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全规模焦炭废水处理设施中氰化物降解微生物的生物强化。

Bioaugmentation of cyanide-degrading microorganisms in a full-scale cokes wastewater treatment facility.

作者信息

Park Donghee, Lee Dae Sung, Kim Young Mo, Park Jong Moon

机构信息

Advanced Environmental Biotechnology Research Center, School of Environmental Science and Engineering/Department of Chemical Engineering, Pohang University of Science and Technology, Pohang, South Korea.

出版信息

Bioresour Technol. 2008 Apr;99(6):2092-6. doi: 10.1016/j.biortech.2007.03.027. Epub 2007 May 21.

Abstract

To enhance biological removal efficiency of total cyanides, bioaugmentation was applied to a full-scale cokes wastewaters treatment process. After a laboratorial-scale cultivation (up to 1.2 m(3)) of a cyanide-degrading yeast (Cryptococcus humicolus) and unidentified cyanide-degrading microorganisms, the microbial consortium was inoculated into a fluidized-bed type process (1280 m(3)), and then enriched for two months with a huge supply of glucose, KCN and other nutrients. Target wastewater was effluent of a biological pre-denitrification process for treating cokes wastewater, and contained about 14 mg/L of total cyanides in the form of ferric cyanide. This may be a first or rare report on the full-scale bioaugmentation of specialized-microorganisms. However, continuous operation of the full-scale cyanides-degrading bioprocess showed poor removal efficiency than expected owing to poor settling performance of microbial flocs, slow biodegradation rate of ferric cyanide and lack of organic carbon sources within the wastewater. Therefore, there is a need for further studies on how to solve these operating problems in full-scale bioaugmentation approach.

摘要

为提高总氰化物的生物去除效率,在一个实际规模的焦化废水处理工艺中应用了生物强化技术。在对一种氰化物降解酵母(土生隐球菌)和未鉴定的氰化物降解微生物进行实验室规模培养(高达1.2立方米)后,将微生物菌群接种到一个流化床型工艺(1280立方米)中,然后用大量的葡萄糖、氰化钾和其他营养物质进行了两个月的富集培养。目标废水是焦化废水生物预脱硝工艺的出水,含有约14毫克/升以铁氰化物形式存在的总氰化物。这可能是关于专业微生物实际规模生物强化的首次或罕见报道。然而,由于微生物絮体沉降性能差、铁氰化物生物降解速率慢以及废水中缺乏有机碳源,实际规模的氰化物降解生物工艺的连续运行显示出比预期差的去除效率。因此,有必要进一步研究如何在实际规模的生物强化方法中解决这些运行问题。

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