Zhao Yan-Ge, Yuan Xing-Zhong, Huang Hua-Jun, Cui Kai-Long, Peng Xin, Peng Zi-Yuan, Zeng Guang-Ming
Huan Jing Ke Xue. 2014 Feb;35(2):759-63.
This paper studied the backward extraction of cellulase in RL/isooctane/n-hexanol reverse micelles system. Several key parameters influencing the backward extraction efficiency and activity recovery of cellulase were investigated, including stripping aqueous pH, stripping time, salt type and ionic strength, and addition of alcohols. The experiment results indicated that the optimal parameter values as follows: stripping aqueous pH 7.0, stripping time 30 min, 0.15 mol x L(-1) of KCl, dosage of n-butanol 2%. Under above optimum conditions, the backward extraction efficiency and activity recovery were up to 76.22% and 93.39%, respectively. The backward extraction of cellulase using reverse micelles based on biosurfactant RL performs well. Furthermore, RL has many advantages such as high biodegradability, low critical micelle concentration, etc. The application prospects of RL reverse micelles are extensive.
本文研究了纤维素酶在RL/异辛烷/正己醇反胶束体系中的反萃取。考察了影响纤维素酶反萃取效率和活性回收率的几个关键参数,包括反萃水相pH值、反萃时间、盐的种类和离子强度以及醇的添加量。实验结果表明,最佳参数值如下:反萃水相pH值7.0、反萃时间30 min、KCl浓度0.15 mol·L(-1)、正丁醇用量2%。在上述最佳条件下,反萃取效率和活性回收率分别高达76.22%和93.39%。基于生物表面活性剂RL的反胶束对纤维素酶的反萃取效果良好。此外,RL具有生物降解性高、临界胶束浓度低等诸多优点。RL反胶束的应用前景广阔。