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Effects Of Concentration On Nanostructural Images And Physical Properties Of Gelatin From Channel Catfish Skins

机译:浓度对Channel鱼皮肤明胶的纳米结构图像和物理性质的影响

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摘要

Physical properties are crucial to gelatin utilization and the physical properties are determined by structure. Therefore, it is important to investigate the nanostructure and physical properties of gelatin over the full range of concentrations which are widely applied in research and industry. Nanostructure of gelatin can be investigated by atomic force microscopy (AFM). However, it is hard to obtain reliable AFM images of gelatin with high concentrations (1-6.67%). In this study, methods for imaging gelatin with high concentration were explored and developed, which mainly included six steps. Then the relationships among concentration, nanostructure and physical property of gelatin extracted from channel catfish skins (Ictalurus punctatus) were studied. The high-resolution AFM images show fibril structure in gelatins with concentrations from 1% to 6.67%. However, in low concentrations (< 1%), most nano-structures of gelatin were spherical aggregates and fibril structure only existed occasionally. Correspondingly, there were no significant differences of gel strength, texture profile and viscosity among several groups of gelatin when the concentration was lower than 1%, in contrast, these properties changed dramatically when the concentration was greater than 1%. It indicates that there must be some close relationships among concentration, nanostructure and physical property of gelatin. The illustration of nanoscale transition would help us understand the macroscale changes of physical properties.
机译:物理性质对明胶利用至关重要,其物理性质由结构决定。因此,重要的是研究在整个浓度范围内明胶的纳米结构和物理性质,这些浓度在研究和工业中得到了广泛应用。明胶的纳米结构可以通过原子力显微镜(AFM)研究。但是,很难获得高浓度(1-6.67%)的明胶的可靠AFM图像。本研究探索并开发了高浓度明胶成像方法,主要包括六个步骤。然后研究了从channel鱼皮(Ictalurus punctatus)提取的明胶的浓度,纳米结构和物理性质之间的关系。高分辨率的AFM图像显示明胶中的原纤维结构,浓度为1%至6.67%。然而,在低浓度(<1%)下,明胶的大多数纳米结构是球形聚集体,并且仅偶尔存在原纤维结构。相应地,当浓度低于1%时,几组明胶之间的凝胶强度,质地分布和粘度没有显着差异,相反,当浓度高于1%时,这些性质发生了显着变化。这表明明胶的浓度,纳米结构和物理性质之间必须存在密切的关系。纳米级转变的图示将帮助我们理解物理性质的宏观变化。

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