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个人简介

教育经历 2004.09-2010.07,北京大学,理学博士(环境科学) 2000.09-2004.07,南京大学,工学学士(环境工程) 工作经历 2021.05至今,国家环境保护大气臭氧污染防治重点实验室,主任 2012.09至今,北京大学,“百人计划”研究员、博士生导师

研究领域

大气自由基化学,基于自由基直接观测和动力学模拟等研究手段,关注典型城市环境中大气自由基的来源和转化以及相应大气化学机理的研发,致力于从化学的角度解读区域二次污染的形成机理,为区域二次污染防控提供科技支撑

近期论文

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Hu H, Wang H, Lu K, Wang J, Zheng Z, Xu X, Zhai T, Chen X, Lu X, Qin M, et al. Variation and Trend of Nitrate radical reactivity towards volatile organic compounds in Beijing, China. 2023. Zhai T, Lu K, Wang H, Lou S, Chen X, Hu R-Z, Zhang Y. Elucidate the formation mechanism of particulate nitrate based on direct radical observations in the Yangtze River Delta summer 2019. Atmospheric Chemistry and Physics. 2023;23:2379-2391. Tian S, Zu K, Dong HB, Zeng L, Lu K, Chen Q. Improvement of online monitoring technology based on the Berthelot reaction and long path absorption photometer for the measurement of ambient NH 3 : Field applications in low-concentration environments. 2023. Wang H, Wang H, Lu X, Lu K, Zhang L, Yee Jun T, Shi Z, Aikin K, Fan S, Brown S, et al. Increased night-time oxidation over China despite widespread decrease across the globe. Nature Geoscience. 2023;16. Xing C, Xu S, Song Y, Liu C, Liu Y, Lu K, Tan W, Zhang C, Hu Q, Wang S, et al. A new insight into the vertical differences in NO₂ heterogeneous reaction to produce HONO over inland and marginal seas. Atmospheric Chemistry and Physics . 2023;23:5815–5834. Liu Y, ZHOU M, Lu K. Compilation of reaction kinetics parameters determined in the Key Development Project for Air Pollution Formation Mechanism and Control Technologies in China. Journal of Environmental Sciences . 2023;123:327-340. Gao Y, Lu K, Zhang Y. Review of technologies and their applications for the speciated detection of RO2 radicals. Journal of Environmental Sciences . 2023;123:487-499. Tan Z, Lu K, Ma X, Chen S, He L, HUANG X, Li X, Lin X, Tang M, Yu D, et al. Multiple Impacts of Aerosols on O3 Production Are Largely Compensated: A Case Study Shenzhen, China. Environmental science & technology. 2022;56. Chen X, Wang H, Zhai T, Li C, Lu K. Direct measurement of N 2 O 5 heterogeneous uptake coefficients on ambient aerosols via an aerosol flow tube system: design, characterization and performance. Atmospheric Measurement Techniques. 2022;15:7019-7037. Wang H, Yuan B, Zheng E, Zhang X, Wang J, Lu K, Ye C, Yang L, Huang S, Hu W, et al. Formation and impacts of nitryl chloride in Pearl River Delta. Atmospheric Chemistry and Physics. 2022;22:14837-14858. Li C, Wang H, Chen X, Zhai T, Ma X, Yang X, Chen S, Li X, Zeng L, Lu K. Observation and modeling of organic nitrates on a suburban site in southwest China. Science of The Total Environment. 2022;859:160287. Liu Y, Li J, Ma Y, ZHOU M, Tan Z, Zeng L, Lu K, Zhang Y. A review of gas-phase chemical mechanisms commonly used in atmospheric chemistry modelling. Journal of Environmental Sciences. 2022;123. Pan W, Gong S, Lu K, Zhang L, Xie S, Liu Y, Huabing K, Zhang X, Zhang Y. Multi-scale analysis of the impacts of meteorology and emissions on PM2.5 and O3 trends at various regions in China from 2013 to 2020 3. Mechanism assessment of O3 trends by a model. Science of The Total Environment. 