材料與化學研究所


- 姓名: 賀泓
- 性別: 男
- 職稱: 研究員
- 職務:
- 學歷:
- 電話:
- 傳真:
- 電子郵件: honghe@rcees.ac.cn
- 所屬部門:
- 通訊地址:
賀泓,中國工程院院士,研究員,博士生導師。現任中國科學院生態環境研究中心副主任。國家杰出青年科學基金獲得者,區域大氣環境研究卓越創新中心首席科學家。
河北省邯鄲市人。1994年在日本東京大學獲得化學專業理學博士學位。先后在日本、美國、加拿大留學和工作11年,2001年底回國工作。回國后主要研究方向為環境催化和非均相大氣化學過程,系統研究大氣復合污染形成機理、催化劑與催化反應體系設計和大氣污染物催化凈化新原理、新方法及其應用,取得了柴油車排放污染控制、室內空氣凈化和大氣灰霾成因研究方面的系列成果,以第一完成人獲國家技術發明二等獎、國家科技進步二等獎和國家自然科學二等獎各1項。
發表《環境催化—原理及應用》專著一部,學術論文560余篇(SCI論文510余篇),總SCI被引25500余次。愛思唯爾發布的2015-2021年以及2022年科睿唯安發布的中國高被引學者。回國后申請并已經授權的國家發明專利60余項,其中有多項專利技術轉讓給企業實施應用。培養博士研究生54名,其中4人獲得中國科學院優秀博士論文獎勵,12人獲得中國科學院院長特別獎和優秀獎;2005、2006、2011、2014年獲中國科學院優秀研究生指導教師獎,2006年獲中國科學院優秀教師榮譽稱號,2013年獲中國科學院優秀導師獎。
簡 歷:
社會任職:
- 環境催化和非均相大氣化學過程
研究方向:
承擔科研項目情況:
50) Yulong Shan#, Guangzhi He#*, Jinpeng Du, Yu Sun, Zhongqi Liu, Yu Fu, Fudong Liu, Xiaoyan Shi, Yunbo Yu, Hong He*, “Strikingly distinctive NH3-SCR behavior over Cu-SSZ-13 in the presence of NO2”, Nat. Commun., 13, (2022) 4606-4615.
49) Tianzeng Chen, Peng Zhang, Qingxin Ma, Biwu Chu, Jun Liu, Yanli Ge, Hong He*, “Smog chamber study on the role of NOx in SOA and O3 formation from aromatic hydrocarbons”, Environ. Sci. Technol., 56(19), (2022) 13654-13663.
48) Guangzhi He#, Jinzhu Ma#, Biwu Chu#, Renzhi Hu, Hao Li, Meng Gao, Yuan Liu, Yonghong Wang, Qingxin Ma, Pinhua Xie, Guoxian Zhang, Xiao Cheng Zeng*, Joseph S. Francisco*, Hong He*, “Generation and release of OH radicals from the reaction of H2O with O2 over soot”, Angew. Chem. Int. Ed., 61, (2022) e202201638.
47) Peng Zhang, Tianzeng Chen, Qingxin Ma*, Biwu Chu, Yonghong Wang, Yujing Mu, Yunbo Yu, Hong He*, “Diesel soot photooxidation enhances the heterogeneous formation of H2SO4”, Nat. Commun., 13, (2022) 5364-5372.
46) Biwu Chu, Yan Ding Xiang Gao, Junhua Li, Tingyu Zhu, Yunbo Yu*, Hong He*; “Coordinated control of fine-particle and ozone pollution by the substantial reduction of nitrogen oxides”, Engineering, 15, (2022) 13-16.
45) Guangyan Xu#, Hao Li#, Yunbo Yu, Hong He*, “Dynamic change of active sites of supported vanadia catalysts for selective catalytic reduction of nitrogen oxides”, Environ. Sci. Technol., 56(2), (2022) 3710-3718.
