教师名录

肖化云
职       称:杰青  特聘教授(长聘二级)
                 博士生导师
研究方向:生态学、生物地球化学、全球变化

             大气环境科学、同位素地球化学

电子信箱:xiaohuayun@sjtu.edu.cn

 

个人简

学习经历:

199909 –200207月,中国科学院研究生院,环境地球化学,博士

199409 –199710月,中国科学院研究生院,地球化学,硕士

198909 –199307月,昆明理工大学,地质系,本科

 

工作经历:

2023.9–至今,太阳集团城网站2003,特聘教授

2019.6–2023.8,太阳集团城网站2003环境科学与工程学院,特聘教授

2016–2021年,天津大学地球科学学院,客座教授

2015–2019年,中国科学院地球化学研究所所学位委员会,副主任

2015–2019年,江西省大气污染成因与控制重点实验室,主任(兼)

2015–2019年,东华理工大学校学术委员会,副主任(兼)

2010–2019年,环境地球化学国家重点实验室,副主任

2010–2019年,中国科学院地球化学研究所所学术委员会,委员

2003.12–2019.5, 中国科学院地球化学研究所,研究员(二级)

 

学术任职:

2020年-至今,Atmospheretopic editor

2020年-至今,Toxics,编委

2019年-至今,中文EI期刊《湖泊科学》,编委

2016年-至今,Scientific Report,编委

2012年-至今,中文核心期刊《地球与环境》,编委

2015年-2019年,国际原子能机构 FNCA气候科学项目协调员

 

论著(2017年至今):

