Optimization of Ultrahigh Pressure Extraction for Salidroside From by Central Composite Design/Response Surface Methodology
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Optimization of Ultrahigh Pressure Extraction for Salidroside From by Central Composite Design/Response Surface Methodology
Chinese Journal of Experimental Traditional Medical FormulaeVol. 18, Issue 1, Pages: 19-23(2012)
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Published:2012
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CHEN Jian, LIAO Guo-ping, ZHANG Zhong-yi. Optimization of Ultrahigh Pressure Extraction for Salidroside From by Central Composite Design/Response Surface Methodology[J]. Chinese journal of experimental traditional medical formulae, 2012, 18(1): 19-23.
DOI:
CHEN Jian, LIAO Guo-ping, ZHANG Zhong-yi. Optimization of Ultrahigh Pressure Extraction for Salidroside From by Central Composite Design/Response Surface Methodology[J]. Chinese journal of experimental traditional medical formulae, 2012, 18(1): 19-23.DOI:
Optimization of Ultrahigh Pressure Extraction for Salidroside From by Central Composite Design/Response Surface Methodology
Objective: To optimize ultrahigh pressure extraction (UPE) technology of salidroside from Rhodiola crenulata by central composite design/response surface methodology. Method: Central composite design was adopted for getting optimal ultrahigh pressure technique parameters
and compared with conventional extraction’s(reflux extraction
ultrasonic extraction
microwave extraction). Result: Optimal technology conditions of UPE for salidroside from R. crenulata were: solvent was 73.3% ethanol
ratio of solvent to material (mL:g) was 29.5
extraction pressure was 255.5 mPa
extracted 1 time with 2 min. Using this extracting process
extraction yield of salidroside was 9.29 mg ·g-1. It was 31.6% higher than reflux extraction
20.3% to ultrasonic extraction and 9.7% to microwave extraction. Conclusion: As a novel extraction technology of Chinese herbal medicine
UPE procedure had higher extraction yield
lower extracting temperature
required a shorter time and was less power consumption. It had provided a brand-novel method for extraction of salidroside from R. crenulata.