44) Biwu Chu#, Tianzeng Chen#, Yongchun Liu, Qingxin Ma, Yujing Mu, Yonghong Wang, Jinzhu Ma, Peng Zhang, Jun Liu, Chunshan Liu, Huaqiao Gui, Renzhi Hu, Bo Hu, Xinming Wang, Yuesi Wang, Jianguo Liu, Pinhua Xie, Jianmin Chen, Qian Liu Jingkun Jiang, Junhua Li, Kebin He, Wenqing Liu, Guibin Jiang, Jiming Hao, Hong He*, “Application of smog chambers in atmospheric process studies”, National. Sci. Review, nwab103 (2022), https://doi.org/10.1093/nsr/nwab103.
43) Zhihua Lian, Jie Wei, Wenpo Shan, Yunbo Yu, Petar M. Radjenovic, Hua Zhang, Guangzhi He, Fudong Liu, Jian-Feng Li, Zhongqun Tian*, Hong He*, “Adsorption-induced active vanadium species facilitate excellent performance in low-temperature catalytic NOx abatement”, J. Am. Chem. Soc., 143, (2021) 10454-10461.
42) Hao Li#, Xiao Wang#, Jie Zhong, Biwu Chu, Qingxin Ma, Xiaocheng Zeng*, Joseph S. Francisco*, Hong He*, “Mechanistic study of the aqueous reaction of organic peroxides with HSO3- on the surface of a water droplet”, Angew. Chem. Int. Ed, 60, (2021) 20200-20203.
41) Yulong Shan, Jinpeng Du, Yan Zhang, Wenpo Shan, Xiaoyan Shi, Yunbo Yu, Runduo Zhang, Xiangju Meng, Fengshou Xiao, Hong He*, “Selective catalytic reduction of NOx with NH3: opportunities and challenges of Cu-based small-pore zeolites”, National. Sci. Review, 8, (2021) nwab010.
40) Guangzhi He, Meng Gao, Yue Peng, Yunbo Yu, Wenpo Shan, Hong He*, “Superior oxidative dehydrogenation performance toward NH3 determines the excellent low-temperature NH3-SCR activity of Mn-based catalysts”, Environ. Sci. Technol., 55, (2021) 6995-7003.
39) Yao Lei, Xiaolong Fan, Chao Yan, Theo Kurtén, Kaspar Daellenbach, Chang Li, Yonghong Wang, Yishuo Guo, Lubna Dada, Matti P. Rissanen, Jing Cai, Yee Jun Tham, Qiaozhi Zha, Shaojun Zhang, Wei Du, Miao Yu, Feixue Zheng, Ying Zhou, Jenni Kontkanen, Tommy Chan, Jiali Shen, Joni T. Kujansuu, Juha Kangasluoma, Jingkun Jiang, Lin Wang, Douglas R. Worsnop, Tuukka Pet?j?, Veli-Matti Kerminen, Yongchun Liu, Biwu Chu, Hong He*, Markku Kulmala*, Federico Bianchi*, “Unprecedented Ambient Sulphur Trioxide (SO3) Detection: Possible Formation Mechanism and Atmospheric Implications”, Environ. Sci. Technol. Lett., 7, (2020) 809-818.
38) Biwu Chu, Qingxin Ma, Jun Liu, Jinzhu Ma, Peng Zhang, Tianzeng Chen, Qingcai Feng, Chunying Wang, Na Yang, Hongnan Ma, Jingjin Ma, Armistead G. Russell, Hong He*, “Air pollutant correlations in China: Secondary air pollutant responses to NOx and SO2 Control”, Environ. Sci. Technol. Lett., 7, (2020) 695-700.
37) Zhang, Tianzeng Chen, Jun Liu, Changgeng Liu, Jinzhu Ma, Qingxin Ma, Biwu Chu, Hong He*, “Impacts of SO2, relative humidity, and seed acidity on secondary organic aerosol formation in the ozonolysis of butyl vinyl ether”, Environ. Sci. Technol., 53, (2019) 8845-8853.
