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Effect of selective catalytic reduction denitrification on fine particulate matter emission characteristics

机译:选择性催化还原反硝化对细颗粒物排放特性的影响

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Selective catalytic reduction (SCR) may affect the emission characteristics of fine particulate matter due to NH3 slip during denitrification. In this study, an experimental facility equipped with a coal-fired boiler, SCR unit, electrostatic precipitator (ESP), and wet flue gas desulfurization (WFGD) unit was adopted to investigate the effect of SCR on final fine particulate matter emission characteristics. The migration and transformation of the generated ammonium sulfates and NH3 slip in the downstream ESP and WFGD were also investigated. The results indicate that SCR can increase the final emissions of submicron particles due to the formation of (NH4)(2)SO4 and NH4HSO4 aerosols. In the ESP system, the generated ammonium sulfate particles can be effectively captured by the electric field force, which can also improve the capture efficiency of ESP on fine particles. Nonetheless, the operation of SCR with an NH3 injection still leads to an increase in fine particle emission levels at the ESP outlet. In the WFGD system, ammonium sulfates and ammonia can be partly removed by desulfurization through slurry scrubbing. However, the accumulated NH4+ in slurry will generate new ammonium species and ammonia through the entrainment and evaporation of the slurry. Finally, although both ESP and WFGD have a good removal effect on the generated fine particles, the SCR operation with the NH3 slip still results in an increase in the emission of fine particles and NH4+. As the formation and transformation mechanism of ammonia slip and ammonium sulfates generated by SCR is complex and affected by many factors, further research will be required.
机译:选择性催化还原(SCR)可能会由于反硝化过程中的NH3泄漏而影响细颗粒物的排放特性。在这项研究中,实验装置配备了燃煤锅炉,SCR装置,静电除尘器(ESP)和湿法烟气脱硫(WFGD)装置,以研究SCR对最终细颗粒物排放特性的影响。还研究了生成的硫酸铵和NH3在下游ESP和WFGD中的迁移和转化。结果表明由于(NH4)(2)SO4和NH4HSO4气溶胶的形成,SCR可以增加亚微米颗粒的最终排放。在电除尘器系统中,所产生的硫酸铵颗粒可以被电场力有效地捕获,这也可以提高电除尘器对细颗粒的捕获效率。尽管如此,使用NH3注入的SCR操作仍会导致ESP出口处的细颗粒排放量增加。在WFGD系统中,通过淤浆洗涤进行脱硫可以部分除去硫酸铵和氨。但是,淤浆中累积的NH4 +会通过淤浆的夹带和蒸发而产生新的铵类和氨。最后,尽管ESP和WFGD都对生成的细颗粒具有良好的去除效果,但使用NH3滑移的SCR操作仍会导致细颗粒和NH4 +的排放增加。由于SCR产生的氨泥浆和硫酸铵的形成和转化机理很复杂,并且受多种因素的影响,因此需要进一步的研究。

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