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Study on Optimizing Technological Condition of Water Extraction for Xinshuaining Mixtures by Orthogonal Design

Hongmei Wu

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Abstract

Objective: To optimize the water extraction process of Xinshuaining Mixtures.Method: Orthogonal design was used to select the water extraction process of Xinshuaining Mixtures with the content of ginsenoside Rg1,ginsenoside Re,ginsenoside Rb1 and the yield of extract as the investigating index.Result: The best water extraction process of Xinshuaining Mixtures was: the first time adding 12 folds water,adding 10 folds water for second and third times,decocting 1 h for 3 times.Conclusion: The established technology was reasonable,feasible and reproducible.It can be used for the development of Xinshuaining Mixtures to providetheoretical and experimental basis.

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What this paper is about

Objective: To optimize the water extraction process of Xinshuaining Mixtures.Method: Orthogonal design was used to select the water extraction process of Xinshuaining Mixtures with the content of ginsenoside Rg1,ginsenoside Re,ginsenoside Rb1 and the yield of extract as the investigating index.Result: The best water extraction process of Xinshuaining Mixtures was: the first time adding 12 folds water,adding 10 folds water for second and third times,decocting 1 h for 3 times.Conclusion: The established technology was reasonable,feasible and reproducible.It can be used for the development of Xinshuaining Mixtures to providetheoretical and experimental basis.

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Available abstract

Objective: To optimize the water extraction process of Xinshuaining Mixtures.Method: Orthogonal design was used to select the water extraction process of Xinshuaining Mixtures with the content of ginsenoside Rg1,ginsenoside Re,ginsenoside Rb1 and the yield of extract as the investigating index.Result: The best water extraction process of Xinshuaining Mixtures was: the first time adding 12 folds water,adding 10 folds water for second and third times,decocting 1 h for 3 times.Conclusion: The established technology was reasonable,feasible and reproducible.It can be used for the development of Xinshuaining Mixtures to providetheoretical and experimental basis.

Key concepts: Extraction (chemistry), Yield (engineering), Water extraction, Process engineering, Chromatography, Process (computing), Ginsenoside Rg1, Ginsenoside

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