温度和品种对Abotem、Aborohema、Omankwa、Abeleehi和Dorke SR抗氧化保留力的影响

Isaac Godfred Antwi, Ahmad Addo, Ato Bart-Plange
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引用次数: 0

摘要

研究了品种和温度对Abotem、Aborohema、Omankwa、Abeleehi和Dorke SR玉米营养抗氧化剂和维生素A、E保留量的影响。精确的保留量(mg/100mg)用收率表示为吸光度稀释系数与样品重量的比值来计算。从30℃到60℃,随着温度的升高,维生素A含量的损失顺序为:奥曼克瓦(2.759mg/100mg)>博罗赫玛(2.679mg/100mg)>博腾(1.665mg/100mg)>多克SR (0.996mg/100mg) >阿贝莱希(0.865 mg/100mg)。在30℃的浸泡温度下,维生素A的保留率较高。而在60℃的浸泡温度下,维生素E的保留率较好。维生素E含量增加的顺序为:Abotem (1.984mg/100mg)>Aborohema (1.886mg/100mg) > Abeleehi (0.973mg/100mg)>Omankwa (0.941 mg/100mg)>Dorke SR (0.2283mg/100mg)。浸泡后维生素A和维生素E的保留量发生变化,但变化受品种和浸泡温度的影响。在30˚C ~ 60˚C温度范围内,玉米浸泡后维生素A含量的变化符合零级动力学反应方程,动力学模型回归系数在0.95 ~ 0.99之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature and Variety Effects on Antioxidant Retention of Abotem, Aborohema, Omankwa, Abeleehi and Dorke SR
The study evaluated the influence of variety and temperature on the retention of nutrient antioxidants, vitamins A and E of Abotem, Aborohema, Omankwa, Abeleehi and Dorke SR varieties of maize. The exact retentions (mg/100mg) were computed using the yield expressed as a ratio of the absorbances dilution factor to the weight of the sample. The loss of vitamin A contents as the temperature increased from 30˚C to 60˚C was found to differ in the order Omankwa (2.759mg/100mg)>Aborohema (2.679mg/100mg)>Abotem (1.665mg/100mg)>Dorke SR (0.996mg/100mg) >Abeleehi (0.865 mg/100mg). Better retention of vitamin A occurred at the soaking temperature of 30˚C. In contrast, better retention of vitamin E was achieved at the soaking temperature of 60oC. The increase in vitamin E contents were in the order Abotem (1.984mg/100mg)>Aborohema 1.886mg/100mg) > Abeleehi (0.973mg/100mg)>Omankwa (.941mg/100mg)>Dorke SR (0.2283mg/100mg). Soaking caused changes to the quantities of vitamins A and E retained after soaking, but the changes were influenced by variety and soaking temperature. The change in vitamin A content of soaked maize within the temperature range of 30˚C - 60˚C followed a zero-order kinetics reaction equation, with a regression coefficient of the kinetic model between 0.95 and 0.99.
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