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活性炭与粉尘混合用于烟气脱硫脱硝的偶联机制。

Coupling mechanism of activated carbon mixed with dust for flue gas desulfurization and denitrification.

机构信息

Beijing Engineering Research Center of Process Pollution Control, National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

Beijing Engineering Research Center of Process Pollution Control, National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

J Environ Sci (China). 2020 Dec;98:205-214. doi: 10.1016/j.jes.2020.06.002. Epub 2020 Jun 21.

Abstract

To clarify the effect of coking dust, sintering dust and fly ash on the activity of activated carbon for various industrial flue gas desulfurization and denitrification, the coupling mechanism of the mixed activated carbon and dust was investigated to provide theoretical reference for the stable operation. The results show that coking dust had 34% desulfurization efficiency and 10% denitrification efficiency; correspondingly, sintering dust and fly ash had no obvious desulfurization and denitrification activities. For the mixture of activated carbon and dust, the coking dust reduced the desulfurization and denitrification efficiencies by blocking the pores of activated carbon, and its inhibiting effect on activated carbon was larger than its own desulfurization and denitrification activity. The sintering dust also reduced the desulfurization efficiency on the activated carbon while enhancing the denitrification efficiency. Fly ash blocked the pores of activated carbon and reduced its reaction activity. The reaction activity of coking dust mainly came from the surface functional groups, similar to that of activated carbon. The reaction activity of sintering dust mainly came from the oxidative property of FeO, which oxidized NO to NO and promoted the fast selectively catalytic reduction (SCR) of NO to form N. Sintering dust was activated by the joint action of activated carbon, and both had a coupling function. Sintering dust enhanced the adsorption and oxidation of NO, and activated carbon further promoted the reduction of NO by NH; thus, the denitrification efficiency increased by 5%-7% on the activated carbon.

摘要

为了阐明焦粉、烧结粉尘和飞灰对各种工业烟气脱硫脱硝用活性炭活性的影响,研究了混合活性炭和粉尘的耦合机制,为稳定运行提供了理论参考。结果表明,焦粉的脱硫效率为 34%,脱硝效率为 10%;相应地,烧结粉尘和飞灰没有明显的脱硫和脱硝活性。对于活性炭和粉尘的混合物,焦粉通过堵塞活性炭的孔隙降低了脱硫和脱硝效率,其对活性炭的抑制作用大于其自身的脱硫和脱硝活性。烧结粉尘在提高脱硝效率的同时也降低了对活性炭的脱硫效率。飞灰堵塞了活性炭的孔隙,降低了其反应活性。焦粉的反应活性主要来自表面官能团,与活性炭相似。烧结粉尘的反应活性主要来自 FeO 的氧化性,它将 NO 氧化为 NO,并促进 NO 的快速选择性催化还原(SCR)形成 N。烧结粉尘在活性炭的共同作用下被激活,两者具有耦合作用。烧结粉尘增强了 NO 的吸附和氧化,而活性炭进一步促进了 NH 对 NO 的还原,从而使脱硝效率在活性炭上提高了 5%至 7%。

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