  1. 肖化云等. 大气环境同位素地球化学理论和方法—中国南方大气硫、氮污染及来源示踪. 北京:科学出版社. 2017. 1-505.
  2. Wang, W., Li, C., Xiao, H.-Y., Li, Z., Zhao, Y. Relative humidity-dependent evolution of molecular composition of α-pinene secondary organic aerosol upon heterogeneous oxidation by hydroxyl radicals. Journal of Environmental Sciences. 2025, 148, 210-220.
  3. Chen, D., Xiao, H.-Y., Sun, N., Yan, J., Yin, S. Characterizing leaf-deposited particles: Single-particle mass spectral analysis and comparison with naturally fallen particles. Environmental Science and Ecotechnology. 2024, 21. https://doi.org/10.1016/j.ese.2024.100432.
  4. Guan, H., Chen, Z., Tian, J., Xiao, H.-Y. Assessing PM2.5 Dynamics and Source Contributions in Southwestern China: Insights from Winter Haze Analysis. Atmosphere. 2024, 15(7). https://doi.org/10.3390/atmos15070855.
  5. Gui, L., Xu, Y., You, Y.-C., Ma, Y.-J., Yang, T., Liu, T., Xiao, H.-W., Xiao, H., Xiao, H.-Y. Oxidative Degradation of Higher-Molecular-Weight Aromatic Amine Compounds Is a Potential Source of Anilinium in Urban Aerosols. Environmental Science & Technology Letters. 2024, https://doi.org/10.1021/acs.estlett.4c00935.
  6. Guo, W., Li, Z., Zhang, Z., Zhu, R., Xiao, H.W, Xiao, H.-Y.* Sources and influences of atmospheric nonpolar organic compounds in Nanchang, central China: Full-year monitoring with a focus on winter pollution episodes. Science of the Total Environment. 2024, 912. https://doi.org/10.1016/j.scitotenv.2023.169216.
  7. Guo, W., Zhang, Z., Zhu, R., Li, Z., Liu, C., Xiao, H.W, Xiao, H.-Y.* Pollution characteristics, sources, and health risks of phthalate esters in ambient air: A daily continuous monitoring study in the central Chinese city of Nanchang. Chemosphere. 2024, 353, 141564-141564.
  8. Ma, Y.-J., Xu, Y., Yang, T., Xiao, H.-W., Xiao, H.-Y. Measurement report: Characteristics of nitrogen-containing organics in PM2.5 in Ürümqi, northwestern China - differential impacts of combustion of fresh and aged biomass materials. Atmospheric Chemistry and Physics. 2024, 24(7), 4331-4346. https://doi.org/10.5194/acp-24-4331-2024.
  9. Wang, R., Xiao, H., Xu, Y., Long, A.-M., Zhou, M., Guan, W.-K., Xiao, H.-Y., Xiao, H.-W., Dual isotope analysis reveals the COVID-19 lockdown impact on nitrate aerosol sources and formation pathways in Shanghai. 2024, Science of the Total Environment 952. https://doi.org/10.1016/j.scitotenv.2024.175839.
  10. Wang, Y., Xiao, H.-W., Yin, M.-J., Sun, Q.-B., Fu, F., Tao, J.-H., Xiao, H.-Y., Stable carbon isotope reveals high impact of fishing ship activities on total carbon from PM2.5 in Qingdao, China. 2024, Environmental Pollution 362. https://doi.org/10.1016/j.envpol.2024.124958.
  11. Xiao, H., Xiao, H.-W., Xu, Y., Zheng, N.-J.*, Xiao, H.-Y.* Combustion-driven inorganic nitrogen in PM2.5 from a city in central China has the potential to enhance the nitrogen load of North China. 2024, Journal of hazardous materials 483, 136620-136620.
  12. Xu, Y., Lin, X., Sun, Q.-B., Xiao, H.-W., Xiao, H., Xiao, H.-Y.* Elaborating the Atmospheric Transformation of Combined and Free Amino Acids From the Perspective of Observational Studies. 2024, Journal of Geophysical Research-Atmospheres 129(16). https://doi.org/10.1029/2024jd040730.
  13. Xu, Y., Liu, T., Ma, Y.-J., Sun, Q.-B., Xiao, H.-W., Xiao, H., Xiao, H.-Y.*, Liu, C.-Q., 2024. Measurement report: Occurrence of aminiums in PM2.5 during winter in China - aminium outbreak during polluted episodes and potential constraints. Atmospheric Chemistry and Physics. 2024,  24(18), 10531-10542
  14. Zhu, R.-G., Xiao, H.-Y.*, Yin, M., Xiao, H., Zhou, Z., Wei, G., Liu, C., Hu, C., 2024. Kinetic nitrogen isotope effects of 18 amino acids degradation during burning processes. Scientific Reports. 2024,  14(1). https://doi.org/10.1038/s41598-024-65544-w.