36) Kuo Liu, Hong He*, Yunbo Yu, Zidi Yan, Weiwei Yang, Wenpo Shan, “Quantitative study of the NH3-SCR pathway and the active site distribution over CeWOx at low temperatures”, J. Catal., 369, (2019) 372-384.
35) Guangzhi He, Zhihua Lian, Yunbo Yu, Yang Yang, Kuo Liu, Xiaoyan Shi, Zidi Yan, Wenpo Shan, Hong He*, “Polymeric vanadyl species determine the low-temperature activity of V-based catalysts for the SCR of NOx with NH3”, Sci. Adv., 4, (2018) eaau4637.
34) Guangzhi He, Jinzhu Ma, Hong He*, “Role of carbonaceous aerosols in catalyzing sulfate formation”, ACS. Catal., 8, (2018) 3825-3832.
33) Fudong Liu, Wenpo Shan, Zhihua Lian, Jingjing Liu, Hong He*, “The smart surface modification of Fe2O3 by WOx for significantly promoting the selective catalytic reduction of NOx with NH3”, Appl. Catal. B, 230, (2018)165-176.
32) Jingjing Liu, Xiaoyan Shi, Yulong Shan, Zidi Yan, Wenpo Shan, Yunbo Yu, Hong He*, “Hydrothermal stability of CeO2?WO3?ZrO2 mixed oxides for selective catalytic reduction of NOx by NH3”, Environ. Sci. Technol., 52, (2018) 11769-11777.
31) Chang Liu, Qingxin Ma, Hong He*, Guangzhi He, Jinzhu Ma, Yongchun Liu, Ying Wu, “Structure-activity relationship of surface hydroxyl groups during NO2 adsorption and transformation on TiO2 nanoparticles”, Environ. Sci. Nano., 4, (2017) 2388-2394.
30) Jinzhu Ma, Caixia Wang, Hong He*, “Transition metal doped cryptomelane-type manganese oxide catalysts for ozone decomposition”, Appl. Catal. B, 201, (2017) 503-510.
29) Biwu Chu, Xiao Zhang, Yongchun Liu, Hong He*, Yele Sun, Jingkun Jiang, Junhua Li, Jiming Hao, “Synergetic formation of secondary inorganic and organic aerosol: effect of SO2 and NH3 on particle formation and growth”, Atmos. Chem. Phys., 16, (2016) 14219-14230.
28) Lian Wang, Hong He*, Changbin Zhang, Yafei Wang, Bo Zhang, “Effects of precursors for manganese-loaded g-Al2O3 catalysts on plasma-catalytic removal of o-xylene”, Chem. Eng. J., 288, (2016) 406-413.
27) Lijuan Xie, Fudong Liu, Xiaoyan Shi, Feng-Shou Xiao, Hong He*, “Effects of post-treatment method and Na co-cation on thehydrothermal stability of Cu–SSZ-13 catalyst for the selective catalyticreduction of NOx with NH3”, Appl. Catal. B., 179, (2015) 206-212.
26) Jinzhu Ma, Hong He*, Fudong Liu, “Effect of Fe on the photocatalytic removal of NOx over visible light responsive Fe/TiO2 catalysts”, Appl. Catal. B., 179, (2015) 21-28.
25) Fudong Liu, Yunbo Yu, Hong He*, “Environmentally-benign catalysts for the selective catalytic reduction of NOx from diesel engines: Structure-activity relationship and reaction mechanism aspects”, Chem. Commun., 50 (62), (2014) 8445-8463.
24) Yunbo Yu, Hong He*, Xiuli Zhang, Hua Deng, “A common feature of H2-assisted HC-SCR over Ag/Al2O3”, Catal. Sci. Technol., 4, (2014) 1239-1245.
