天然产物研究与开发 ›› 2025, Vol. 37 ›› Issue (7): 1289-1297.doi: 10.16333/j.1001-6880.2025.7.011 cstr: 32307.14.1001-6880.2025.7.011

• 开发研究 • 上一篇    下一篇

茶皂素的提取、纯化及其表面活性研究

贾林林,李洪安,邓泽元,张 兵,李红艳*   

  1. 南昌大学食品学院,南昌 330047
  • 出版日期:2025-07-28 发布日期:2025-07-28
  • 基金资助:
    江西省重点研发计划“揭榜挂帅”项目(20223BBF61011);江西省林业局油茶研究专项(JXYCZX[2023]111)

Extraction,purification and surface activity of tea saponin

JIA Lin-lin,LI Hong-an,DENG Ze-yuan,ZHANG Bing,LI Hong-yan*   

  1. State Key Laboratory of Food Science and Technology,Nanchang University,Nanchang 330047,China
  • Online:2025-07-28 Published:2025-07-28

摘要:

优化茶皂素的提取纯化工艺,并探究其在洗护产品中的应用潜力。首先采用超声波辅助乙醇提取法从油茶茶粕中提取茶皂素,进一步采用膜分离法对所得茶皂素进行纯化,以单因素实验确定茶皂素的质量浓度、膜孔径、膜压力、清洗次数对茶皂素得率和纯度的影响;并通过单因素实验探究茶皂素质量浓度、pH、水盐度、水硬度对表面张力性能和起泡性、稳泡性的影响,以评价茶皂素在洗护产品中的应用潜力;将茶皂素与椰油酰胺丙基甜菜碱、桂醇聚醚硫酸酯钠以不同比例复配使用,探究其实际去污效果。结果表明:企业中试采用超声辅助乙醇提取法提取茶皂素,得率达22.84% ± 1.76%;膜分离技术纯化最佳条件为质量浓度10 g/L、进膜压力4 bar、膜孔径8 000 Da、80%(V/V)乙醇清洗一次,纯度达96.31% ± 3.18%;茶皂素在广泛的pH、盐度、硬度范围内保持良好的表面活性,温度应低于40 ℃;茶皂素单独使用的去污力为59.06% ± 3.15%,茶皂素与椰油酰胺丙基甜菜碱复配使用后,去污力显著提升至83.01% ± 4.93%,茶皂素同时与椰油酰胺丙基甜菜碱、桂醇聚醚硫酸酯钠复配使用时的去污效果最佳,去污力达94.21% ± 6.30%,茶皂素具备良好的去污效果,可单独或与其它表面活性剂复配应用于洗护产品中。本研究为建立高效提取纯化茶皂素工艺及开发茶皂素洗护产品提供了依据。

关键词: tea saponin, ultrasonic assisted ethanol extraction method, membrane separation, surface activity; decontamination effect

Abstract:

In this study, the extraction and purification process of tea saponin was optimized, and its potential application in cleansing products was investigated. Tea saponin was extracted from camellia seed cake using ultrasonic-assisted ethanol extraction, followed by purification through membrane separation technology. Single-factor experiments were conducted to determine the effects of tea saponin concentration, membrane pore size, membrane pressure, and cleaning frequency on the yield and purity of tea saponin. Additionally, single-factor experiments explored the influence of tea saponin concentration, pH, water salinity, and water hardness on surface tension properties and foaming characteristics to evaluate the application potential of tea saponin in cleansing products. The actual cleaning efficacy was examined when tea saponin was used alone and in combination with cocamidopropyl betaine and sodium lauryl ether sulfate at varying ratios. The results indicated that, during pilot-scale trials in enterprises, the ultrasonic-assisted ethanol extraction method achieved a tea saponin yield of 22.84% ± 1.76%. Optimal conditions for membrane separation included a tea saponin concentration of 10 g/L, feed pressure of 4 bar, membrane pore size of 8 000 Da, and one cleaning cycle with 80% (V/V) ethanol, achieving purity of 96.31% ± 3.18%. Tea saponin exhibited favorable surfactant properties over a wide range of pH, salinity, and hardness levels, with temperature kept below 40°C. When used alone, tea saponin demonstrated a cleaning efficiency of 59.06% ± 3.15%, which significantly increased to 83.01% ± 4.93% when combined with cocamidopropyl betaine. The best cleaning performance was observed when tea saponin was used in conjunction with both cocamidopropyl betaine and sodium lauryl ether sulfate, reaching a cleaning efficiency of 94.21% ± 6.30%. These findings suggest that tea saponin possesses excellent cleaning efficacy and can be applied either independently or in combination with other surfactants in cleansing products. This study provides a basis for establishing an efficient extraction and purification process for tea saponin and developing cleansing products containing tea saponin.

Key words: 茶皂素, 超声波辅助乙醇提取法, 膜分离纯化, 表面活性, 去污效果

中图分类号:  TS209