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Processing Effects on Phytochemical Content and Antioxidative Potential of Ginger <i>Zingiber officale</i> 被引量:2
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作者 R. Offei-Oknye j. patterson +1 位作者 L. T. Walker Martha Verghese 《Food and Nutrition Sciences》 2015年第5期445-451,共7页
Ginger (Zingiber officinale) is rich in antioxidants and phytochemicals with anti-inflammatory, antimicrobial and anticancer properties. Ginger has been used as a condiment and for the treatment of ailments for many y... Ginger (Zingiber officinale) is rich in antioxidants and phytochemicals with anti-inflammatory, antimicrobial and anticancer properties. Ginger has been used as a condiment and for the treatment of ailments for many years. However, there are limited studies on the antioxidant and scavenging power of processed ginger. The objectives of this study were to determine the effects that processing has on the total phenolic and flavanoid content of ginger and its antioxidant potential using 1,1-Diphenyl-2-picrylhydrazyl (DPPH), Radical-Scavenging Activity and Ferric Reducing Antioxidant Power (FRAP). Fresh ginger (FG) was used as a control with oven drying (OD) sun drying (SD) and freeze drying (FD) as processing methods. Freeze-dried ginger (77.87%) showed a significantly higher (p < 0.05) free radical scavenging ability as compared to other treatment groups (18.40% - 72.90%). However, sundried ginger had the highest ferric-reducing antioxidant power at 35.28 ± 0.69 mmol Fe (II)/mg ginger. Total phenolic content content (mg GAE/100g) for fresh, oven died, sun-dried, and freeze-dried were 514.02 ± 3.92, 796.46 ± 8.16, 878.76 ± 13.17, and 1021.15 ± 12.95, respectively. Flavanoid content of processed ginger was highest in freeze-dried samples (458.82 CE/100g ginger). 展开更多
关键词 GINGER Phenolic COMPOUND Flavonoid COMPOUND DPPH
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固体物理学 理论导引,第2版
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作者 j. patterson 丁亦兵 《国外科技新书评介》 2011年第9期14-14,共1页
固体通常仅限于晶体(周期性材料),而固体物理学作为一门独立的学科,诞生于1940年。那一年Freidrick Seitz著名的《现代固体理论》(第1版)一书面世,成为划时代的标记。该书第一次把冶金学、结晶学、磁学和固体的电导等合并成为一... 固体通常仅限于晶体(周期性材料),而固体物理学作为一门独立的学科,诞生于1940年。那一年Freidrick Seitz著名的《现代固体理论》(第1版)一书面世,成为划时代的标记。该书第一次把冶金学、结晶学、磁学和固体的电导等合并成为一个新的固体物理学领域。20多年后,术语“凝聚态物理”得到了广泛的应用。 展开更多
关键词 固体物理学 导引 凝聚态物理 固体理论 周期性 冶金学 结晶学 晶体
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