  15. Zhu, R.-G., Xiao, H.-Y.*, Zhou, Z., Yin, M., Xiao, H., Hu, C., Wei, G., Liu, C., Thermal degradation of 18 amino acids during pyrolytic processes. Scientific Reports. 2024, 14(1). https://doi.org/10.1038/s41598-024-79032-8.
  16. Ye, Q., Yao, M., Wang, W., Li, Z., Li, C., Wang, S., Xiao, H.-Y., Zhao, Y.. Multiphase interactions between sulfur dioxide and secondary organic aerosol from the photooxidation of toluene: Reactivity and sulfate formation. Science of the Total Environment. 2024, 912. https://doi.org/10.1016/j.scitotenv.2023.168736.
  17. Yang, T., Xu, Y., Ma, Y.-J., Wang, Y.-C., Yu, J.Z., Sun, Q.-B., Xiao, H.-W., Xiao, H.-Y., Liu, C.-Q. Field Evidence for Constraints of Nearly Dry and Weakly Acidic Aerosol Conditions on the Formation of Organosulfates. Environmental Science & Technology Letters. 2024, 11(9), 981-987. https://doi.org/10.1021/acs.estlett.4c00522.
  18. Yao, M., Zhao, Y., Chang, C., Wang, S., Li, Z., Li, C., Chan, A.W.H., Xiao, H.-Y, Multiphase Reactions between Organic Peroxides and Sulfur Dioxide in Internally Mixed Inorganic and Organic Particles: Key Roles of Particle Phase Separation and Acidity. Environmental Science & Technology. 2023, 57(41), 15558-15570.
  19. Xiao, H.-W., Xu, Y., Xiao, H.-Y.*, 2023. Source apportionment of black carbon aerosols in winter across China. Atmospheric Environment. 2023, 298. https://doi.org/10.1016/j.atmosenv.2023.119622.
  20. Fan, Y., Zhang, K., Xiao, H.-Y, Hogan, C.J., Li, C. Sintering of metallic nano-aggregates in an atmospheric pressure non-thermal plasma. Journal of Aerosol Science. 2023, 171. https://doi.org/10.1016/j.jaerosci.2023.106167.
  21. Huang, L., Wang, Y., Zhao, Y., Hu, H., Yang, Y., Wang, Y., Yu, J.-Z., Chen, T., Cheng, Z., Li, C., Li, Z., Xiao, H.-Y. Biogenic and Anthropogenic Contributions to Atmospheric Organosulfates in a Typical Megacity in Eastern China. Journal of Geophysical Research-Atmospheres. 2023, 128(17). https://doi.org/10.1029/2023jd038848.
  22. Li, C., Li, Y., Li, X., Cai, R., Fan, Y., Qiao, X., Yin, R., Yan, C., Guo, Y., Liu, Y., Zheng, J., Kerminen, V.-M., Kulmala, M., Xiao, H.-Y., Jiang, J. Comprehensive simulations of new particle formation events in Beijing with a cluster dynamics-multicomponent sectional model. Atmospheric Chemistry and Physics. 2023, 23(12), 6879-6896.
  23. Li, C., Zhao, Y., Li, Z., Liu, L., Zhang, X., Zheng, J., Kerminen, V.-M., Kulmala, M., Jiang, J., Cai, R., Xiao, H.-Y. The dependence of new particle formation rates on the interaction between cluster growth, evaporation, and condensation sink. Environmental Science-Atmospheres. 2023, 3(1), 168-181.
  24. Lin, X., Xu, Y.*, Zhu, R.-G., Xiao, H.-W., Xiao, H.-Y.* Proteinaceous Matter in PM2.5 in Suburban Guiyang, Southwestern China: Decreased Importance in Long-Range Transport and Atmospheric Degradation. Journal of Geophysical Research-Atmospheres. 2023, 128(12). https://doi.org/10.1029/2023jd038516.
  25. Liu, T., Xu, Y., Sun, Q.-B., Xiao, H.-W., Zhu, R.-G., Li, C.-X., Li, Z.-Y., Zhang, K.-Q., Sun, C.-X., Xiao, H.-Y. Characteristics, Origins, and Atmospheric Processes of Amines in Fine Aerosol Particles in Winter in China. Journal of Geophysical Research-Atmospheres. 2023,128(14). https://doi.org/10.1029/2023jd038974.
  26. Xiao, Y.-N., Xiao, H.-W., Sun, Q.-V., Zhao, B., Xiao, H.-Y. Enhanced aerosols over the southeastern Tibetan Plateau induced by open biomass burning in spring 2020. Science of the Total Environment. 2023, 867. https://doi.org/10.1016/j.scitotenv.2023.161509.
