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Effect of Glycerol Compositions on Protein Based Thermoplastic from Fish Waste

机译:甘油组合物对鱼类废物蛋白质热塑性塑料的影响

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The main objective of this work was to investigate the effect of glycerol at different compositions on physical properties, morphology and water absorption of protein based thermoplastic from fish waste. Fish waste containing fish head, bones and fins were collected from local fish product processing plant before further cooking, pressing, drying and milling. Compound formulation was done using twin screw extrusion and compression moulding. Samples at different glycerol compositions (Control, 20 pph and 35 pph) were characterized using Fourier Transform Infrared Spectroscopy (FTIR), Scanning Electron Microscopy (SEM) and water absorption. The addition of glycerol showed two broad bands between 1500-1700 cm~(-1) and 3000-3500 cm~(-1) which correlates with the amount of α-helix and β-sheets structure of the protein. The fracture surfaces at control changed from uneven surfaces with large particles to smooth surfaces. Plastic deformation was observed at control and 20 pph but was absence at high glycerol content. Increasing the glycerol content was found to influence the water resistance properties of fish protein by reducing the absorption capability due to amount of α-helix and β-sheets structure.
机译:这项工作的主要目的是探讨甘油在不同组合物对鱼类废物中蛋白质的热塑性塑料的物理性质,形态和吸水性的影响。在进一步烹饪,压制,干燥和铣削之前,从当地鱼类产品加工厂收集含鱼头,骨骼和翅片的鱼类废物。使用双螺杆挤出和压缩成型进行复合制剂。使用傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM)和吸水,表征在不同甘油组合物(对照,20pph和35pph)的样品。加入甘油在1500-1700cm〜(-1)和3000-3500cm〜(-1)之间显示出两个宽带,其与蛋白质的α-螺旋和β-片状结构相关。控制中的断裂表面从具有大颗粒的不平坦表面变为光滑的表面。在对照中观察到塑性变形和20pph,但在高甘油含量下不存在。通过降低由于α-螺旋和β-片结构的量降低吸收能力,发现增加甘油含量的耐水性能。

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