代表性论文及著作
1. Yalli Tong, Kun Wang, Jiajia Gao*, et al., Mercury distribution and emission reduction potentials of Chinese coal-fired industrial boilers. Air Quality, Atmosphere & Health, 2022, 15, 967-978.
2. Jiajia Gao, Kun Wang, Yali Tong, et al., Refined spatio-temporal emission assessment of Hg, As, Cd, Cr and Pb from Chinese coal-fired industrial boilers, Science of the Total Environment, 2021, 757, 143733.
3. Kun Wang, Yali Tong, Jiajia Gao*, et al., Impacts of LULC, FDDA, Topo-wind and UCM schemes on WRF-CMAQ over the Beijing-Tianjin-Hebei region, China, Atmospheric Pollution Research, 2021, 12,2,292-304.
4. Tao Yue, Jiajia Gao*, Yali Tong, et al., Historical emissions and future mitigation of primary air pollutants from industrial boiler in China, Environmental Engineering and Management Journal, 2021, 20, 5, 841-851.
5. Yali Tong, Tao Yue*, Jiajia Gao*, et al., Partitioning and Emission Characteristics of Hg, Cr, Pb, and As Among Air Pollution Control Devices in Chinese Coal-Fired Industrial Boilers, Energy & Fuels, 2020, 34, 7067-7075.
6. Tao Yue, Kun Wang*, Chenlong Wang, Yali Tong, Jiajia Gao*, et al., Emission Characteristics of Hazardous Atmospheric P3ollutants from Ultra-low Emission Coal-fired Industrial Boilers in China, Aerosol and Air Quality Research, 2020, 20: 877–888.
7. Jiajia Gao, Kun Wang, Yong Wang, et al., Temporal-spatial characteristics and source apportionment of PM2.5 as well as its associated chemical species in the Beijing-Tianjin-Hebei region of China, Environmental Pollution, 2018, 233, 714-724. (ESI高被引论文)
8. Tao Yue, Xiang Gao, Jiajia Gao*, et al., Emission characteristics of NOx, CO, NH3, and VOCs from gas-fired industrial boilers based on field measurements in Beijing city, China, Atmospheric Environment, 2018, 184, 1-8.
9. Jiajia Gao, Tao Yue*, Penglai Zuo*, et al., Current Status and Atmospheric Mercury Emissions Associated with Large-Scale Gold Smelting Industry in China, Aerosol and Air Quality Research, 2017, 17: 238-244.
10. Jiajia Gao, Hezhong Tian*, Ke Cheng, et al., The variation of chemical characteristics of PM2.5 and PM10 and formation causes during two haze pollution events in urban Beijing, China. Atmospheric Environment, 2015, 107, 1−8.
11. 《工业锅炉大气污染物控制技术与应用》,中国环境科学出版社,2016年(参编).
12. 《燃煤锅炉重金属排放与控制》,中国环境科学出版社,2022年(参编).
标准
中华人民共和国国家环境保护标准:
《石灰石/石灰-石膏湿法烟气脱硫工程通用技术规范》(HJ 179-2018)(参编)、《污染源源强核算技术指南 锅炉》(HJ 991-2018)(参编)