Department of Chemistry and Chemical Engineering, Beijing Forestry University, Beijing, China.
J Colloid Interface Sci. 2011 Jul 15;359(2):487-92. doi: 10.1016/j.jcis.2011.04.038. Epub 2011 Apr 18.
A biosurfactant, named tea saponin (TS), was isolated and purified from the defatted seed of Camellia oleifera Abel. The characterization of TS including molecular weight, glycosyl composition, and thermal behavior as well as the surface and foaming properties was conducted. The synergistic interactions of binary systems of CTAB-TS, SDS-TS, and Brij35-TS were investigated. The results show that TS had a weight-average molecular weight of 809.12 g mol(-1) and contained four aglycones of L-rhamnose, D-galactose, D-glucose, and D-glucuronic acid. The critical micelle concentration (cmc) of 2.242 mmol L(-1) and the minimum surface tension (γ(cmc)) of 43.5 mN m(-1) were determined for TS. Synergisms in surface tension reduction efficiency, in mixed micelle formation, and in surface tension reduction effectiveness were observed in CTAB-TS and SDS-TS systems, whereas that was not shown in Brij35-TS mixtures. The mixtures of TS with CTAB and SDS showed synergism in foaming efficiency, but this synergism did not exist in Brij35-TS system with respect to the surface properties. Nevertheless, there appears to be no significant correlation between foam stability and the surface properties.
从油茶籽中分离和纯化出一种生物表面活性剂,命名为茶皂素(TS)。对 TS 的特性进行了研究,包括分子量、糖基组成、热行为以及表面和起泡性能。研究了 CTAB-TS、SDS-TS 和 Brij35-TS 二元体系的协同作用。结果表明,TS 的重均分子量为 809.12g/mol,含有四种糖苷配基:L-鼠李糖、D-半乳糖、D-葡萄糖和 D-葡萄糖醛酸。TS 的临界胶束浓度(cmc)为 2.242mmol/L,最低表面张力(γ(cmc))为 43.5mN/m。在 CTAB-TS 和 SDS-TS 体系中观察到表面张力降低效率、混合胶束形成和表面张力降低效果的协同作用,而在 Brij35-TS 混合物中则没有表现出协同作用。TS 与 CTAB 和 SDS 的混合物在起泡效率方面表现出协同作用,但在表面性能方面,Brij35-TS 体系中不存在这种协同作用。然而,泡沫稳定性与表面性能之间似乎没有显著的相关性。