Departamento de Ingeniería Química, Universidad de Sevilla, Facultad de Química, C/Profesor García González, 1, 41012 Sevilla, Spain.
J Sci Food Agric. 2011 Mar 15;91(4):625-33. doi: 10.1002/jsfa.4224.
Gluten has been investigated as a source for biodegradable polymeric materials because it is a renewable, available and low-cost raw material. The aim of this study was to evaluate the influence of some variables involved in the two stages of protein/plasticiser thermo-mechanical processing, where a mixture of glycerol and water was used as the plasticiser.
Gluten/glycerol/water blends mixed under different thermal conditions (adiabatic starting at 25 °C and isothermal at 60 and 90 °C) exhibited shear thinning capillary flow behaviour, where a marked increase in flow properties was obtained at the highest temperature. Two thermal events, glass transitions related to the plasticiser blend and gluten, were detected by Modulated Differential Scanning Calorimetry (MDSC) and Dynamic Mechanical Analysis (DMA) tests. Moderate moulding temperature led to less resistant materials showing higher ductility, whereas higher mixing and moulding temperatures led to bioplastics with higher mechanical properties.
A moulding temperature of 130 °C (close to the denaturation temperature) was found to be suitable for the thermomoulding process. In addition, the use of moderate mixing temperature seems to be convenient for those applications that required materials exhibiting high water absorption behaviour and suitable mechanical properties. Protein extractability results reflect the benefits of combining high shear and high temperature during processing to improve cross-linking reactions.
由于面筋是一种可再生、易得且低成本的原料,因此它被研究作为可生物降解聚合物材料的来源。本研究的目的是评估在蛋白质/增塑剂热机械加工的两个阶段中涉及的一些变量的影响,其中甘油和水的混合物用作增塑剂。
在不同热条件下(从 25°C 开始的绝热和 60 和 90°C 的等温)混合的面筋/甘油/水混合物表现出剪切稀化的毛吸管流动行为,在最高温度下获得了显著增加的流动性能。调制差示扫描量热法(MDSC)和动态力学分析(DMA)测试检测到与增塑剂混合物和面筋相关的两个热事件,玻璃化转变。适度的成型温度导致抗张强度较低的材料具有较高的延展性,而较高的混合和成型温度导致具有较高机械性能的生物塑料。
发现 130°C 的成型温度(接近变性温度)适用于热成型工艺。此外,对于需要表现出高吸水性和合适机械性能的材料的应用,使用适度的混合温度似乎很方便。蛋白质提取率的结果反映了在加工过程中结合高剪切和高温以改善交联反应的好处。