23) Hong He*, Yuesi Wang, Qingxin Ma, Jinzhu Ma, Biwu Chu, Dongsheng Ji, Guiqian Tang, Chang Liu, Hongxing Zhang, Jiming Hao, “Mineral dust and NOx promote the conversion of SO2 to sulfate in heavy pollution days”, Sci. Rep., 4, (2014) 04172.
22) Yafei Wang, Changbin Zhang, Fudong Liu, Hong He*, “Well-dispersed palladium supported on ordered mesoporous Co3O4 for catalytic oxidation of o-xylene”, Appl. Catal. B., 142-143, (2013) 72-79.
21) Qingxin Ma, Hong He*, Yongchun Liu, Chang Liu, Vicki H. Grassian, “Heterogeneous and multiphase formation pathways of gypsum in the atmosphere”, Phys. Chem. Chem. Phys., 15, (2013) 19196-19204.
20) Fudong Liu, Hong He*, Zhihua Lian, Wenpo Shan, Lijuan Xie, Kiyotaka Asakura, Weiwei Yang, Hua Deng, “Highly dispersed iron vanadate catalyst supported on TiO2 for the selective catalytic reduction of NOx with NH3”, J. Catal., 307, (2013) 340-351.
19) Chong Han, Yongchun Liu, Hong He*, “Role of organic carbon in heterogeneous reaction of NO2 with soot”, Environ. Sci. Technol., 47, (2013) 3174-3181.
18) Chong Han, Yongchun Liu*, Jinzhu Ma, Hong He*, “Key role of organic carbon in the sunlight enhanced atmospheric aging of soot by O2”, Proc. Nat. Acad. Sci. USA., 109(52), (2012) 21250-21255.
17) Changbin Zhang, Fudong Liu, Yanping Zhai, Hiroko Ariga, Nan Yi, Yongchun Liu, Kiyotaka Asakura, Maria Flytzani-Stephanopoulos*, Hong He*, “Alkali-metal-promoted Pt/TiO2 opens a more efficient pathway to formaldehyde oxidation at ambient temperatures”, Angew. Chem. Int. Ed., 51, (2012) 9628-9632.
16) Chang Liu, Qingxin Ma, Yongchun Liu, Jinzhu Ma, Hong He*, “Synergistic reaction between SO2 and NO2 on mineral oxides: a potential formation pathway of sulfate aerosol”, Phys. Chem. Chem. Phys., 14, (2012) 1668-1676.
15) Yongchun Liu, Junzhu Ma, Chang Liu, Hong He*, “Heterogeneous uptake of carbonyl sulfide onto kaolinite within a temperature range of 220–330 K”, J. Geophys. Res., 115, (2010) D24311.
14) Fudong Liu, Hong He*, “Structure-activity relationship of iron titanate catalysts in the selective catalytic reduction of NOX with NH3”, J. Phys. Chem. C, 114, (2010) 16929-16936.
13) Yongchun Liu, Junzhu Ma, Hong He*, “Heterogeneous reactions of carbonyl sulfide on mineral oxides: mechanism and kinetics study”, Atmos. Chem. Phys., 10, (2010) 10335-10344.
12) Yunbo Yu, Xiaoping Song, Hong He*, “Remarkable influence of reductant structure on the activity of alumina-supported silver catalyst for the selective catalytic reduction of NOx”, J. Catal., 271, (2010) 343-350.
11) Fudong Liu, Hong He*, Changbin Zhang, Zhaochi Feng, Lirong Zheng, Yaning Xie, Tiandou Hu, “Selective catalytic reduction of NO with NH3 over iron titanate catalyst: Catalytic performance and characterization”, Appl. Catal. B, 96, (2010) 408-420.
10) Hong He*, Yi Li, Xiuli Zhang, Yunbo Yu, Changbin Zhang, “Precipitable silver compound catalysts for the selective catalytic reduction of NOx by ethanol”, Appl. Catal. A, 375, (2010) 258-264.
