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Mobility and distribution of water in cassava and potato starches by 1H and 2H NMR.

机译:通过1 H和2 H NMR分析木薯和马铃薯淀粉中水的流动性和分布。

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Mobility and distribution of water in cassava (rainy and drought crops) and potato starches were studied by solid state and NMR relaxometry as a function of H(2)O and D(2)O contents ranging from 0 to 44% (dry basis). Measurements of relative mobility derived from (2)H solid state NMR were based on relative area and line shape analysis. The narrow peak (mobile component) started to show at 5% and increased with increasing D(2)O content. This increase in mobile fraction was accompanied by a line narrowing. The mobile fractions of deuterons reached a >98% level above 15% D(2)O, which is well below the water holding capacity of starch ( approximately 27%) and the previously assigned "glassy-rubbery transition point" (24.3%; Jouppila, K.; Roos, Y. H. The physical state of amorphous corn starch and its impact on crystallization. Carbohydr. Polym. 1997, 32, 95-104). This reconfirms the liquidlike nature of water in the so-called glassy state of starch granules. The plasticization effect of water on starch chains was observed at 14-17% for cassava and potato starches as indicated by the T(1) minimum. This, however, did not seem to relate to the difference observed in swelling among the starches studied.
机译:通过固态和NMR弛豫法研究H(2)O和D(2)O含量从0到44%(干基)的函数,研究了木薯(多雨和干旱作物)和马铃薯淀粉中水的流动性和分布。由(2)H固态NMR得出的相对迁移率的测量是基于相对面积和线形分析的。窄峰(移动组分)开始显示为5%,并随D(2)O含量的增加而增加。移动分数的增加伴随着线变窄。氘的活动级分在15%D(2)O以上达到> 98%的水平,远低于淀粉的持水量(大约27%)和先前指定的“玻璃-橡胶转变点”(24.3%; Jouppila,K .; Roos,YH无定形玉米淀粉的物理状态及其对结晶的影响,Carbohydr。Polym。1997,32,95-104。这证实了淀粉颗粒的所谓玻璃态的水的液体状性质。 T(1)最小值表明,木薯和马铃薯淀粉的水对淀粉链的增塑作用为14-17%。然而,这似乎与所研究的淀粉之间溶胀的差异无关。

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