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Effect of Germination on the Functional and Moisture Sorption Properties of High–Pressure-Processed Foxtail Millet Grain Flour

机译:萌发对高压加工粪小米粉粉功能和水分吸附性能的影响

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摘要

Foxtail millet is one of the commonly cultivated, nutritionally competitive source of protein, fibre, phytochemicals and other micronutrients, as compared to major cereals like wheat and rice. Considering the potential of these grains, the high pressure processed flours of germinated (GFMF) and non-germinated foxtail millet (NGFMF) grains were studied for its functional, moisture sorption and thermodynamic properties. Germination and high pressure processing of foxtail millet grains significantly improved the functional properties of the flour. Apart from this, the moisture sorption isotherms of both the flours were determined at 10, 25 and 40 oC and the sorption data was fitted to Guggenheim-Anderson-De Boer (GAB) sorption model. The monolayer moisture content for NGFMF and GFMF ranged between 3.235 - 2.364 g g-1 and 2.987 – 2.063 g g-1, respectively. The isosteric heat of sorption ranged between -76.35 kJ mol-1 to -38.23 kJ mol-1 for NGFMF and 172.55 kJ mol-1 to -34.02 kJ mol-1 for GFMF at a moisture range of 0 to 36%, whereas, the integral entropy of sorption for NGFMF ranged between -0.404 to -0.120 kJ mol-1 K-1 and for GFMF between -0.667 to -0.383 kJ mol-1 K-1. Along with the validation of the compensation theory, the values of spreading pressures lied in the range of 0 – 0.078 J m-2 for NGFMF and 0 – 0.124 J m-2 for GFMF, while, the glass transition temperatures ranged between 82.25 to 28.67 oC for NGFMF and from 51.11 to 11.83 oC for GFMF at all three temperatures.
机译:与小麦和水稻一样的主要谷物相比,Foxtail Millet是常规栽培的,植物和化学品和其他微量营养素的常规蛋白质,纤维,植物化学和其他微量营养素之一。考虑到这些颗粒的潜力,研究了发芽(GFMF)和非发芽的粪码小米(NGFMF)晶粒的高压加工面粉,用于其功能性,水分吸附和热力学性质。 Foxtail Millet晶粒的萌发和高压加工显着改善了面粉的功能性质。除此之外,在10,25和40℃确定面粉的水分吸附等温线,吸附数据适用于古根海姆 - 安德森 - 德波尔(GAB)吸附模型。 NGFMF和GFMF的单层水分含量分别在3.235-2.364g G-1和2.987-2.063g G-1之间。用于NGFMF的含量为-76.35kJ摩尔-1至-38.23 kJ摩尔-1至-38.23 kJ摩尔-1至-34.02 kJ摩尔-1至-34.02 kJ摩尔-1,对于0至36%的水分,而GFMF,而且对于NGFMF的整体熵为-0.404至-0.120 kJ摩尔-1 k-1之间,并且对于-0.667至-0.383kJ摩尔-1k-1的GFMF。随着补偿理论的验证,扩散压力的值呈现为0-0-0-0-0-0-0-0-124J M-2的GFMF的范围,而玻璃化转变温度范围为82.25至28.67对于NGFMF,在所有三个温度下为GFMF的51.11至11.83℃。

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