School of Energy and Power Engineering, Changsha University of Science and Technology, Changsha, 410076, China.
State Key Laboratory of Coal Combustion, School of Energy and Power Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.
Environ Sci Pollut Res Int. 2020 Jun;27(17):21281-21291. doi: 10.1007/s11356-020-08477-x. Epub 2020 Apr 8.
Reduction of mercury emission from coal combustion is a serious task for public health and environmental societies. Herein, Ce-doped TiO (Ce/TiO) catalyst coupling with a novel optical fiber monolith reactor was applied to efficiently remove elemental mercury (Hg) from coal-fired flue gas. Under the optimal operation condition (i.e., 1.5 mW/cm UV light, 90 °C), above 95% of Hg removal efficiency was attained over the optical fiber monolith reactor coating with 3.40 g/m Ce/TiO catalyst. The effects of flue gas compositions on Hg removal performance were clarified systematically. Gaseous O replenished the surface oxygen, hence maintaining the production of free radicals and promoting the removal of Hg. SO, HCl, and NO inhibited Hg removal in the absence of O due to the competitive adsorption and consumption of free radicals. However, SO and HCl significantly enhanced Hg removal with the participation of O, while NO exhibited obviously inhibitory effect even with the assistance of O. HO also decreased the Hg oxidation capacity owing to the competitive adsorption and reduction of HgO. The optical fiber monolith reactor exhibited much superior Hg removal capacity than the powder reactor. Utilization of Ce/TiO catalyst coupling with an optical fiber monolith reactor provides a cost-effective method for removing Hg from coal-fired flue gas.
从燃煤中减少汞排放是公共卫生和环境领域的一项艰巨任务。在此,我们采用 Ce 掺杂 TiO2(Ce/TiO)催化剂与新型光纤整体式反应器,高效去除燃煤烟气中的元素汞(Hg)。在最佳操作条件(即 1.5 mW/cm 的紫外光,90°C)下,在涂覆有 3.40 g/m Ce/TiO 催化剂的光纤整体式反应器上,Hg 的去除效率超过 95%。系统地澄清了烟气成分对 Hg 去除性能的影响。氧气补充了表面氧,从而维持自由基的产生并促进 Hg 的去除。由于自由基的竞争吸附和消耗,在没有 O 的情况下,SO、HCl 和 NO 会抑制 Hg 的去除。然而,在 O 的参与下,SO 和 HCl 显著增强了 Hg 的去除,而 NO 即使在 O 的辅助下也表现出明显的抑制作用。HO 也由于 HgO 的竞争吸附和还原而降低了 Hg 的氧化能力。光纤整体式反应器表现出比粉末反应器更高的 Hg 去除能力。Ce/TiO 催化剂与光纤整体式反应器的结合为从燃煤烟气中去除 Hg 提供了一种经济有效的方法。