Dong X J, Du Z Y, Chen Z
Department of Biology and Environmental Science, Wenzhou Normal College, Wenzhou 325003, China.
J Environ Sci (China). 2001 Oct;13(4):472-5.
The decolorization of Direct Black 22 by Aspergillus ficuum has been studied. It was found that Aspergillus ficuum could effectively decolorize Direct Black 22 especially when grown as pelleted mycelia. Results showed that the media containing Direct Black 22 at 50 mg/L could be decolorized by 98.05% of the initial color in 24 h. The optimum pH and temperature of decolorization are 4.0 and 33 degrees C respectively. Aeration was quite beneficial to decolorization. Medium composition and the concentration of Direct Black 22 could affect the rate of decolorization. The dye degraded products assayed by UV-visible spectrophotometer and macroscopic observation showed that the decolorization of Direct Black 22 by mycelial pellets includes two important processes: bioadsorption and biodegradation. The degradation experiment agree with the Michaelis-Menten kinetics equation.
研究了烟曲霉对直接黑22的脱色作用。发现烟曲霉能有效脱色直接黑22,尤其是当以菌丝球形式生长时。结果表明,含有50mg/L直接黑22的培养基在24小时内可被脱色98.05%的初始颜色。脱色的最佳pH值和温度分别为4.0和33℃。通气对脱色非常有利。培养基组成和直接黑22的浓度会影响脱色速率。通过紫外可见分光光度计和宏观观察测定的染料降解产物表明,菌丝球对直接黑22的脱色包括两个重要过程:生物吸附和生物降解。降解实验符合米氏动力学方程。