Federal University of Espírito Santo, - Chemistry Department, Vitória, Av. Fernando Ferrari, 514, P. O. Box: 29075-910, Goiabeiras, Vitória, E.S., Brazil; Faculdade do Centro Leste, Rodovia E.S. 010, Km 6.5, P. O. Box: 29173-087, Manguinhos, Serra, E.S., Brazil.
Federal University of Espírito Santo, - Chemistry Department, Vitória, Av. Fernando Ferrari, 514, P. O. Box: 29075-910, Goiabeiras, Vitória, E.S., Brazil.
Int J Biol Macromol. 2019 Jun 15;131:43-49. doi: 10.1016/j.ijbiomac.2019.03.037. Epub 2019 Mar 5.
In this paper, a 400 ppm aqueous solution of guar gum polysaccharide was submitted to a turbulent flow regime in order to monitor molecular degradation and drag reduction. Guar gum samples were isolated and analyzed by spectroscopic, thermoanalytical and viscosimetric techniques. The drag reduction promoted by guar gum is compromised as the polysaccharide undergoes degradation. Viscosimetric analysis of guar gum showed a reduction in viscous molecular mass. Mid-infrared spectra and hydrogen nuclear magnetic resonance suggest that mechanical degradation promotes hydrolysis of the glycosidic bond α (1 → 6) releasing (d)-galactose owing to the appearance of the carbonyl functional group. Thermal analysis revealed the reduction of the polysaccharide's thermal stability by reduction of the polymer chain. A comprehensive analysis of these combined parameters affords a foundation for the development of more efficient biopolymers in the context of improved drag reduction.
本文将 400ppm 瓜尔胶多糖水溶液置于紊流状态下,以监测其分子降解和减阻情况。采用光谱、热分析和黏度技术对瓜尔胶样品进行分离和分析。随着多糖的降解,瓜尔胶的减阻作用受到影响。瓜尔胶的黏度分析显示,黏性分子质量降低。中红外光谱和氢核磁共振表明,机械降解促进糖苷键α(1→6)的水解,释放(d)-半乳糖,这是由于羰基官能团的出现。热分析表明,聚合物链的减少降低了多糖的热稳定性。这些综合参数的综合分析为开发更有效的生物聚合物以提高减阻效果提供了基础。