Unidad de Desarrollo Tecnológico, Universidad de Concepción, Avda. Cordillera 2634, Coronel, Chile.
Centro de Investigación de Polímeros Avanzados (CIPA), Beltran Mathiew 224, Concepción, Chile.
Carbohydr Polym. 2014 Nov 4;112:677-85. doi: 10.1016/j.carbpol.2014.06.046. Epub 2014 Jun 28.
Starch isolated from non-edible Aesculus hippocastanum seeds was characterized and used for preparing starch-based materials. The apparent amylose content of the isolated starch was 33.1%. The size of starch granules ranged from 0.7 to 35 μm, and correlated with the shape of granules (spherical, oval and irregular). The chain length distribution profile of amylopectin showed two peaks, at polymerization degree (DP) of 12 and 41-43. Around 53% of branch unit chains had DP in the range of 11-20. A. hippocastanum starch displayed a typical C-type pattern and the maximum decomposition temperature was 317 °C. Thermoplastic starch (TPS) prepared from A. hippocastanum with glycerol and processed by melt blending exhibited adequate mechanical and thermal properties. In contrast, plasticized TPS with glycerol:malic acid (1:1) showed lower thermal stability and a pasty and sticky behavior, indicating that malic acid accelerates degradation of starch during processing.
从非食用欧洲七叶树种子中分离出的淀粉进行了特性描述,并用于制备淀粉基材料。分离出的淀粉的直链淀粉含量为 33.1%。淀粉颗粒的大小范围为 0.7 至 35μm,并与颗粒的形状(球形、椭圆形和不规则形)相关。支链淀粉的链长分布曲线呈现出两个峰,聚合度(DP)分别为 12 和 41-43。约 53%的支链单元链的 DP 在 11-20 范围内。欧洲七叶树淀粉显示出典型的 C 型模式,最大分解温度为 317°C。用甘油制备的、通过熔融共混加工的欧洲七叶树淀粉热塑性淀粉(TPS)表现出足够的机械和热性能。相比之下,用甘油:苹果酸(1:1)增塑的 TPS 表现出较低的热稳定性和糊状粘性行为,表明苹果酸在加工过程中加速了淀粉的降解。