9) Li Zhang, Hong He*, “Mechanism of selective catalytic oxidation of ammonia to nitrogen over Ag/Al2O3”, J. Catal., 268, (2009) 18-25.
8) Fudong Liu, Hong He*, Yun Ding, Changbin Zhang, “Effect of manganese substitution on the structure and activity of iron titanate catalyst for the selective catalytic reduction of NO with NH3”, Appl. Catal. B, 93, (2009) 194-204.
7) Li Xue, Hong He*, Chang Liu, Changbin Zhang, Bo Zhang, “Promotion effects and mechanism of alkali metals and alkaline earth metals on cobalt-cerium composite oxide catalysts for N2O decomposition”, Environ. Sci. Technol., 43, (2009) 890-895.
6) Qingxin Ma, Yongchun Liu, Hong He*, “Synergistic effect between NO2 and SO2 in their adsorption and reaction on γ-Alumina”, J. Phys. Chem. A, 112, (2008) 6630-6635.
5) Fudong Liu, Hong He*, Changbin Zhang, “Novel iron titanate catalyst for the selective catalytic reduction of NO with NH3 in the medium temperature range”, Chem. Commun., (2008) 2043-2045.
4) Li Xue, Changbin Zhang, Hong He*, Yasutake Teraoka, “Catalytic decomposition of N2O over CeO2 promoted Co3O4 spinel catalyst”, Appl. Catal. B, 75, (2007) 167-174.
3) Changbin Zhang, Hong He*, Ken-ichi Tanaka, “Catalytic performance and mechanism of a Pt/TiO2 catalyst for the oxidation of formaldehyde at room temperature”, Appl. Catal. B, 65, (2006) 37-43.
2) Hong He*, Junfeng Liu, Yujing Mu, Yunbo Yu, Meixue Chen, “Heterogeneous oxidation of carbonyl sulfide on atmospheric particles and alumina”, Environ. Sci. Technol., 39(24), (2005) 9637-9642.
1) Hong He*, Yunbo Yu, “Selective catalytic reduction of NOx over Ag/Al2O3 catalyst: from reaction mechanism to diesel engine test”, Catal. Today, 100, (2005) 37-47.
國家自然科學基金基礎科學中心項目: 大氣霾化學(2022-2026);
中國工程院戰略研究與咨詢項目(學部品牌項目課題一):重點行業多介質碳污排放協同控源策略研究(2022-2024);
中國科學院生態環境研究中心科研項目:臭氧追因與控制專項(2020-2021);
國家重點研發計劃:新型冠狀病毒傳播與環境的關系及風險防控(2020-2021);
中國工程院咨詢研究項目:我國柴油車清潔化發展戰略與路線圖研究(2020-2021);
國家重點研發計劃項目:滿足國VI標準的柴油車排放控制關鍵技術及系統集成 (2017-2020);
國家自然科學基金重點項目:柴油車尾氣凈化用高性能NH3-SCR催化劑基礎研究 (2017-2021);
中國科學院A類先導專項預研項目:大氣環境模擬系統研究(2018-2019);
國家863計劃項目課題:柴油車排氣凈化關鍵技術與系統(2013-2015);
中國科學院B類先導專項:大氣灰霾追因與控制(2012-2017);
國家自然科學基金重點項目:氣溶膠的環境微界面反應過程與灰霾成因(2010-2013)
代表論著:
專利申請:
2020年獲國家創新爭先獎;
2019年獲國家自然科學獎二等獎(第一完成人);
2018年獲中國內燃機工業杰出科技創新獎;
2017年當選中國工程院院士;
2017年獲何梁何利基金科學與技術創新獎;
2014年獲國家科學技術進步獎二等獎(第一完成人);
2011年獲國家技術發明獎二等獎(第一完成人);
2008年獲科技奧運先進個人稱號。