  27. Xu, Y., Dong, X.-N., He, C., Wu, D.-S., Xiao, H.-W., Xiao, H.-Y.* Mist cannon trucks can exacerbate the formation of water-soluble organicaerosol and PM2.5 pollution in the road environment. Atmospheric Chemistry and Physics. 2023, 23(12), 6775-6788.
  28. Yang, T., Xu, Y.*, Ye, Q., Ma, Y.-J., Wang, Y.-C., Yu, J.-Z., Duan, Y.-S., Li, C.-X., Xiao, H.-W., Li, Z.-Y., Zhao, Y.*, Xiao, H.-Y.* Spatial and diurnal variations of aerosol organosulfates in summertime Shanghai, China: potential influence of photochemical processes and anthropogenic sulfate pollution. Atmospheric Chemistry and Physics. 2023, 23(20), 13433-13450.
  29. Zang, H., Huang, D., Zhong, J., Li, Z., Li, C., Xiao, H.-Y., Zhao, Y., Direct probing of acylperoxy radicals during ozonolysis of α-pinene: constraints on radical chemistry and production of highly oxygenated organic molecules. Atmospheric Chemistry and Physics. 2023, 23(19), 12691-12705.
  30. Pan, Y., Xiao, H., Xiao, H.-Y., Zhu, R. Distribution characteristics of airborne bacterial community in different anthropogenic activity regions across Nanchang, China. Atmospheric Pollution Research. 2022, 13(12). https://doi.org/10.1016/j.apr.2022.101610.
  31. Xie, Y., Zhao, Y., Xiao, H.-Y.* Effects of secondary formation of inorganic ions and low molecular weight organic acids and biomass burning in regional pollution of PM2.5 in Central China. Atmospheric Pollution Research. 2022, 13(5). https://doi.org/10.1016/j.apr.2022.101412.
  32. Xie, Z., Xiao, H.-Y.*, Xu, Y.*, Organic Acids in Sequential Volume-Based Rainwater Samples in Shanghai: Seasonal Variations and Origins. Atmosphere. 2022, 13(9). https://doi.org/10.3390/atmos13091502.
  33. Xu, Y., Dong, X.-N., Xiao, H.-Y.*, He, C., Wu, D.-S. Water-Insoluble Components in Rainwater in Suburban Guiyang, Southwestern China: A Potential Contributor to Dissolved Organic Carbon. Journal of Geophysical Research-Atmospheres. 2022, 127(24). https://doi.org/10.1029/2022jd037721.
  34. Xu, Y., Dong, X.-N., Xiao, H.-Y.*, Zhou, J.-X., Wu, D.-S., Proteinaceous Matter and Liquid Water in Fine Aerosols in Nanchang, Eastern China: Seasonal Variations, Sources, and Potential Connections. Journal of Geophysical Research-Atmospheres. 2022, 127(15). https://doi.org/10.1029/2022jd036589.
  35. Yao, M., Li, Z., Li, C., Xiao, H.-Y., Wang, S., Chan, A.W.H., Zhao, Y. Isomer-Resolved Reactivity of Organic Peroxides in Monoterpene-Derived Secondary Organic Aerosol. Environmental Science & Technology. 2022, 56(8), 4882-4893. https://doi.org/10.1021/acs.est.2c01297.
  36. Zang, H., Zhao, Y., Huo, J., Zhao, Q., Fu, Q., Duan, Y., Shao, J., Huang, C., An, J., Xue, L., Li, Z., Li, C., Xiao, H.-Y. High atmospheric oxidation capacity drives wintertime nitrate pollution in the eastern Yangtze River Delta of China. Atmospheric Chemistry and Physics. 2022, 22(7), 4355-4374.
  37. Zhao, Y., Liu, Z., Yao, M., Wang, S., Li, Z., Li, C., Xiao, H.-Y. Persistence of Monoterpene-Derived Organic Peroxides in the Atmospheric Aqueous Phase. Acs Earth and Space Chemistry. 2022, 6(9), 2226-2235.
  38. Zhao, Y., Yao, M., Wang, Y., Li, Z., Wang, S., Li, C., Xiao, H.-Y. Acylperoxy Radicals as Key Intermediates in the Formation of Dimeric Compounds in α-Pinene Secondary Organic Aerosol. Environmental Science & Technology. 2022, 56(20), 14249-14261
  39. Zhu, R.-G., Xiao, H.-Y*., Cheng, L., Zhu, H., Xiao, H.W, Gong, Y. Measurement report: Characterization of sugars and amino acids in atmospheric fine particulates and their relationship to local primary sources. Atmospheric Chemistry and Physics. 2022, 22(21), 14019-14036.
  40. Yin M J, Guan H*, Luo L, Xiao H Y, Zhang Z Y. Using Nitrogen and Oxygen stable isotopes to analyze the major NOx sources to nitrate of PM2.5 in Lanzhou, Northwest China, in winter-spring periods. Atmospheric Environment. 2022, 119036.
