近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
(1)Wangjin Yang, Jiawei Ma, Xiangli Nan, Ran Yan, Ning Tang, Tao Du, Chong Han*, The pH dependence of photochemical reactions between methoxyphenols with Fe(III)-oxalates. Atmos. Environ., 2023, 303, 119749.
(2)Aijie Wang, Hong Zhao, Yu Wu, Qiuyan Zhang, Chong Han*. Cerium-Modified Amorphous Manganese Oxides for Efficient Catalytic Removal of Ozone. J. Environ. Sci., 2023, 131, 151-161.
(3)Hong Zhao, Aijie Wang, Qiuyan Zhang, Chong Han*. Highly efficient removal of ozone by amorphous manganese oxides synthesized with a simple hydrothermal method. J. Environ. Sci., 2023, 134, 96-107.
(4)Chong Han, Hongxing Yang, Kun Li, Patrick Lee, John Liggio, Amy Leithead, Shao-Meng Li*. Secondary Organic Aerosols from OH Oxidation of Cyclic Volatile Methyl Siloxanes as an Important Si Source in the Atmosphere. Atmos. Chem. Phys., 2022, 22, 10827-10839.
(5)Wangjin Yang, Di You, Xiangli Nan, Ning Tang, Chong Han*. Exploring Influence of Organics on the Photodegradation of Nitroaromatic Compounds: Focus on HONO/NO Formations and Kinetics. Atmos. Environ., 2022, 289, 119306.
(6)Ran Yan, Wangjin Yang, Di You, Hongxing Yang, Chong Han*. Photoinduced evolution of optical properties and compositions of methoxyphenols by Fe(III)-carboxylates complexes in atmospheric aqueous phase. Chemosphere, 2022, 295, 133860.
(7)Di You, Wangjin Yang, Wenwen Xu, Ran Yan, Chong Han*. Photolysis of 1-Nitropyrene: HONO and NO Formations, Optical Property Changes and Mechanism Insights. Atmos. Environ., 2022, 272, 118925.
(8)Wangjin Yang, Di You, Chunhui Li, Chong Han*, Ning Tang, He Yang, Xiangxin Xue. Photolysis of nitroaromatic compounds under sunlight: A possible daytime photochemical source of nitrous acid?. Environ. Sci. Technol. Lett., 2021, 8, 747-752.
(9)Wangjin Yang, Chong Han*, Tingting Zhang, Ning Tang, He Yang, Xiangxin Xue. Heterogeneous photochemical uptake of NO2 on the soil surface as an important ground-level HONO source. Environ. Pollut., 2021, 271, 116289.
(10)Wangjin Yang, Tingting Zhang, Chong Han*, Ning Tang, He Yang, Xiangxin Xue. Photoenhanced heterogeneous reaction of O3 with humic acid: Focus on O3 uptake and changes in the composition and optical property. Environ. Pollut., 2021, 268, 115696.
(11)Tingting Zhang, Wangjin Yang, Chong Han*, He Yang, Xiangxin Xue. Heterogeneous Reaction of Ozone with Syringic Acid: Uptake of O3 and Changes in the Composition and Optical Property of Syringic Acid. Environ. Pollut., 2020, 257, 113632.
(12)Wangjin Yang, Hua Yuan, Chong Han*,He Yang, Xiangxin Xue. Photochemical Emissions of HONO, NO2 and NO from the Soil Surface under Simulated Sunlight. Atmos. Environ., 2020, 234, 117596.
(13)Chong Han, Shao-Meng Li*, Peter Liu, Patrick Lee. Size Dependence of the Physical Characteristics of Particles Containing Refractory Black Carbon in Diesel Vehicle Exhaust. Environ. Sci. Technol., 2019, 53, 137-145.
(14)Wangjin Yang, Chong Han*, He Yang, Xiangxin Xue. Significant HONO formation by the photolysis of nitrates in the presence of humic acids.Environ. Pollut., 2018, 243, 679-686.
(15)Chong Han*, Wangjin Yang, He Yang, Xiangxin Xue.Enhanced photochemical conversion of NO2 to HONO on humic acids in the presence of benzophenone. Environ. Pollut., 2017, 231, 979-986.
(16)Chong Han*, Wangjin Yang, He Yang, Xiangxin Xue. Influences of O2 and O3 on the heterogeneous photochemical reaction of NO2 with humic acids.Atmos. Environ., 2017, 152, 77-84.
(17)Chong Han*, Wangjin Yang, Qianqian Wu, He Yang, Xiangxin Xue. Heterogeneous photochemical conversion of NO2 to HONO on the humic acid surface under simulated sunlight. Environ. Sci. Technol., 2016, 50, 5017-5023.
(18)Chong Han*, Wangjin Yang, Qianqian Wu, He Yang, Xiangxin Xue. Key role of pH in the photochemical conversion of NO2 to HONO on humic acid. Atmos. Environ., 2016, 142, 296-302.
(19)Chong Han, Yongchun Liu, Hong He*. Role of organic carbon in heterogeneous reaction of NO2 with soot. Environ. Sci. Technol., 2013, 47, 3174-3181.
(20)Chong Han, Yongchun Liu, Jinzhu Ma, Hong He*. Key role of organic carbon in the sunlight-enhanced atmospheric aging of soot by O2. PNAS, 2012, 109, 21250-21255.