膜生物反应器系统降解合成纺织废水中的Evercion Blue P-GR和Ostazin Black H-GRN

Ü. Gül, C. Acıkgoz, Kadir Özan
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引用次数: 0

摘要

本研究采用膜生物反应器(MBR)系统研究了白腐真菌Trametes versicolor (T. versicolor)对Evercion Blue P-GR (EBP)和Ostazin Black H-GRN (OBH)的脱色效果。本研究采用合成纺织废水在膜生物反应器(MBR)系统(170 ml)中进行实验,最初接种纯培养的真菌,但除了控制pH(4.5±0.2)和温度(25±1oC)外,在非无菌条件下进行操作。研究了染料浓度对真菌生物降解的影响。当初始染料浓度为50、100和200 mg L-1时,EBP的脱色效率分别为98%、90%和87%。50 mg L-1染料溶液2天脱色率为95%,100 mg L-1染料溶液5天脱色率为66%。通过SEM、EDX和FTIR分析证实了染料分子与真菌表面可能存在的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biodegradation of Evercion Blue P-GR and Ostazin Black H-GRN in synthetic textile wastewater by membrane bioreactor system using Trametes versicolor
In this study, the decolorization of Evercion Blue P-GR (EBP) and Ostazin Black H-GRN (OBH) was investigated using white-rot fungi named as Trametes versicolor (T. versicolor) by Membrane Bioreactor (MBR) system. This study involved experiments employing synthetic textile wastewater in Membrane Bioreactor (MBR) system (170 ml), initially inoculated with a pure culture of fungi, but operated, other than controlling pH (4.5±0.2) and temperature (25±1oC), under non-sterile conditions. The effect of dye concentrations on fungal biodegradation was also investigated. The decolorization efficiencies were 98%, 90%, and 87% respectively, for EBP when the initial dye concentration of 50, 100, and 200 mg L-1 were used. However, the decolorization percentages for OBH dye were obtained 95% for 50 mg L-1 dye solution in 2 days and 66% for 100 mg L-1 dye solution in 5 days. Possible interactions between dye molecules and the fungal surface were confirmed by SEM, EDX, and FTIR analyses.
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