Bin Hu, Yang Yi, Cai Liang, Yang Linjun, Roszak Szczepan
a Key Laboratory of Energy Thermal Conversion and Control, Ministry of Education, School of Energy and Environment , Southeast University , Nanjing , People's Republic of China.
b Advanced Materials Engineering and Modelling Group, Faculty of Chemistry , Wroclaw University of Science and Technology , Wroclaw , Poland.
Environ Technol. 2019 Jan;40(2):154-162. doi: 10.1080/09593330.2017.1380716. Epub 2017 Oct 9.
Desulfurization wastewater evaporation technology is used to enhance the removal of gaseous mercury (Hg) in conventional air pollution control devices (APCDs) for coal-fired power plants. Studies have affirmed that gaseous Hg is oxidized and removed by selective catalytic reduction (SCR), an electrostatic precipitator (ESP) and wet flue gas desulfurization (WFGD) in a coal-fired thermal experiment platform with WFGD wastewater evaporation. Effects of desulfurization wastewater evaporation position, evaporation temperature and chlorine ion concentration on Hg oxidation were studied as well. The Hg oxidation efficiency was increased ranging from 30% to 60%, and the gaseous Hg removal efficiency was 62.16% in APCDs when wastewater evaporated before SCR. However, the Hg oxidation efficiency was 18.99% and the gaseous Hg removal efficiency was 40.19% in APCDs when wastewater evaporated before ESP. The results show that WFGD wastewater evaporation before SCR is beneficial to improve the efficiency of Hg oxidized and removed in APCDs. Because Hg can be easily removed in ACPDs and WFGD wastewater in power plants is enriched with chlorine ions, this method realizes WFGD wastewater zero discharge and simultaneously enhances Hg removal in APCDs.
脱硫废水蒸发技术用于提高燃煤电厂常规空气污染控制设备(APCDs)中气态汞(Hg)的去除率。研究证实,在具有湿法烟气脱硫(WFGD)废水蒸发的燃煤热实验平台上,气态汞通过选择性催化还原(SCR)、静电除尘器(ESP)和湿法烟气脱硫(WFGD)被氧化并去除。还研究了脱硫废水蒸发位置、蒸发温度和氯离子浓度对汞氧化的影响。当废水在SCR之前蒸发时,汞氧化效率提高了30%至60%,APCDs中气态汞的去除率为62.16%。然而,当废水在ESP之前蒸发时,APCDs中汞氧化效率为18.99%,气态汞去除率为40.19%。结果表明,SCR之前的WFGD废水蒸发有利于提高APCDs中汞氧化和去除的效率。由于汞在APCDs中易于去除,且电厂WFGD废水中富含氯离子,该方法实现了WFGD废水零排放,同时提高了APCDs中汞去除率。