  41. Wen, Z., Li, B., Xiao, H.-Y., Lv. Z., Zhu, R.G. Combined positive matrix factorization (PMF) and nitrogen isotope signature analysis to provide insights into the source contribution to aerosol free amino acids. Atmospheric Environment. 2022, 268, 118799.
  42. Zhu, R.G., Xiao, H.-Y.*, Luo, L., Xiao, H., Wen, Z., Zhu, Y., Fang, X., Pan, Y., Chen, Z. Measurement report: Hydrolyzed amino acids in fine and coarse atmospheric aerosol in Nanchang, China: concentrations, compositions, sources and possible bacterial degradation state. Atmospheric Chemistry and Physics. 2021, 21, 2585-2600.
  43. Zhu, R.-G., Xiao, H.-Y.*, Wen, Z., Zhu, Y., Fang, X., Pan, Y., Chen, Z., Xiao H.W. Oxidation of proteinaceous matter by ozone and nitrogen dioxide in PM2.5: Reaction mechanisms and atmospheric implications. Journal of Geophysical Research: Atmospheres. 2021, 126, e2021JD034741.
  44. Zhang, Z.Y., Wang, W.X., Zheng, N.J., Cao, Y, S., Xiao, H.W., Zhu, R.G., Guan, H., Xiao, H.-Y.*. Methylmercury biomagnification in aquatic food webs of Poyang Lake, China: Insights from amino acid signatures. Journal of Hazardous Materials. 2021, 404: 123700.
  45. Zhang, Z.Y., Guan, H., Xiao, H.W., Liang, Y., Zheng, N., Luo, L., Liu, C., Fang, X., Xiao, H.-Y.*. Oxidation and sources of atmospheric NOx during winter in Beijing based on δ18O-δ15N space of particulate nitrate. Environmental Pollution. 2021, 276: 116708.
  46. Wang, Y., Zhao, Y., Wang, Y., Yu, J.Z., Shao, J., Liu, P., Zhu, W., Cheng, Z., Li, Z., Yan, N., Xiao, H.-Y. Organosulfates in atmospheric aerosols in Shanghai, China: seasonal and interannual variability, origin, and formation mechanisms. Atmospheric Chemistry and Physics. 2021, 21(4):2959-2980.
  47. Wang, Y., Zhao, Y., Li, Z., Li, C., Yan, N., Xiao, H.-Y. Importance of Hydroxyl Radical Chemistry in Isoprene Suppression of Particle Formation from α-Pinene Ozonolysis. ACS Earth Space Chem. 2021, 5(3): 487–499
  48. Luo, L., Zhu, R.G., Song, C., Peng, J., Guo, W., Liu, Y., Zheng, N., Xiao, H.W. Xiao, H.-Y.*. Changes in nitrate accumulation mechanisms as PM2.5 levels increase on the North China Plain: A perspective from the dual isotopic compositions of nitrate. Chemosphere. 2021, 263, 127915.
  49. Zhou, Y., Zheng, N., Luo, L., Zhao, J., Qu, L., Guan, H., Xiao, H.W., Zhang, Z., Tian, J., Xiao, H.-Y.*. Biomass burning related ammonia emissions promoted a self-amplifying loop in the urban environment in Kunming (SW China). Atmospheric Environment. 2021, 253: 118138.
  50. Zhou, Y., Xiao, H.-Y.*, Guan, H.*, Zheng, N., Zhang, Z., Tian, J., Qu, L., Zhao, J., Xiao, H.W. Chemical composition and seasonal variations of PM2.5 in an urban environment in Kunming, SW China: Importance of prevailing westerlies in cold season. Atmospheric Environment. 2020, 237, 117704.
  51. Tian, J., Guan, H., Zhou, Y., Zheng, N., Xiao, H., Zhao, J., Zhang, Z., Xiao, H.-Y.*. Isotopic source analysis of nitrogen-containing aerosol: A study of PM2.5 in Guiyang (SW, China). Science of the Total Environment. 2021, 760: 143935.
  52. Xiao, H.W., Mao, D.Y., Huang, L.L., Xiao*, H.Y., Wu, J.F. Evaluation of black carbon source apportionment based on one year's daily observations in Beijing. Science of the Total Environment. 2021, 773: 145668.
  53. Guo, W., Luo, L., Zhang, Z.Y., Zheng, N.J., Xiao, H.W., Xiao, H.-Y.*. The use of stable oxygen and nitrogen isotopic signatures to reveal variations in the nitrate formation pathways and sources in different seasons and regions in China. Environmental Research. 2021, 201, 111537.
