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Planetary ball-mill as a versatile tool to controlled potato starch modification to broaden its industrial applications

机译:行星球磨机作为一种多功能工具,用于控制马铃薯淀粉改性,以拓宽其工业应用

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摘要

Pure potato starch has been modified by high-energy-ball-milling as a function of energy supplied, aiming to obtain products for different possibilities of industrial application. Burgios's equation has been used to calculate the energy supplied. The effect of the milling has been followed by a characterization of the starch morphology, crystallinity, solubility, swelling, retrogradation, viscosity, apparent viscosity, functional groups, and reducing sugar concentration. The high-energy-ball-milling not only changes the physical properties but also induces the mechanolysis of potato starch, breaking the glycosidic linkages of the starch molecules. A representation of the possible mechanism of starch mechanolysis is proposed. Three stages of the transformation of potato starch through high-energy ball-milling can be identified. Each of these stages generates starch with properties that can be used in different industrial applications.
机译:纯马铃薯淀粉通过高能 - 球铣削而被改性,作为供应的能量的功能,旨在获得不同的工业应用可能性的产品。 BURGIOS的等式已被用于计算提供的能量。研磨的效果之后是淀粉形态,结晶度,溶解度,溶胀,逆行,粘度,表观粘度,官能团和降低糖浓度的表征。高能量球铣削不仅改变了物理性质,而且诱导马铃薯淀粉的机械水解,破坏淀粉分子的糖苷键。提出了淀粉机制可能机制的代表。可以识别通过高能球磨的马铃薯淀粉转化的三个阶段。这些阶段中的每一个都产生具有可用于不同工业应用中的属性的淀粉。

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