Michizoe Junji, Ichinose Hirofumi, Kamiya Noriho, Maruyama Tatsuo, Goto Masahiro
Department of Applied Chemistry, Graduate School of Engineering, Kyushu University, 6-10-1 Hakozaki, Fukuoka 812-8581, Japan.
J Biosci Bioeng. 2005 Jun;99(6):642-7. doi: 10.1263/jbb.99.642.
Oxidative degradation of phenolic environmental pollutants in organic media was investigated using a laccase complexed with surfactants. The catalytic activity of the surfactant-laccase complex in isooctane was markedly enhanced by appropriately adjusting the water content of the reaction medium using reverse micelles. The surfactant-laccase complex showed little activity towards the oxidative reaction of bisphenol A in water-saturated isooctane (i.e., 0.0055% [v/v] water) while effectively catalyzed the same reaction in isooctane containing 4% (v/v) water, which is over the maximum water solubility. The latter system was homogeneous and was only achieved by the aid of reverse micelles. With respect to the oxidation of bisphenol A, two products, 4-isopropylphenol and 4-isopropenylphenol, were identified by gas chromatography-mass spectrometry (GC-MS) analyses, indicating the oxidative degradation of the bis-phenolic structure of bisphenol A. We also found that the surfactant-laccase complex turned out to handle other environmental pollutants, chlorophenols, by the simultaneous addition of water and a redox mediator into the reaction medium using reverse micelles.
使用与表面活性剂复合的漆酶研究了有机介质中酚类环境污染物的氧化降解。通过使用反胶束适当调节反应介质的含水量,表面活性剂 - 漆酶复合物在异辛烷中的催化活性显著增强。表面活性剂 - 漆酶复合物在水饱和的异辛烷(即0.0055%[v/v]水)中对双酚A的氧化反应几乎没有活性,而在含有4%(v/v)水的异辛烷中有效地催化了相同的反应,该含水量超过了最大水溶解度。后一种体系是均相的,并且仅通过反胶束的帮助才能实现。关于双酚A的氧化,通过气相色谱 - 质谱(GC-MS)分析鉴定出两种产物,4-异丙基苯酚和4-异丙烯基苯酚,表明双酚A的双酚结构发生了氧化降解。我们还发现,通过使用反胶束向反应介质中同时添加水和氧化还原介质,表面活性剂 - 漆酶复合物能够处理其他环境污染物,即氯酚。