Yamada Kazunori, Shibuya Takashi, Noda Masashi, Uchiyama Nozomi, Kashiwada Ayumi, Matsuda Kiyomi, Hirata Mitsuo
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University, Japan.
Biosci Biotechnol Biochem. 2007 Oct;71(10):2503-10. doi: 10.1271/bbb.70298. Epub 2007 Oct 7.
Enzymatic treatment of o-, m-, and p-chlorophenols and o-, m-, and p-cresols from artificial wastewater was undertaken through the enzymatic conversion into the corresponding phenoxy radicals with horseradish peroxidase (HRP) and nonenzymatic radical coupling reaction. The concentration of chlorophenols and cresols decreased sharply over the reaction time and water-insoluble oligomer precipitates were generated. The optimum conditions were determined to be the H2O2 concentration of 2.5 mM and poly(ethylene glycol) with molecular mass of 1.0 x 10(4) (10K-PEG) of 0.10 mg/cm3 at 30 degrees C for treatment of p-chlorophenol at 2.5 mM. The optimum pH values depended on the relative position of a chlorine atom for chlorophenols and on a methyl group for cresols. Concentrations of HRP and 10K-PEG were increased to 1.0 U/cm3 and 1.0 mg/cm3 respectively to treat m-chlorophenol highly. For o-chlorophenol, a decrease in the pH value to 3.0 after the enzymatic treatment led to the enhancement of the aggregation of oligomer precipitates. The % residual value for o-cresol effectively decreased by absorbing water-soluble intermediates on the chitosan films. These results indicate that chlorophenols and cresols were removed to a great degree by this technique, although the detailed procedure depended on the position of substituent groups of chlorophenols and cresols.
采用辣根过氧化物酶(HRP)将邻、间、对氯酚以及邻、间、对甲酚从人工废水中酶促转化为相应的苯氧基自由基,并通过非酶自由基偶联反应进行处理。氯酚和甲酚的浓度随反应时间急剧下降,同时生成了水不溶性的低聚物沉淀。确定在30℃下处理2.5 mM对氯酚的最佳条件为:H2O2浓度为2.5 mM,分子量为1.0×10(4)(10K-PEG)的聚乙二醇浓度为0.10 mg/cm3。最佳pH值取决于氯酚中氯原子的相对位置以及甲酚中甲基的位置。将HRP和10K-PEG的浓度分别提高到1.0 U/cm3和1.0 mg/cm3,可高效处理间氯酚。对于邻氯酚,酶促处理后将pH值降至3.0会导致低聚物沉淀的聚集增强。通过壳聚糖膜吸收水溶性中间体,邻甲酚的残留百分比值有效降低。这些结果表明,尽管具体过程取决于氯酚和甲酚取代基的位置,但通过该技术氯酚和甲酚被大量去除。