2022;857:159592. Wang H, Lu K, Tan Z, Chen X, Liu Y, Zhang Y. Formation mechanism and control strategy for particulate nitrate in China. Journal of Environmental Sciences. 2022;123. Ye C, Lu K, Song H, Mu Y, Chen J, Zhang Y. A critical review of sulfate aerosol formation mechanisms during winter polluted periods. Journal of Environmental Sciences. 2022;123. Wang Y, Jin X, Liu Z, Wang G, Lu K, Hu B, Wang S, Li G, An X, Wang C, et al. Progress in quantitative research on the relationship between atmospheric oxidation and air quality. Journal of Environmental Sciences. 2022;123. Ye C, Xue C, Liu P, Zhang C, Ma Z, Zhang Y, Liu C, Liu J, Lu K, Mu Y. Strong impacts of biomass burning, nitrogen fertilization, and fine particles on gas-phase hydrogen peroxide (H2O2). Science of The Total Environment. 2022;843:156997. Ma X, Tan Z, Lu K, Yang X, Chen X, Wang H, Chen S, Xin F, Li S, Li X, et al. OH and HO2 radical chemistry at a suburban site during the EXPLORE-YRD campaign in 2018. Atmospheric Chemistry and Physics. 2022;22:7005-7028. Wang H, Ma X, Tan Z, Wang H, Chen X, Chen S, Gao Y, Liu Y, Liu Y, Yang X, et al. Anthropogenic monoterpenes aggravating ozone pollution. National Science Review. 2022. Zhang G, Hu R-Z, Xie P, Lu K, Lou S, Liu X, Li X, Wang F, Wang Y, Yang X, et al. Intercomparison of OH radical measurement in a complex atmosphere in Chengdu, China. Science of The Total Environment. 2022;838:155924. Liu X, Kwok G, Wu Y, Huang C, Lu K, Zhang Y, Duan L, Cheng M, Chai F, Mei F, et al. Evaluating cost and benefit of air pollution control policies in China: a systematic review. Journal of Environmental Sciences. 2022. Xue C, Ye C, Kleffmann J, Zhang C, Catoire V, Bao F, Mellouki A, Xue L, Chen J-M, Lu K, et al. Atmospheric measurements at Mt. Tai – Part I: HONO formation and its role in the oxidizing capacity of the upper boundary layer. Atmospheric Chemistry and Physics. 2022;22:3149-3167. Chen X, Wang H, Lu K. Interpretation of NO3–N2O5 observation via steady state in high-aerosol air mass: the impact of equilibrium coefficient in ambient conditions. Atmospheric Chemistry and Physics. 2022;22:3525-3533. Wang H, Peng C, Wang X, Lou S, Lu K, Gan G, Jia X, Chen X, Chen J, Wang H, et al. N2O5 uptake onto saline mineral dust: a potential missing source of tropospheric ClNO2 in inland China. Atmospheric Chemistry and Physics. 2022;22:1845-1859. Yang X, Lu K, Ma X, Gao Y, Tan Z, Wang H, Chen X, Li X, HUANG X, He L, et al. Radical chemistry in the Pearl River Delta: observations and modeling of OH and HO2 radicals in Shenzhen 2018. 2022. Xue C, Ye C, Kleffmann J, Zhang W, He X, Liu P, Zhang C, Zhao X, Liu C, Ma Z, et al. Atmospheric measurements at Mt. Tai – Part II: HONO budget and radical (RO x + NO3) chemistry in the lower boundary layer. Atmospheric Chemistry and Physics. 2022;22:1035-1057. Lu K, Wang H, Liu Y, Chen X, Gao Y, Qiu W, Jing S, Wang Q, Lou S, Edwards P, et al. Unexpected Fast Photochemistry Emerges in Cool Seasons China. National Science Open. 2022. 李佳荫, 周明, 宁淼, 史旭荣, 严刚, 马强, 陆克定. 苏州市大气VOCs特征及来源解析. 北京大学学报自然科学版 . 