- 姓名: 李軍
- 性別: 男
- 職務(wù):
- 職稱: 研究員
- 學(xué)歷: 博士研究生
- 電子郵件: junli@gig.ac.cn
博士,研究員。1972年4月出生。2005在中國科學(xué)院廣州地球化學(xué)研究所有機(jī)地球化學(xué)國家重點(diǎn)實(shí)驗(yàn)室獲博士學(xué)位,研究領(lǐng)域?yàn)榄h(huán)境地球化學(xué)。在2003年至2006年間,先后三次共14個月,在香港理工大學(xué)作研究助理。2005年畢業(yè)至今,在中國科學(xué)院廣州地球化學(xué)研究所有機(jī)地球化學(xué)國家重點(diǎn)實(shí)驗(yàn)室工作。2009年7月至2010年6月,在英國lancaster大學(xué)環(huán)境中心訪問。主要研究方向?yàn)榛诨诙嗤凰氐腃O2與主要大氣污染物的同源性識別。到目前為止,共發(fā)表SCI?論文370余?篇,第一/通訊作者70多篇,論文被引用16000余次,H指數(shù)為65(https://publons.com/researcher/1758561/jun-li/)。獲得中國國家發(fā)明專利授權(quán)10多項(xiàng)。主持國家自然科學(xué)基金重點(diǎn)項(xiàng)目1項(xiàng),面上等6項(xiàng);科技部重點(diǎn)研發(fā)課題1項(xiàng);廣州市重點(diǎn)項(xiàng)目1項(xiàng);廣東省自然科學(xué)基金2項(xiàng);參加多項(xiàng)國家級和省部級重大、重點(diǎn)項(xiàng)目。
簡 歷:
社會任職:
環(huán)境地球化學(xué)。近期主要研究方向:(1)氣溶膠來源與生成機(jī)制的同位素研究;(2) 基于多同位素的CO2與主要大氣污染物的同源性識別。
研究方向:
區(qū)域空氣毒害污染物及其環(huán)境效應(yīng),廣東省科學(xué)技術(shù)一等獎,省級,2014。
獲獎及榮譽(yù):
Zhang, Z.-E., Li, J*., Zhang, R*., Tian, C., Sun, Z., Li, T., Han, M., Yu, K., Zhang, G., 2024. Increase in Agricultural-Derived NH?x?and Decrease in Coal Combustion-Derived NO?x?Result in Atmospheric Particulate N-NH4?+?Surpassing N-NO3?-?in the South China Sea. Environmental Science & Technology 58, 6682-6692
Mo, Y., Li, J*., Zhong, G., Zhu, S., Cheng, Z., Tang, J., Jiang, H., Jiang, B., Liao, Y., Song, J., Tian, C., Chen, Y., Zhao, S., Zhang, G., 2024. The Sources and Atmospheric Processes of Strong Light-Absorbing Components in Water Soluble Brown Carbon: Insights From a Multi-Proxy Study of PM2.5 in 10 Chinese Cities. Journal of Geophysical Research-Atmospheres 129.
Tang, J., Xu, B., Zhao, S., Li, J*., Tian, L., Geng, X., Jiang, H., Mo, Y., Zhong, G., Jiang, B., Chen, Y., Tang, J., Zhang, G*., 2024. Long-Emission-Wavelength Humic-Like Component (L-HULIS) as a Secondary Source Tracer of Brown Carbon in the Atmosphere. Journal of Geophysical Research-Atmospheres 129
Li, T., Li, J*., Xie, L., Lin, B., Jiang, H., Sun, R., Wang, X., Liu, B., Tian, C., Li, Q., Jia, W., Zhang, G., Peng, P.a., 2024. In situ biomass burning enhanced the contribution of biogenic sources to sulfate aerosol in subtropical cities. The Science of the total environment 908, 168384-168384.
Li, T., Li, J.*, Sun, Z., Jiang, H., Tian, C., Zhang, G., 2023. High contribution of anthropogenic combustion sources to atmosphericinorganic reactive nitrogen in South China evidenced by isotopes. Atmospheric Chemistry and Physics 23, 6395-6407.
Wang, X., Li, J*., Zhang, X., Cheng, Z., Jiang, H., Jiang, H., Lin, B., Zhu, S., Zhao, S., Liu, J., Tian, C., Zhang, R., Zhang, G., 2023. An innovative passive sampler to reveal the high contribution of biomass burning to black carbon over Indo-China Peninsula: Radiocarbon constraints. Atmospheric Environment 294.
Zhang, Q., Ma, H*., Li, J*., Jiang, H., Chen, W., Wan, C., Jiang, B., Dong, G., Zeng, X., Chen, D., Lu, S., You, J., Yu, Z., Wang, X., Zhang, G., 2023a. Nitroaromatic Compounds from Secondary Nitrate Formation and Biomass Burning Are Major Proinflammatory Components in Organic Aerosols in Guangzhou: A Bioassay Combining High-Resolution Mass Spectrometry Analysis. Environmental science & technology.
