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稻壳-裂褶菌属F17系统在连续流填充床生物反应器固态条件下对刚果红的脱色及生物吸附作用

Decolorization and biosorption for Congo red by system rice hull- Schizophyllum sp. F17 under solid-state condition in a continuous flow packed-bed bioreactor.

作者信息

Li Xudong, Jia Rong

机构信息

School of Life Science, Anhui University, Hefei 230039, PR China.

出版信息

Bioresour Technol. 2008 Oct;99(15):6885-92. doi: 10.1016/j.biortech.2008.01.049. Epub 2008 Mar 6.

DOI:10.1016/j.biortech.2008.01.049
PMID:18328697
Abstract

Synthetic dyes are important chemical pollutants from various industries. This work developed an efficient and relatively simple continuous decolorization system rice hull-Schizophyllum sp. F17 under solid-state condition in a packed-bed bioreactor, for decolorizing Congo red. In the decolorization system, two decolorization mechanisms exist, one is decolorization by Schizophyllum sp. F17, the other is biosorption by rice hull. The decolorization efficiency was greatly affected by dye concentration and hydraulic retention time (HRT), which were quantificationally analyzed and optimized through response surface methodology (RSM). A 2(2) full factorial central composite design (CCD) was performed, and three second order polynomial models were generated to describe the effects of dye concentration and HRT on total decolorization (R2=0.902), decolorization by Schizophyllum sp. F17 (R2=0.866) and biosorption by rice hull (R2=0.890). Response surface contour plots were constructed to show the individual and cumulative effects of dye concentration and HRT, and the optimum values. A maximum total decolorization 89.71% and maximum decolorization by Schizophyllum sp. F17 60.44% was achieved at dye concentration 142.63mg/L, HRT 41h, and dye concentration 110.7mg/L, HRT 29.4h, respectively. Meanwhile, the role of manganese peroxidase (MnP) in the decolorizaion process was investigated. This study proved the feasibility of continuous mode for decolorizing synthetic dyes by white-rot fungi in solid-state fermentation bioreactors.

摘要

合成染料是来自各种行业的重要化学污染物。本研究开发了一种高效且相对简单的连续脱色系统,即利用稻壳-裂褶菌F17在填充床生物反应器的固态条件下对刚果红进行脱色。在该脱色系统中,存在两种脱色机制,一种是裂褶菌F17的脱色作用,另一种是稻壳的生物吸附作用。脱色效率受染料浓度和水力停留时间(HRT)的显著影响,通过响应面法(RSM)对其进行了定量分析和优化。进行了2(2)全因子中心复合设计(CCD),并生成了三个二阶多项式模型来描述染料浓度和HRT对总脱色率(R2 = 0.902)、裂褶菌F17的脱色率(R2 = 0.866)和稻壳的生物吸附率(R2 = 0.890)的影响。构建了响应面等高线图以显示染料浓度和HRT的单独及累积影响以及最佳值。在染料浓度为142.63mg/L、HRT为41h时,总脱色率最高达到89.71%;在染料浓度为110.7mg/L、HRT为29.4h时,裂褶菌F17的脱色率最高达到60.44%。同时,研究了锰过氧化物酶(MnP)在脱色过程中的作用。本研究证明了在固态发酵生物反应器中利用白腐真菌对合成染料进行连续脱色模式的可行性。

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