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在接种了烟管菌OBR105的气升式生物反应器中对纺织染料进行脱色。

Decolorization of textile dyes in an air-lift bioreactor inoculated with Bjerkandera adusta OBR105.

作者信息

Sodaneath Hong, Lee Jung-In, Yang Seung-Ok, Jung Hyekyeng, Ryu Hee Wook, Cho Kyung-Suk

机构信息

a Department of Environmental Science and Engineering , Ewha Womans University , Seoul , Republic of Korea.

b Department of Chemical Engineering , Soongsil University , Seoul , Republic of Korea.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2017 Sep 19;52(11):1099-1111. doi: 10.1080/10934529.2017.1340753. Epub 2017 Aug 1.

Abstract

A new decolorizing white-rot fungus, OBR105, was isolated from Mount Odae in South Korea and identified by the morphological characterization of its fruit body and spores and partial 18s rDNA sequences. The ligninolytic enzyme activity of OBR105 was studied to characterize their decolorizing mechanism using a spectrophotometric enzyme assay. For the evaluation of the decolorization capacity of OBR105, the isolate was incubated in an erlenmeyer flask and in an airlifte bioreator with potato dextrose broth (PDB) medium supplemented with each dye. In addition, the decolorization efficiency of real textile wastewater was evaluated in an airlift bioreactor inoculated with the isolate. The isolate was identified as Bjerkandera adusta and had ligninolytic enzymes such as laccase, lignin peroxidase (LiP), and Mn-dependent peroxidase (MnP). Its LiP activity was higher than its MnP and laccase activities. B. adusta OBR105 successfully decolorized reactive dyes (red 120, blue 4, orange 16, and black 5) and acid dyes (red 114, blue 62, orange 7, and black 172). B. adusta OBR105 decolorized 91-99% of 200 mg L of each dye (except acid orange 7) within 3 days in a PDB medium at 28°C, pH 5, and 150 rpm. This fungus decolorized only 45% of 200 mg L acid orange 7 (single azo-type dye) within 3 days, and the decolorization efficiency did not increase by prolonging the cultivation time. In the air-lift bioreactor, B. adusta OBR105 displayed a high decolorization capacity, greater than 90%, for 3 acid dyes (red 114, blue 62, and black 172) and 1 reactive dye (blue 4) within 10-15 h of treatment. B. adusta OBR105 could decolorize real textile wastewater in the air-lift bioreactor. This result suggests that an air-lift reactor employing B. adusta OBR105 is a promising bioreactor for the treatment of dye wastewater.

摘要

从韩国五台山分离出一种新型的脱色白腐真菌OBR105,并通过其子实体和孢子的形态特征以及部分18s rDNA序列对其进行了鉴定。利用分光光度酶法研究了OBR105的木质素分解酶活性,以表征其脱色机制。为了评估OBR105的脱色能力,将该分离菌株在装有补充了每种染料的马铃薯葡萄糖肉汤(PDB)培养基的锥形瓶和空气提升生物反应器中进行培养。此外,在接种了该分离菌株的空气提升生物反应器中评估了实际纺织废水的脱色效率。该分离菌株被鉴定为烟管菌(Bjerkandera adusta),并具有漆酶、木质素过氧化物酶(LiP)和锰依赖性过氧化物酶(MnP)等木质素分解酶。其LiP活性高于MnP和漆酶活性。烟管菌OBR105成功地使活性染料(红色120、蓝色4、橙色16和黑色5)和酸性染料(红色114、蓝色62、橙色7和黑色172)脱色。在28°C、pH 5和150 rpm条件下,烟管菌OBR105在PDB培养基中3天内使200 mg/L的每种染料(酸性橙7除外)脱色91%-99%。这种真菌在3天内仅使200 mg/L酸性橙7(单偶氮型染料)脱色45%,延长培养时间脱色效率并未提高。在空气提升生物反应器中,烟管菌OBR105在处理10-15小时内对3种酸性染料(红色114、蓝色62和黑色172)和1种活性染料(蓝色4)的脱色能力大于90%。烟管菌OBR105能够使空气提升生物反应器中的实际纺织废水脱色。这一结果表明,采用烟管菌OBR105的空气提升反应器是一种有前途的用于处理染料废水的生物反应器。

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