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Effects of Modifiers on the Supercritical $CO_{2}$ Extraction of Glycyrrhizin from Licorice and the Morphology of Licorice Tissue after Extraction
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  • Effects of Modifiers on the Supercritical $CO_{2}$ Extraction of Glycyrrhizin from Licorice and the Morphology of Licorice Tissue after Extraction
  • Effects of Modifiers on the Supercritical $CO_{2}$ Extraction of Glycyrrhizin from Licorice and the Morphology of Licorice Tissue after Extraction
저자명
Kim. Hyun Seok,Lee. Sang Yun,Kim. Byung Yong,Lee. Eun Kyu,Ryu. Jong Hoon,Lim. Gio Bin
간행물명
Biotechnology and bioprocess engineering
권/호정보
2004년|9권 6호|pp.447-453 (7 pages)
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한국생물공학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Optimal conditions for the supercritical carbon dioxide $(scCO_{2})$ extraction of glycyr­rhizin from licorice (Glycyrrhiza glabra) were investigated, with an emphasis on the types and levels of modifiers. The morphology of the licorice tissue remaining after the $scCO_{2} $ extraction of glycyrrhizin was examined by scanning electron microscopy, coupled with measurements of ab­solute density. Conventional organic solvent extraction was also carried out for purpose of quantitative comparison. At 50 MPa and $60^{circ}C$ glycyrrhizin could not be extracted with pure $scCO_{2}$, while a considerable amount of glycyrrhizin was extracted when water was added to $scCO_{2}$ as a modifier. The highest recovery was found to be about $97\%$ when $70\%$ aqueous methanol was added to $scCO_{2}$ at a concentration of $15\%$. The optimal pressure and temperature for the supercritical fluid extraction of glycyrrhizin were observed to be 30 M Pa and $60^{circ}C$, respectively. Under these conditions, the percentage recovery of glycyrrhizin attained a maximum value of 102.67pm$ $1.13\%$ within 60 min. Furthermore, in the case of $scCO_{2}$ modified with $70\%$ aqueous methanol, the licorice tissue obtained after extraction was found to be severely de­graded by excessive swelling, and the absolute density of the licorice residues was observed to be the highest.