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Current advances of integrated processes combining chemical absorption and biological reduction for NO_x removal from flue gas

机译:结合化学吸收和生物还原来去除烟气中NO_x的集成工艺的最新进展

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Anthropogenic nitrogen oxides (NO_x) emitted from the fossil-fuel-fired power plants cause adverse environmental issues such as acid rain, urban ozone smoke, and photochemical smog. A novel chemical absorption-biological reduction (CABR) integrated process under development is regarded as a promising alternative to the conventional selective catalytic reduction processes for NO_x removal from the flue gas because it is economic and environmentally friendly. CABR process employs ferrous ethylenediaminetetraacetate [Fe(II)EDTA] as a solvent to absorb the NO_x following microbial denitrification of NO_x to harmless nitrogen gas. Meanwhile, the absorbent Fe(II)EDTA is biologically regenerated to sustain the adequate NO_x removal. Compared with conventional denitrification process, CABR not only enhances the mass transfer of NO from gas to liquid phase but also minimize the impact of oxygen on the microorganisms. This review provides the current advances of the development of the CABR process for NO_x removal from the flue gas.
机译:化石燃料发电厂排放的人为氮氧化物(NO_x)会引起不利的环境问题,例如酸雨,城市臭氧烟雾和光化学烟雾。正在开发的一种新颖的化学吸收-生物还原(CABR)集成工艺被认为是从烟气中去除NO_x的常规选择性催化还原工艺的有前途的替代方法,因为它既经济又环保。 CABR工艺使用乙二胺四乙酸亚铁[Fe(II)EDTA]作为溶剂,在将NO_x微生物反硝化为无害氮气后吸收NO_x。同时,吸收剂Fe(II)EDTA被生物再生以维持足够的NO_x去除。与传统的反硝化工艺相比,CABR不仅增强了NO从气相向液相的传质,而且使氧气对微生物的影响最小化。这篇综述提供了CABR工艺从烟气中去除NO_x的最新进展。

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