  54. Guo, W., Zhang, X., Zhang, Z., Zheng, N., Xiao, H.W., Xiao, H.-Y.*. Low-molecular-weight carboxylates in urban southwestern China: Source identification and effects on aerosol acidity. Atmospheric Pollution Research. 2021, 12: 101141.
  55. Liu, C., Huang*, J., Hu, X.M., Hu, C., Wang, Y., Fang, X., Luo, L., Xiao, H.W., Xiao, H.-Y.*. Evaluation of WRF-Chem simulations on vertical profiles of PM2.5 with UAV observations during a haze pollution event. Atmospheric Environment. 2021, 252: 118332.
  56. Liu, C., Huang*, J., Tao, X., Deng, C., Fang, X., Liu, Y., Luo, L., Zhang, Z., Xiao, H.W., Xiao, H.-Y.*. An observational study of the boundary-layer entrainment and impact of aerosol radiative effect under aerosol-polluted conditions. Atmospheric Research. 2021, 250.
  57. Xu, Y., Xiao, H.-Y. *, Wu, D.S. *, Long, C.J. Abiotic and Biological Degradation of Atmospheric Proteinaceous Matter Can Contribute Significantly to Dissolved Amino Acids in Wet Deposition. Environmental Science & Technology. 2020, 54, 6551−6561.
  58. Xiao, H.W. Zhu, R.G., Pan, Y.Y., Guo, W., Zheng, N.J., Liu, Y.H., Liu, C., Zhang, Z.Y., Wu, J.F., Kang, C.A., Luo, L., Xiao, H.-Y.* Differentiation between nitrate aerosol formation pathways in a southeast Chinese city by dual isotope and modeling studies. Journal of Geophysical Research: Atmospheres. 2020. 125(13). e2020JD032604.
  59. Xiao, H.W., Wu, J.F., Luo, L., Liu, C., Xie, Y.J., Xiao, H.-Y.* Enhanced biomass burning as a source of aerosol ammonium over cities in central China in autumn. Environmental Pollution. 2020, 266(3), 115278.
  60. Luo, L., Kao, S.J., Wu, Y.F., Zhang, X.L., Lin, H., Zhang, R.J., Xiao, H.-Y. Stable oxygen isotope constraints on nitrate formation in Beijing in springtime. Environmental Pollution. 2020, 263(B): 114515.
  61. Luo, L., Pan, Y.Y., Zhu, R.G., Zhang, Z.Y., Zheng, N.J., Liu, Y.H., Liu, C., Xiao, H.W., Xiao, H.-Y*. Assessment of the seasonal cycle of nitrate in PM2.5 using chemical compositions and stable nitrogen and oxygen isotopes at Nanchang, China. Atmospheric Environment. 2020, 225, 117371.
  62. Xiao, H., Xiao, H.-Y., Zhang, Z.Y., Zheng, N.J., Li, Q.K., Li, X.D. Chemical Characteristics of Major Inorganic Ions in PM2.5 Based on Year-Long Observations in Guiyang, Southwest China—Implications for Formation Pathways and the Influences of Regional Transport. Atmosphere. 2020, 11, 847.
  63. Cao, Y.S., Zhao, F.L., Zhang, Z.Y., Zhu, T.B., Xiao, H.-Y*. Biotic and abiotic nitrogen immobilization in soil incorporated with crop residues. Soil & Tillage Research. 2020, 202, 104664.
  64. Cao, Y., Zhang, Z., Xiao, H.W., Xie, J., Liang, Y., Xiao, H.-Y.* How aerosol pH responds to nitrate to sulfate ratio of fine-mode particulate. Environmental Science and Pollution Research. 2020, 27: 35031–35039.
  65. Zhang, Z.Y., Zheng, N.J., Zhang, D., Xiao, H.W., Cao, Y.S., Xiao, H.-Y*. Rayleigh based concept to track NOx emission sources in urban areas of China. Science of the Total Environment. 2020, 704: 135362.
  66. Zhang, Z.Y., Zeng, Y., Zheng, N.J., Luo, L., Xiao, H.W., Xiao, H.-Y*. Fossil fuel-related emissions were the major source of NH3 pollution in urban cities of northern China in the autumn of 2017. Environmental Pollution. 2020, 256: 113428.
  67. Zhang, Z.Y., Guan, H., Luo, L., Zheng, N.J., Xiao, H.-Y.*. Response of fine aerosol nitrate chemistry to Clean Air Action in winter Beijing: Insights from the oxygen isotope signatures. Science of The Total Environment. 2020, 746, 141210.
  68. Zhang, Z.Y., Guan, H., Luo, L., Zheng, N., Xiao, H.W., Liang, Y., Xiao, H.-Y.*. Sources and transformation of nitrate aerosol in winter 2017–2018 of megacity Beijing: Insights from an alternative approach. Atmospheric Environment. 2020, 241, 117842.
