EMIM][Ace]). Melt rheology at 120 °C was assessed with a twin-screw micro-compounder used for processing small quantities (8-10 g), and with a capillary rheometer with pre-shearing (Rheoplast). Qualitative agreement was found between shear viscosities obtained by both rheometry devices, showing the interest of the micro-compounder for screening of plasticizers' influence. The lower shear viscosity values were obtained in presence of [EMIM][Ace] whereas [Chol][Cl] led to the largest ones. Rather than processing induced macromolecular degradation, the glass transition temperature depressing effect of the plasticizers was found to better explain viscosity differences. This underlines the strong influence of the nature of the plasticizers on starch melt rheology. Finally, results from extensional viscosity shows the specific influence of [EMIM][Ace], suggesting that this plasticizer could be particularly relevant for thermoplastic starch processing.
采用甘油、氯化胆碱([Chol][Cl])和离子液体(醋酸胆碱([Chol][Ace])、1-乙基-3-甲基咪唑氯([EMIM][Cl])和 1-乙基-3-甲基咪唑醋酸盐([EMIM][Ace]))对玉米淀粉进行了塑化处理。在 120°C 下,使用双螺杆微型混合机(用于处理少量(8-10g)的加工)和带有预剪切的毛细管流变仪(Rheoplast)评估了熔融流变性能。两种流变仪得到的剪切粘度具有定性一致性,表明微型混合机在筛选增塑剂影响方面具有很大的优势。在存在[EMIM][Ace]的情况下,剪切粘度值较低,而[Chol][Cl]则导致剪切粘度值较大。增塑剂的玻璃化转变温度降低效应较好地解释了粘度差异,而不是加工引起的高分子降解。这突出了增塑剂性质对淀粉熔体流变性的强烈影响。最后,拉伸粘度的结果表明[EMIM][Ace]具有特殊的影响,表明这种增塑剂可能特别适用于热塑性淀粉的加工。