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从土壤中分离出的臭氧氧化和草酸同化细菌对活性染料的降解作用

Degradation of reactive dyes by ozonation and oxalic acid-assimilating bacteria isolated from soil.

作者信息

Kurosumi Akihiro, Kaneko Erika, Nakamura Yoshitoshi

机构信息

Department of Life System, Institute of Technology and Science, University of Tokushima, 2-1 Minamijosanjia-cho, Tokushima, Japan.

出版信息

Biodegradation. 2008 Jul;19(4):489-94. doi: 10.1007/s10532-007-9153-3. Epub 2007 Oct 10.

Abstract

Ozonation and treatment of wastewaters with oxalic acid-assimilating bacterium was attempted for the complete degradation of reactive dyes. Oxalic acid-assimilating bacterium, Pandoraea sp. strain EBR-01, was newly isolated from soil under bamboo grove and was identified to be a member of the genus Pandoraea by physicochemical and biochemical tests including 16S rDNA sequence analysis. The bacterium was grown optimally at pH 7 and temperature of 30 degrees C under the laboratory conditions. Reactive Red 120 (RR120), Reactive Green 19 (RG19), Reactive Black 5 (RB5) and Remazol Brilliant Blue R (RBBR) were used in degradation experiments. At the initial reactive dye concentrations of 500 mg/l and the ozonation time of 80 min, it was confirmed that 75-90 mg/l oxalic acid was generated from reactive dyes by ozonation. Microbial treatment using EBR-01 greatly decreased the amount of oxalic acid in the mixture after 48 h, but it was not removed completely. TOC/TOC(0) of reactive dye solutions was also decreased to 80-90% and 20-40% by ozonation and microbial treatment using EBR-01, respectively. The study confirmed that consecutive treatments by ozone and microorganisms are efficient methods to mineralize reactive dyes.

摘要

为实现活性染料的完全降解,尝试了用草酸同化细菌对废水进行臭氧化处理。从竹林下的土壤中新分离出了草酸同化细菌——潘多拉菌属菌株EBR - 01,并通过包括16S rDNA序列分析在内的物理化学和生化测试,鉴定其为潘多拉菌属的一员。在实验室条件下,该细菌在pH值为7、温度为30摄氏度时生长最佳。降解实验中使用了活性红120(RR120)、活性绿19(RG19)、活性黑5(RB5)和雷马素亮蓝R(RBBR)。在初始活性染料浓度为500 mg/l且臭氧化时间为80分钟时,证实通过臭氧化可从活性染料中产生75 - 90 mg/l的草酸。使用EBR - 01进行微生物处理48小时后,混合物中草酸的量大幅减少,但未完全去除。活性染料溶液的TOC/TOC(0)分别通过臭氧化和使用EBR - 01进行微生物处理降至80 - 90%和20 - 40%。该研究证实,臭氧和微生物的连续处理是使活性染料矿化的有效方法。

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