Kumaraswamy R, Muyzer G, Kuenen J G, Loosdrecht M C M
Department of Biotechnology, Delft University of Technology, 2628 BC Delft, The Netherlands.
Water Sci Technol. 2004;50(6):9-15.
BioDeNOx is a novel integrated physico-chemical and biological process for the removal of nitrogen oxides (NOx) from flue gas. Due to the high temperature of flue gas the process is performed at a temperature between 50-55 degrees C. Flue gas containing CO2, O2, SO2 and NOx, is purged through Fe(II)EDTA2- containing liquid. The Fe(II)EDTA2- complex effectively binds the NOx; the bound NOx is converted into N2 in a complex reaction sequence. In this paper an overview of the potential microbial reactions in the BioDeNOx process is discussed. It is evident that though the process looks simple, due to the large number of parallel potential reactions and serial microbial conversions, it is much more complex. There is a need for a detailed investigation in order to properly understand and optimise the process.
生物脱硝是一种用于从烟气中去除氮氧化物(NOx)的新型物理化学与生物相结合的综合工艺。由于烟气温度较高,该工艺在50 - 55摄氏度的温度下进行。含有二氧化碳、氧气、二氧化硫和氮氧化物的烟气通过含有Fe(II)EDTA2-的液体进行吹扫。Fe(II)EDTA2-络合物能有效结合氮氧化物;结合的氮氧化物在一系列复杂的反应中转化为氮气。本文讨论了生物脱硝过程中潜在的微生物反应概述。很明显,尽管该过程看似简单,但由于大量潜在的平行反应和连续的微生物转化,它要复杂得多。为了正确理解和优化该过程,需要进行详细的研究。