  69. Zhang, Z.Y., Zheng, N., Liang, Y., Luo, L., Xiao, H.W., Xiao, H.-Y.*. Dominance of Heterogeneous Chemistry in Summertime Nitrate Accumulation: Insights from Oxygen Isotope of Nitrate (δ18O–NO3). ACS Earth Space Chem. 2020, 4(6): 818–824.
  70. Zhu, R.G., Xiao, H.-Y.*, Zhu, Y.W., Wen, Z.Q., Fang, X.Z., Pan, Y.Y. Sources and transformation processes of proteinaceous matter and free amino acids in PM2.5. Journal of Geophysical Research: Atmospheres. 2020, 125: 16.
  71. Pan, Y.Y., Luo, L., Xiao, H.W., Zhu, R.G., Xiao, H.-Y.*. Spatial variability of inhalable fungal communities in airborne PM2.5 across Nanchang, China. Science of The Total Environment. 2020, 746, 141171.
  72. Pan, Y.Y., Luo, L., Xiao, H.W., Zheng, N., Fang, X., Zhang, Z. Xiao, H.-Y.*. A one-year comprehensive characteristics of water soluble inorganic ions in PM2.5 from a typical mountainous city. Atmospheric Pollution Research. 2020, 11(11):1883-1890.
  73. Wang, W.F., Li, S.L., Zhong, J., Maberly, S.C., Li, C ., Wang, F.S., Xiao, H.-Y., Liu, C.Q. Climatic and anthropogenic regulation of carbon transport and transformation in a karst river-reservoir system. Science of the Total Environment. 2020, 707: 10.
  74. Xiao, H.W., Luo, L., Zhu, R.G., Guo, W., Long, A.M., Wu, J.F., Xiao, H.-Y*. Enhanced Primary Production in the Oligotrophic South China Sea Related to South East Asian Forest Fires. Journal of Geophysical Research: Oceans. 2020, 125: 13.
  75. Zhu, R.G., Xiao, H.-Y.*, L.Z., Xiao, H., Zhang, Z.Y., Zheng, N.J., Xiao, H.W. Nitrogen isotopic composition of free Gly in aerosols at a forest site. Atmospheric Environment. 2020, 222: 9.
  76. Liu, C., Huang, J.P., Wang, Y.W., Tao, X.Y., Hu, C., Deng, L.C., Xu, J.P., Xiao, H.W., Luo, L., Xiao, H.-Y., Xiao, W. Vertical distribution of PM2.5 and interactions with the atmospheric boundary layer during the development stage of a heavy haze pollution event. Science of the Total Environment. 2020, 704: 12.
  77. Fang, X.Z., Xiao, H.-Y.*, Sun, H.X., Liu, C., Zhang, Z.Y., Xie, Y.J., Liang, Y., Wang, F. Characteristics of Ground-Level Ozone from 2015 to 2018 in BTHArea, China. Atmosphere. 2020, 11: 15.
  78. Guo, W., Long, C.K., Zhang, Z.Y., Zheng, N.J., Xiao, H.-Y.*, Xiao, H.W. Seasonal Control of Water-Soluble Inorganic Ions in PM2.5 from Nanning, a Subtropical Monsoon Climate City in Southwestern China. Atmosphere. 2020, 11: 17.
  79. Guo, W., Zhang, Z., Zheng, N.J., Luo, L., Xiao, H.-Y*. Chemical characterization and source analysis of water-soluble inorganic ions in PM2.5 from a plateau city of Kunming at different seasons. Atmospheric Research. 2020, 234: 104687.
  80. Guan, H., Xiao, H.-Y.*, Xiao, H.W., et al. The oxygen and sulfur isotopic signatures of soluble sulfate in the needles of Pinus massoniana Lamb: source discrimination and contribution estimation. Journal of Geochemical Exploration, 2020, 208: 106402.
  81. Liang, Y., Liu, X., Wu, F., Guo, Y., Fan, X., Xiao, H.-Y. The year-round variations of VOC mixing ratios and their sources in Kuytun City (northwestern China), near oilfields. Atmospheric Pollution Research. 2020, 11(9): 1513-1523.
  82. Liang Y., Xiao H.-Y.*, Liu X.Z., Shi H.Q. The risk and phytotoxicity of metal(loid)s in the sediment, floodplain soil and hygrophilous grasses along Le'an River. International Journal of Environmental Science and Technology, 2020, 17: 1963-1974.
  83. Xie Y. J., Lu H. B., Yi A. J., Zhang Z. Y., Zheng N. J., Fang X. Z., Xiao H.-Y. Characterization and source analysis of water–soluble ions in PM2.5 at a background site in Central China. Atmospheric Research. 2020, 239:104881.
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科研项目

