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首页> 外文期刊>Journal of Polymers and the Environment >Dynamic Mechanical Behavior and Thermal Characterization of Biofilms Based on Starch Modified by Fungi Isolates
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Dynamic Mechanical Behavior and Thermal Characterization of Biofilms Based on Starch Modified by Fungi Isolates

机译:真菌分离物修饰的淀粉生物膜的动态力学行为和热表征

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摘要

Starches modified by Ophiostoma spp. have been investigated to develop bio-materials with enhanced mechanical and physical properties for thermoplastic applications. In this study, glass transition temperature (T_g) of modified starches was investigated in both dynamic mechanical analyzer (DMA) and differential scanning calorimeter (DSC) to detect molecular changes in the starch's structure. Overall, two thermal transitions were observed in modified starches, as opposed to one in their native counterparts. Scanning electron microscopy of granular modified starch indicated visible damages and internal structural perturbations in addition to occlusion of granular pores by extraneous materials owing to possible enzymatic degradation and production of secondary metabolites. Modified starches registered two-fold improvement in storage modulus as compared to that of native starches. From the study of second derivative of the mass loss against temperature, two thermal transitions were also identified in modified starches. X-ray diffraction analyses showed that crystalline regions of the starch granules remained intact after the modification. It is proposed that the second phase transition potentially corresponds to modified amylose fractions and/or exopolysac-charides produced by the fungi.
机译:由Ophiostoma spp修饰的淀粉。已研究开发出具有增强的机械和物理性能的热塑性生物材料。在这项研究中,在动态力学分析仪(DMA)和差示扫描量热仪(DSC)中研究了改性淀粉的玻璃化转变温度(T_g),以检测淀粉结构中的分子变化。总体而言,在改性淀粉中观察到两个热转变,而在天然淀粉中观察到一个。颗粒改性淀粉的扫描电子显微镜表明,由于可能的酶促降解和次级代谢产物的产生,外来物质对颗粒孔的堵塞以及可见的损害和内部结构的扰动。与天然淀粉相比,改性淀粉的储能模量提高了两倍。根据质量损失对温度的二阶导数的研究,改性淀粉中还发现了两个热转变。 X-射线衍射分析表明,改性后淀粉颗粒的晶体区域保持完整。建议第二相变可能对应于由真菌产生的修饰的直链淀粉级分和/或胞外多糖。

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