2022;58(4):771-781. Xuefei Ma, Zhaofeng Tan KLYZ. Quantitative study on the interference of OH radicalmeasurement in the air pollution complex. Chinese Science Bulletin . 2022;67:3724-3736. Song H, Lu K, Dong HB, Tan Z, Chen S, Zeng L, Zhang Y. Reduced Aerosol Uptake of Hydroperoxyl Radical May Increase the Sensitivity of Ozone Production to Volatile Organic Compounds. Environmental Science & Technology Letters. 2021. Zhang C, Song Y, Wang H, Zeng L, Hu M, Lu K, Xie S, Carter W. Observation-Based Estimations of Relative Ozone Impacts by Using Volatile Organic Compounds Reactivities. Environmental Science & Technology Letters. 2021. Zong T, Wang H, Wu Z, Lu K, Wang Y, Zhu Y, Shang D, Xin F, HUANG X, He L, et al. Particle hygroscopicity inhomogeneity and its impact on reactive uptake. Science of The Total Environment. 2021:151364. Wang Y, Fu X, Wu D, Wang M, Lu K, Mu Y, Liu Z, Zhang Y, Wang T. Agricultural Fertilization Aggravates Air Pollution by Stimulating Soil Nitrous Acid Emissions at High Soil Moisture. Environmental Science & Technology. 2021;55. Song H, Lu K, Ye C, Dong HB, Li S, Chen S, Wu Z, Zheng M, Zeng L, Hu M, et al. A comprehensive observation-based multiphase chemical model analysis of sulfur dioxide oxidations in both summer and winter. Atmospheric Chemistry and Physics. 2021;21:13713-13727. Tan Z, Wang H, Lu K, Dong HB, Liu Y, Zeng L, Hu M, Zhang Y. An Observational Based Modeling of the Surface Layer Particulate Nitrate in the North China Plain During Summertime. Journal of Geophysical Research: Atmospheres. 2021;126. Wang J, ge B, Chen X, Li J, Lu K, Dong Y, Kong L, Wang Z, Zhang Y. A quantitative decoupling analysis (QDA v1.0) method for the assessment of meteorological, emission and chemical contributions to fine particulate pollution. Geophsyical Model Development. 2021. Guan Q, Lu K, Zhang N, Li X, Ma X, Yang X, Dong HB, Chen S, Cao J, Ceng L, et al. 西安市大气臭氧污染光化学特征与敏感性分析. Chinese Science Bulletin. 2021. Tan Z, Ma X, Lu K, Jiang M, Zou Q, Wang H, Zeng L, Zhang Y. Direct evidence of local photochemical production driven ozone episode in Beijing: A case study. Science of The Total Environment. 2021;800:148868. Liu J, Li X, Tan Z, Wang W, Yang Y, Zhu Y, Yang S, Song M, Chen S, Wang H, et al. Assessing the Ratios of Formaldehyde and Glyoxal to NO 2 as Indicators of O 3 –NO x –VOC Sensitivity. Environmental Science & Technology. 2021;55. Zhao G, Zhu Y, Wu Z, Zong T, Chen J, Tan T, Wang H, Xin F, Lu K, Zhao C, et al. Impact of aerosol–radiation interaction on new particle formation. Atmospheric Chemistry and Physics. 2021;21:9995-10004. Liu Y, Wang H, Jing S, ZHOU M, LOU S, QU K, Qiu W, Wang Q, Li S, Gao Y, et al. Vertical Profiles of Volatile Organic Compounds in Suburban Shanghai. Advances in Atmospheric Sciences. 2021;38:1177-1187. Wang H, Lu K, Chen S, Li X, Zeng L, Hu M, Zhang Y. Characterizing nitrate radical budget trends in Beijing during 2013–2019. Science of The Total Environment. 2021;795:148869. Hallar A, Brown S, Crosman E, Barsanti K, Cappa C, Faloona I, Fast J, Holmes H, Horel J, Lin J, et al. Coupled Air Quality and Boundary-Layer Meteorology in Western U.S. Basins during Winter: Design and Rationale for a Comprehensive Study. Bulletin of the American Meteorological Society. 