科技部项目

  1. 国家重点研发计划项目,2016YFA0601000、中国西南河流拦截对流域碳氮循环和输送的影响机制及其效应评估研究,2016/07-2021/06、已完成、项目主持。
  2. 973项目,2006CB403200、喀斯特地区大气氮沉降的季节性变化及苔藓/土壤系统的生态响应、2006/01-2010/12、已完成、骨干。

基金委项目:

  1. 国家自然科学基金重点项目,42430501、双碳战略下大气-城市系统氮的相互作用过程及演化机制,2025/01-2029/12、在研、主持。
  2. 国家杰出青年科学基金项目,41425014、同位素地球化学,2015/01-2019/12、已完成,主持。
  3. 国家自然科学基金委创新群体项目,41921004、大气氮传输定量化评估的氮同位素原理研究、2020/01-2024/12、已完成、骨干。
  4. 国家自然科学基金委创新群体项目,40721002、大气氮传输定量化评估的氮同位素原理研究、2008/01-2011/12、已完成、骨干。
  5. 国家自然科学基金面上项目,41273027、苔藓稳定同位素定量估算贵阳城市大气N向外扩散通量,2013/01-2016/12、已完成、主持。
  6. 国家自然科学基金面上项目,41173027、苔藓中四种主要游离氨基酸含量及其氮同位素组成对大气氮沉降的响应研究,2012/01-2015/12、已完成、主持。
  7. 国家自然科学基金面上项目,40573006、贵阳地区大气 NHx污染的氮同位素示踪及生物监测、2006/01-2008/12、已完成、主持。
  8. 国家自然科学基金面上项目,40373039、沉积物有机碳氮同位素记录富营养化湖泊古生产力演化、2004/01-2006/12、已完成、主持。
  9. 国家自然科学基金面上项目,40173012、浅水湖泊沉积物中反硝化作用的同位素地球化学研究、2002/01-2004/12、已完成、主持。

中科院项目

  1. 中国科学院“西部之光”人才培养计划项目,苔藓氮同位素技术监测城市大气氮污染扩散、2009/01-2011/12、已完成(已择优)、主持。
  2. 中国科学院知识创新工程重要方向项目,KZCX3-SW-140、贵州乌江流域物质的水文地球化学循环过程及其环境效应研究、2003/01-2006/12、 已完成、课题主持。
  3. 中国科学院知识创新工程重大项目,KZCX1-SW-12-I、营养水平与湖泊沉积物中地球化学指标关系研究、2002/01-2006/12、已完成、骨干。

 

荣获奖项

  1. 国务院政府特殊津贴,2019 年
  2. 中央组织部和中国科学院“西部之光”人才培养计划优秀入选者,2016 年
  3. 中国科学院王宽诚西部学者突出贡献奖,2014 年
  4. 13届“侯德封”矿物岩石地球化学青年科学家奖,2010 年

贵州省科学技术进步奖一等奖 1项(排名第四),2004 年

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