National Engineering Research Center of New Energy Power Generation, North China Electric Power University, Beijing 102206, China.
National Engineering Research Center of New Energy Power Generation, North China Electric Power University, Beijing 102206, China.
Sci Total Environ. 2023 Jan 20;857(Pt 3):159712. doi: 10.1016/j.scitotenv.2022.159712. Epub 2022 Oct 25.
Facing the increasing demand of atmosphere pollutant control, selective catalytic reduction (SCR) technology has been widely applied in various industries for NO abatement. However, in the condition of complicated flue gas components, the heavy metal issue is a great challenge to the catalyst deactivation and atmospheric pollution control. In this review, with the comprehensive consideration of SCR catalysts in heavy metal-rich flue gas scenarios, the distribution character of heavy metals in SCR system is firstly summarized, then the detailed interaction mechanism between heavy metals and the vanadium‑titanium-based catalyst is discussed. Focusing on the mercury oxidation as well as against arsenic/lead poisoning, certain modification strategies are also concluded to develop novel SCR catalysts with multiple functions. Furthermore, the state-of-the-art technologies regarding the regeneration, the valuable metal recovery, and the harmless treatment of the spent SCR catalyst are also reported. This paper provides theoretical guidance for the manufacture of novel SCR catalysts under multiple scenarios, as well as the synergistic control of NO and heavy metals.
面对日益增长的大气污染物控制需求,选择性催化还原(SCR)技术已广泛应用于各个行业以减少 NO 排放。然而,在复杂的烟道气成分条件下,重金属问题对催化剂失活和大气污染控制构成了巨大挑战。在本综述中,综合考虑富含重金属的烟道气中的 SCR 催化剂,首先总结了重金属在 SCR 系统中的分布特征,然后详细讨论了重金属与钒钛基催化剂之间的相互作用机制。针对汞氧化以及砷/铅中毒问题,还总结了某些改性策略,以开发具有多种功能的新型 SCR 催化剂。此外,还报道了有关废 SCR 催化剂的再生、有价金属回收和无害化处理的最新技术。本文为多种场景下新型 SCR 催化剂的制造以及 NO 和重金属的协同控制提供了理论指导。