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Viscometric properties of solutions of amylose and amylopectin in aqueous potassium thiocyanate

机译:硫氰酸钾水溶液中直链淀粉和支链淀粉溶液的粘度特性

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摘要

Solutions of commercial potato amylose (1.65%, w/v) in dimethyl sulfoxide (DMSO) /water mixtures formed gels on standing when the water content was equal to or greater than 60% (w/v). These gels did not form when the water was replaced with aqueous potassium thiocyanate solution (KSCN, 2 mol/L). Commercial amylose did not dissolve completely in aqueous KSCN, unlike commercial potato and corn amylopectins, which formed more stable solutions than those in water alone. Solutions of amylopectin in mixtures of DMSO and aqueous KSCN showed a maximum relative viscosity (flow viscometer) at 80% (v/v) DMSO, like those in DMSO/water. Solutions of amylopectin in 25% (v/v) DMSO/75% (v/v) aqueous KSCN (2 mol/L) could be used for estimation of molecular weight by flow viscometry using the Mark-Houwink-Sakurada Equation. Sigma corn amylopectin gave a weight average molecular weight of 12.1 x 106, lower than that obtained using DMSO alone, and likely to be due to a lower degree of hydrogen bonding in the presence of KSCN, consistent with its chaotropic effect. This effect was also reinforced by the observation that formation of the amylose/iodine complex is inhibited by KSCN at concentrations as low as 0.2 mol/L.
机译:当含水量等于或大于60%(w / v)时,静置的商用马铃薯直链淀粉(1.65%,w / v)在二甲基亚砜(DMSO)/水混合物中的溶液形成凝胶。用硫氰酸钾水溶液(KSCN,2 mol / L)代替水时,这些凝胶不会形成。与商业马铃薯和玉米支链淀粉不同,商业直链淀粉不能完全溶解在KSCN水溶液中,后者比单独在水中形成的溶液更稳定。支链淀粉在DMSO和KSCN水溶液的混合物中的最大相对粘度(流动粘度计)为80%(v / v)DMSO,就像在DMSO /水中一样。支链淀粉在25%(v / v)DMSO / 75%(v / v)KSCN水溶液(2 mol / L)中的溶液可用于使用Mark-Houwink-Sakurada方程通过流动粘度测定法估算分子量。 Sigma玉米支链淀粉的重均分子量为12.1 x 106,低于仅使用DMSO所获得的分子量,这很可能是由于在KSCN存在下氢键键合程度较低,与其离液效应相符。观察到在低至0.2 mol / L的浓度下,KSCN抑制了直链淀粉/碘复合物的形成,从而进一步增强了该效果。

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