2021:1-94. Xin F, Hu M, Shang D, Tan T, Zhao G, Zong T, Tang L, Ma X, Yang X, Dong HB, et al. New particle formation and its CCN enhancement in the Yangtze River Delta under the control of continental and marine air masses. Atmospheric Environment. 2021;254:118400. Li J, Zhang N, Wang P, Choi M, Ying Q, Guo S, Lu K, Xionghui Q, Wang S, Hu M, et al. Impacts of chlorine chemistry and anthropogenic emissions on secondary pollutants in the Yangtze river delta region. Environmental Pollution. 2021;287:117624. Huang X-F, Cao L-M, Tian X-D, Zhu Q, Saikawa E, Lin L-L, Cheng Y, He L-Y, Hu M, Zhang Y-H, et al. Critical Role of Simultaneous Reduction of Atmospheric Odd Oxygen for Winter Haze Mitigation. Environmental Science & Technology . 2021;55:11557-11567. Shao M, Wang W, Yuan B, Parrish DD, Li X, Lu K, Wu L, Wang X, Mo Z, Yang S, et al. Quantifying the role of PM2.5 dropping in variations of ground-level ozone: Inter-comparison between Beijing and Los Angeles. Science of The Total Environment . 2021;788:147712. Gkatzelis GI, Papanastasiou DK, Karydis VA, Hohaus T, Liu Y, Schmitt SH, Schlag P, Fuchs H, Novelli A, Chen Q, et al. Uptake of Water-soluble Gas-phase Oxidation Products Drives Organic Particulate Pollution in Beijing. Geophysical Research Letters . 2021;48:e2020GL091351. QU K, Wang X, Xiao T, Shen J, Lin T, Chen D, He L-Y, Huang X-F, Zeng L, Lu K, et al. Cross-regional transport of PM2.5 nitrate in the Pearl River Delta, China: Contributions and mechanisms. Science of the Total Environment . 2021;753. Wang T, Zhao G, Tan T, Yu Y, Tang R, Dong HB, Chen S, Li X, Lu K, Zeng L, et al. Effects of biomass burning and photochemical oxidation on the black carbon mixing state and light absorption in summer season. Atmospheric Environment . 2021;248. Yang Y, Li X, Zu K, Lian C, Chen S, Dong HB, Feng M, Liu H, Liu J, Lu K, et al. Elucidating the effect of HONO on O-3 pollution by a case study in southwest China. Science of the Total Environment . 2021;756. Liu Z, Wang Y, Hu B, Lu K, Tang G, Ji D, Yang X, Gao W, Xie Y, Liu J, et al. Elucidating the quantitative characterization of atmospheric oxidation capacity in Beijing, China. Science of the Total Environment . 2021;771. Yang X, Lu K, Ma X, Liu Y, Wang H, Hu R, Li X, Lou S, Chen S, Dong HB, et al. Observations and modeling of OH and HO2 radicals in Chengdu, China in summer 2019. Science of the Total Environment . 2021;772. Li C, Wang H, Chen X, Zhai T, Chen S, Li X, Zeng L, Lu K. Thermal dissociation cavity-enhanced absorption spectrometer for measuring NO₂, RO₂NO₂, and RONO₂ in the atmosphere. Atmospheric Measurement Techniques . 2021;14:4033–4051. Cheng X, Chen Q, Li Y, Huang G, Liu Y, Lu S, Zheng Y, Qiu W, Lu K, Qiu X, et al. Secondary Production of Gaseous Nitrated Phenols in Polluted Urban Environments. Environmental Science & Technology . 2021:null. Song M, Li X, Yang S, Yu X, Zhou S, Yang Y, Chen S, Dong H, Liao K, Chen Q, et al. Spatiotemporal variation, sources, and secondary transformation potential of volatile organic compounds in Xi'an, China. Atmospheric Chemistry and Physics . 2021;21:4939–4958. Miao RQ, Chen Q, Zheng Y, Cheng X, Sun YL, Palmer PI, Shrivastava M, Guo JP, Zhang Q, Liu YH, et al. Model bias in simulating major chemical components of PM2.5 in China. Atmospheric Chemistry and Physics. 