Zhang, X., Li, J*., Zhu, S., Liu, J., Ding, P., Gao, S., Tian, C., Chen, Y., Peng, P.a., Zhang, G*., 2023b. Technical note: Intercomparison study of the elemental carbon radiocarbon analysis methods using synthetic known samples. Atmospheric Chemistry and Physics 23, 7495-7502.
Jiang, H., Li, J*., Tang, J., Cui, M., Zhao, S., Mo, Y., Tian, C., Zhang, X., Jiang, B., Liao, Y., Chen, Y., Zhang, G., 2022a. Molecular characteristics, sources, and formation pathways of organosulfur compounds in ambient aerosol in Guangzhou, South China. Atmospheric Chemistry and Physics 22, 6919-6935.
Jiang, H., Li, J*., Tang, J., Zhao, S., Chen, Y., Tian, C., Zhang, X., Jiang, B., Liao, Y., Zhang, G., 2022b. Factors Influencing the Molecular Compositions and Distributions of Atmospheric Nitrogen-Containing Compounds. Journal of Geophysical Research-Atmospheres 127.
Jiang, H., Tang, J., Li, J*., Zhao, S., Mo, Y., Tian, C., Zhang, X., Jiang, B., Liao, Y., Chen, Y., Zhang, G., 2022c. Molecular Signatures and Sources of Fluorescent Components in Atmospheric Organic Matter in South China. Environmental Science & Technology Letters 9, 913-920.
Jiang, H., Li, J*., Sun, R., Liu, G., Tian, C., Tang, J., Cheng, Z., Zhu, S., Zhong, G., Ding, X., Zhang, G., 2021a. Determining the Sources and Transport of Brown Carbon Using Radionuclide Tracers and Modeling. Journal of Geophysical Research-Atmospheres 126.
Jiang, H., Li, J*., Sun, R., Tian, C., Tang, J., Jiang, B., Liao, Y., Chen, C.-E., Zhang, G., 2021b. Molecular Dynamics and Light Absorption Properties of Atmospheric Dissolved Organic Matter. Environmental Science & Technology 55, 10268-10279.
Mo, Y., Li, J*., Cheng, Z., Zhong, G., Zhu, S., Tian, C., Chen, Y., Zhang, G*., 2021. Dual Carbon Isotope-Based Source Apportionment and Light Absorption Properties of Water-Soluble Organic Carbon in PM2.5 Over China. Journal of Geophysical Research-Atmospheres 126.
Wang, X., Li, J*., Sun, R., Jiang, H., Zong, Z., Tian, C., Xie, L., Li, Q., Jia, W., Peng, P.a., Zhang, G., 2021. Regional characteristics of atmospheric delta S-34-SO42- over three parts of Asia monitored by quartz wool-based passive samplers. Science of the Total Environment 778.
Jiang, H., Li, J*., Chen, D., Tang, J., Cheng, Z., Mo, Y., Su, T., Tian, C., Jiang, B., Liao, Y., Zhang, G., 2020. Biomass burning organic aerosols significantly influence the light absorption properties of polarity-dependent organic compounds in the Pearl River Delta Region, China. Environment International 144.
Tang, J., Li, J*., Su, T., Han, Y., Mo, Y., Jiang, H., Cui, M., Jiang, B., Chen, Y., Tang, J., Song, J., Peng, P.a., Zhang, G*., 2020. Molecular compositions and optical properties of dissolved brown carbon in biomass burning, coal combustion, and vehicle emission aerosols illuminated by excitation-emission matrix spectroscopy and Fourier transform ion cyclotron resonance mass spectrometry analysis. Atmospheric Chemistry and Physics 20, 2513-2532.
Zong, Z., Tan, Y., Wang, X., Tian, C*., Li, J*., Fang, Y., Chen, Y., Cui, S., Zhang, G., 2020a. Dual-modelling-based source apportionment of NOx in five Chinese megacities: Providing the isotopic footprint from 2013 to 2014. Environment International 137.
Zong, Z., Tian, C*., Li, J*., Syed, J.H., Zhang, W., Fang, Y., Jiang, Y., Nasir, J., Mansha, M., Rizvi, S.H.H., Shafiq, M., Bin Farhan, S., Zhang, G., 2020b. Isotopic Interpretation of Particulate Nitrate in the Metropolitan City of Karachi, Pakistan: Insight into the Oceanic Contribution to NOx. Environmental Science & Technology 54, 7787-7797.
Zhang, X., Li, J*., Mo, Y., Shen, C., Ding, P., Wang, N., Zhu, S., Cheng, Z., He, J., Tian, Y., Gao, S., Zhou, Q., Tian, C., Chen, Y., Zhang, G., 2019. Isolation and radiocarbon analysis of elemental carbon in atmospheric aerosols using hydropyrolysis. Atmospheric Environment 198, 381-386.
代表論著:
1.國家自然 科學(xué)基金重點(diǎn)項(xiàng)目,基于同位素技術(shù)量化降碳過程中大氣污染物協(xié)同減排效能,No.42330715,2024.1.01-2028.12,223萬元,項(xiàng)目負(fù)責(zé)人

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