State Key Joint Laboratory of Environmental Simulation & Pollution Control, School of Environment , Beijing Normal University , Beijing 100875 , China.
Center for Atmospheric Environmental Studies , Beijing Normal University , Beijing 100875 , China.
Environ Sci Technol. 2018 Dec 4;52(23):14015-14026. doi: 10.1021/acs.est.8b03656. Epub 2018 Nov 12.
To achieve ultralow-emission (ULE) standards, wet electrostatic precipitators (WESP) installed downstream from wet flue gas desulfurization (WFGD) have been widely used in Chinese coal-fired power plants (CFPPs). We conducted a comprehensive field test study at four 300 MW level ULE CFPPs, to explore the impact of wet clean processing (WFGD and WESP) on emission characteristics of three size fractions of particulate matter (PM: PM, PM, and PM) and their ionic compositions. All these CFPPs are installed with limestone-based/magnesium-based WFGD and followed by WESP as the end control device. Our results indicate that particle size distribution, mass concentration of PM, and ionic compositions in flue gas change significantly after passing WFGD and WESP. PM mass concentrations through WFGD are significantly affected by the relative strength between desulfur slurry scouring and flue gas carrying effects. Concentrations of ions in PM increase greatly after passing WFGD; especially, SO in PM, PM, and PM increase on average by about 1.4, 3.9, and 8.3 times, respectively. However, WESP before the stack can effectively reduce final PM emissions and their major ionic compositions. Furthermore, emission factors (kg/(t of coal)) of PM for different combinations of air pollution control devices are presented and discussed.
为了达到超低排放 (ULE) 标准,在中国燃煤电厂 (CFPP) 中,已广泛使用安装在湿法烟气脱硫 (WFGD) 系统下游的湿式静电除尘器 (WESP)。我们在四个 300MW 级 ULE CFPP 中进行了全面的现场测试研究,以探讨湿法清洁处理(WFGD 和 WESP)对三个粒径范围(PM:PM、PM 和 PM)的颗粒物排放特性及其离子成分的影响。所有这些 CFPP 均安装有基于石灰石/镁质的 WFGD,并采用 WESP 作为末端控制装置。我们的结果表明,经过 WFGD 和 WESP 后,颗粒物的粒径分布、PM 质量浓度和烟气中的离子成分发生了显著变化。通过 WFGD 的 PM 质量浓度受脱硫浆液冲洗和烟气夹带效应之间相对强度的显著影响。PM 中离子的浓度在经过 WFGD 后大大增加;特别是,PM、PM 和 PM 中的 SO 分别平均增加了约 1.4、3.9 和 8.3 倍。然而,烟囱前的 WESP 可以有效地降低最终 PM 排放及其主要离子成分。此外,还提出并讨论了不同组合的空气污染控制装置的 PM 排放因子 (kg/(t 煤))。