2020;20:12265-12284. Wang HC, Tang MJ, Tan ZF, Peng C, Lu KD. Atmospheric Chemistry of Nitryl Chloride. Progress in Chemistry. 2020;32:1535-1546. Liu JW, Li X, Li DQ, Xu RJ, Gao YQ, Chen SY, Liu Y, Zhao G, Wang HC, Wang HL, et al. Observations of glyoxal and methylglyoxal in a suburban area of the Yangtze River Delta, China. Atmospheric Environment. 2020;238. Li SL, Lu KD, Ma XF, Yang XP, Chen SY, Zhang YH. Field measurement of the organic peroxy radicals by the low-pressure reactor plus laser-induced fluorescence spectroscopy. Chinese Chemical Letters. 2020;31:2799-2802. Tan ZF, Hofzumahaus A, Lu KD, Brown SS, Holland F, Huey LG, Kiendler-Scharr A, Li X, Liu XX, Ma N, et al. No Evidence for a Significant Impact of Heterogeneous Chemistry on Radical Concentrations in the North China Plain in Summer 2014. Environmental Science & Technology. 2020;54:5973-5979. Wang HC, Chen XR, Lu KD, Tan ZF, Ma XF, Wu ZJ, Li X, Liu YH, Shang DJ, Wu YS, et al. Wintertime N2O5 uptake coefficients over the North China Plain. Science Bulletin. 2020;65:765-774. Yu D, Tan ZF, Lu KD, Ma XF, Li X, Chen SY, Zhu B, Lin LL, Li YT, Qiu PP, et al. An explicit study of local ozone budget and NOx-VOCs sensitivity in Shenzhen China. Atmospheric Environment. 2020;224. Xu RJ, Li X, Dong HB, Wu ZJ, Chen SY, Fang X, Gao J, Guo S, Hu M, Li DQ, et al. Measurement of gaseous and particulate formaldehyde in the Yangtze River Delta, China. Atmospheric Environment. 2020;224. Wang HC, Chen XR, Lu KD, Zhu R, Li ZY, Wang HL, Ma XF, Yang XP, Chen SY, Dong HB, et al. NO3 and N2O5 chemistry at a suburban site during the EXPLORE-YRD campaign in 2018. Atmospheric Environment. 2020;224. Wang Y, Chen Y, Wu ZJ, Shang DJ, Bian YX, Du ZF, Schmitt SH, Su R, Gkatzelis GI, Schlag P, et al. Mutual promotion between aerosol particle liquid water and particulate nitrate enhancement leads to severe nitrate-dominated particulate matter pollution and low visibility. Atmospheric Chemistry and Physics. 2020;20:2161-2175. Chen SY, Wang HC, Lu KD, Zeng LM, Hu M, Zhang YH. The trend of surface ozone in Beijing from 2013 to 2019: Indications of the persisting strong atmospheric oxidation capacity. Atmospheric Environment. 2020;242. Yu C, Wang Z, Xia M, Fu X, Wang WH, Tham YJ, Chen TS, Zheng PG, Li HY, Shan Y, et al. Heterogeneous N2O5 reactions on atmospheric aerosols at four Chinese sites: improving model representation of uptake parameters. Atmospheric Chemistry and Physics. 2020;20:4367-4378. Song H, Zou Q, Lu K. Parameterization and Application of Hydroperoxyl Radicals (HO2) Heterogeneous Uptake coefficient. Progress in Chemistry -Beijing-. 2020;33:1175-1187. Song H, Chen X, Lu K, Zou Q, Tan Z, Fuchs H, Wiedensohler A, Moon DR, Heard DE, Baeza-Romero MT, et al. Influence of aerosol copper on HO2 uptake: a novel parameterized equation. Atmos. Chem. Phys. 2020;20:15835-15850. Chen X, Wang H, Lu K, Li C, Zhai T, Tan Z, Ma X, Yang X, Liu Y, Chen S, et al. Field Determination of Nitrate Formation Pathway in Winter Beijing. Environmental Science & Technology . 2020.

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