1. 生态環境部城市大氣複合污染成因與防治重點實驗室,開放基金課題,基于NH4+試劑離子的化學電離質譜技術研發與應用,2024-01至2025-12,5萬元,主持;
2.廣東省科技廳,面上項目,夜間殘留層大氣對地面臭氧貢獻的量化評估方法構建與研究,2024-01至2026-12,15萬元,主持;
3.廣州市科學技術局,廣州市青年博士“啟航”項目,基于觀測約束的臭氧生成機制垂直分布研究,2024-01至2026-12,5萬元,主持;
4.國家自然科學基金委員會,青年科學基金項目,基于中間态産物約束的異戊二烯氧化過程垂直分布研究, 2024-01至2026-12,30萬元,主持;
5.國家科技部,國家重點研發計劃項目(課題),2023YFC3706200,反應性和揮發性約束的大氣含碳成分近全組分測量新方法,2023-12 至2027-11,81/1799萬元,參加(子課題負責人);
6.中國博士後科學基金會,面上項目,2019M663367,城市夜間邊界層内揮發性有機物氧化過程的垂直分布研究,2019-09至2022-06,8萬,主持。
1.邊界層内大氣化學組分垂直探測技術研發與應用
2.區域大氣複合污染成因機制
3.揮發性有機物在線質譜技術研發與應用
1. 生态環境部城市大氣複合污染成因與防治重點實驗室,開放基金課題,基于NH4+試劑離子的化學電離質譜技術研發與應用,2024-01至2025-12,5萬元,主持;
2.廣東省科技廳,面上項目,夜間殘留層大氣對地面臭氧貢獻的量化評估方法構建與研究,2024-01至2026-12,15萬元,主持;
3.廣州市科學技術局,廣州市青年博士“啟航”項目,基于觀測約束的臭氧生成機制垂直分布研究,2024-01至2026-12,5萬元,主持;
4.國家自然科學基金委員會,青年科學基金項目,基于中間态産物約束的異戊二烯氧化過程垂直分布研究, 2024-01至2026-12,30萬元,主持;
5.國家科技部,國家重點研發計劃項目(課題),2023YFC3706200,反應性和揮發性約束的大氣含碳成分近全組分測量新方法,2023-12 至2027-11,81/1799萬元,參加(子課題負責人);
6.中國博士後科學基金會,面上項目,2019M663367,城市夜間邊界層内揮發性有機物氧化過程的垂直分布研究,2019-09至2022-06,8萬,主持。
(一)論文
1. Li, X.-B.# (共同第一作者), Zhang, C.#, Liu, A., Yuan, B., Yang, H., Liu, C., Wang, S., Huangfu, Y., Qi, J., Liu, Z., He, X., Song, X., Chen, Y., Peng, Y., Zhang, X., Zheng, E., Yang, L., Yang, Q., Qin, G., Zhou, J., and Shao, M.: Assessment of long tubing in measuring atmospheric trace gases: applications on tall towers, Environmental Science: Atmospheres, 3, 2023.
2. Li, X.-B., Yuan, B., Wang, S., Wang, C., Lan, J., Liu, Z., Song, Y., He, X., Huangfu, Y., Pei, C., Cheng, P., Yang, S., Qi, J., Wu, C., Huang, S., You, Y., Chang, M., Zheng, H., Yang, W., Wang, X., and Shao, M.: Variations and sources of volatile organic compounds (VOCs) in urban region: insights from measurements on a tall tower, Atmos. Chem. Phys., 22, 10567-10587, 2022.
3. Li, X.-B., and Fan, G.: Interannual variations, sources, and health impacts of the springtime ozone in Shanghai, Environ Pollut, 306, 119458, 2022.
4. Li, X.-B., Yuan, B., Parrish, D. D., Chen, D., Song, Y., Yang, S., Liu, Z., and Shao, M.: Long-term trend of ozone in southern China reveals future mitigation strategy for air pollution, Atmos Environ, 269, 118869, 2022.
5. Li, X.-B., Fan, G., Lou, S., Yuan, B., Wang, X., and Shao, M.: Transport and boundary layer interaction contribution to extremely high surface ozone levels in eastern China, Environ Pollut, 268, 115804, 2021.
6. Li, X.-B., Peng, Z.-R., Wang, D., Li, B., Huangfu, Y., Fan, G., Wang, H., and Lou, S.: Vertical distributions of boundary-layer ozone and fine aerosol particles during the emission control period of the G20 summit in Shanghai, China, Atmospheric Pollution Research, 12, 352-364, 2021.
7. Li, X.-B., Peng, Z.-R., Lu, Q.-C., Wang, D., Hu, X.-M., Wang, D., Li, B., Fu, Q., Xiu, G., and He, H.: Evaluation of unmanned aerial system in measuring lower tropospheric ozone and fine aerosol particles using portable monitors, Atmos Environ, 222, 117134, 2020.
8. Li, X.-B., Wang, D., Lu, Q.-C., Peng, Z.-R., Fu, Q., Hu, X.-M., Huo, J., Xiu, G., Li, B., Li, C., Wang, D.-S., and Wang, H.: Three-dimensional analysis of ozone and PM2.5 distributions obtained by observations of tethered balloon and unmanned aerial vehicle in Shanghai, China, Stoch Env Res Risk A, 32, 1189-1203, 2018.
9. Li, X.-B., Wang, D.-S., Lu, Q.-C., Peng, Z.-R., and Wang, Z.-Y.: Investigating vertical distribution patterns of lower tropospheric PM2.5 using unmanned aerial vehicle measurements, Atmos Environ, 173, 62-71, 2018.
10. Li, X.-B., Wang, D.-S., Lu, Q.-C., Peng, Z.-R., Lu, S.-J., Li, B., and Li, C.: Three-dimensional investigation of ozone pollution in the lower troposphere using an unmanned aerial vehicle platform, Environ Pollut, 224, 107-116, 2017.
11. Li, X.-B., Lu, Q.-C., Lu, S.-J., He, H.-D., Peng, Z.-R., Gao, Y., and Wang, Z.-Y.: The impacts of roadside vegetation barriers on the dispersion of gaseous traffic pollution in urban street canyons, Urban Forestry & Urban Greening, 17, 80-91, 2016.
12. 劉智傑, 李小兵* (共同通訊作者), 袁斌*, 莫梓偉, 譚鑫, 周俊, 王思行, 何賢俊, 邵敏: 大氣邊界層内揮發性有機物的垂直觀測方法及應用進展, 科學通報, 66, 4098-4111, 2021.
(二)論著
無
(三)專利
1. 李小兵,袁斌,邵敏,楊紅龍,劉智傑,一種基于高塔的揮發性有機物在線垂直觀測系統,ZL202021026533.4,2021年2月5日,實用新型專利;
研究生課程:《大氣化學及其應用》、《大氣環境化學》
含碳組分大氣環境行為及效應研究團隊,大氣化學組分的無人機機載觀測技術、基于高塔的大氣化學組分垂直梯度在線測量技術、揮發性有機物在線質譜技術。