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Bioprocesses for the removal of nitrogen oxides from polluted air

机译:从污染的空气中去除氮氧化物的生物过程

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Nitrogen oxides (NOx) of environmental concern are nitrogen monoxide (NO) and nitrogen dioxide (NOD. They are hazardous air pollutants that lead to the formation of acid rain and tropospheric ozone. Both pollutants are usually present simultaneously and are, therefore, called NOx. Another compound is N2O which is found in the stratosphere where it plays a role in the greenhouse effect. Concern for environmental and health issues coupled with stringent NOx emission standards generates a need for the development of efficient low-cost NOx abatement technologies. Under such circumstances, it becomes mandatory for each NOx-emitting industry or facility to opt for proper NOx control measures. Several techniques are available to control NOx emissions: selective catalytic reduction (SCR), selective non-catalytic reduction (SNCR), adsorption, scrubbing, and biological methods. Each process offers specific advantages and limitations. Since bioprocesses present many advantages over conventional technologies for flue gas cleaning, a lot of interest has recently been shown for these processes. This article reviews the major characteristics of conventional non-biological technologies and recent advances in the biological removal of NOx from flue gases based on the catalytic activity of either eucaryotes or procaryotes, ie nitrification, denitrification, the use of microalgae, and a combined physicochernical and biological process (BioDeNOx). Relatively uncomplicated design and simple operation and maintenance requirements make biological removal a good option for the control of NOx emissions in stationary sources. (c) 2005 Society of Chemical Industry
机译:与环境有关的氮氧化物是一氧化氮和二氧化氮,它们是有害的空气污染物,会导致酸雨和对流层臭氧的形成,两种污染物通常同时存在,因此被称为氮氧化物在平流层中发现的另一种化合物是二氧化氮,它在温室效应中起作用,对环境和健康问题的关注以及严格的氮氧化物排放标准引起了对开发高效低成本氮氧化物减排技术的需求。在这种情况下,每个排放NOx的行业或设施都必须选择适当的NOx控制措施,有几种控制NOx排放的技术可供选择:选择性催化还原(SCR),选择性非催化还原(SNCR),吸附,洗涤,与生物方法相比,每种方法都具有特定的优势和局限性。用于烟道气清洁的技术,最近对这些过程表现出了很大的兴趣。本文根据真核生物或原核生物的催化活性,即硝化,反硝化,微藻的使用以及物理化学和化学方法的结合,综述了常规非生物技术的主要特征以及从烟气中生物脱除NOx的最新进展。生物过程(BioDeNOx)。相对简单的设计以及简单的操作和维护要求使生物去除成为控制固定源NOx排放的好选择。 (c)2005年化学工业学会

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