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    材料與化學研究所

    • 姓名: 余運波
    • 性別: 男
    • 職稱: 研究員
    • 職務: 
    • 學歷: 
    • 電話: 
    • 傳真: 
    • 電子郵件: ybyu@gia.cas.cn
    • 所屬部門: 
    • 通訊地址: 

      簡  歷:

    •        余運波,中國科學院贛江創新研究院博士生導師。
             《催化學報》青年編委,中國內燃機工業協會第二屆專家委員會委員,中國科學院大學崗位教授,國家環境保護機動車污染控制與模擬重點實驗室客座研究員,海南大學客座教授。

             主要從事大氣污染污染控制技術原理與應用研究;主持和參與了國家重點研發計劃、863計劃、973計劃、國家自然基金項目、中國科學院戰略先導專項等多項課題;在氮氧化物催化凈化機制與應用技術方面取得了創新性成果,在Appl. Catal. BACS CatalSci. Adv.等期刊上發表學術論文100余篇,合作撰寫專著4部。

      社會任職:

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      研究方向:

    • 環境催化與大氣污染控制

      承擔科研項目情況:

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      代表論著:

    • 1.Yulong Shan, Wenpo Shan, Xiaoyan Shi, Jinpeng Du, Yunbo Yu*, Hong He*, A comparative study of the activity and hydrothermal stability of Al-rich Cu-SSZ-39 and Cu-SSZ-13 [J], Appl. Catal. B, 2020, 264, 118511118520.

      2.Wenshuo Zhang, Xiaoyan Shi, Yulong Shan, Jingjing Liu, Guangyan Xu, Jinpeng Du, Zidi Yan, Yunbo Yu*, Hong He*, Promotion effect of cerium doping on iron-titanium composite oxide catalyst for selective catalytic reduction of NOx with NH3, Catal. Sci. Technol., 2020, 10, 648657.

      3.Guangyan Xu, Jinzhu Ma, Lian Wang, Zhihui Lv, Shaoxin Wang, Yunbo Yu*, Hong He*, Mechanism of the H2 effect on NH3-Selective Catalytic Reduction over Ag/Al2O3: Kinetic and Diffuse Reflectance Infrared Fourier Transform Spectroscopy Studies, ACS Catal., 2019, 9, 1048910498.

      4.Guangyan Xu, Jinzhu Ma, Lian Wang, Wen Xie, Jingjing Liu, Yunbo Yu*, Hong He*, Insight into the origin of sulfur tolerance of Ag/Al2O3 in the H2-C3H6-SCR of NOx, Appl. Catal. B, 2019, 244, 909918.

      5.Guangyan Xu, Yunbo Yu*, Hong He*. A low-temperature route triggered by water vapor during the ethanol-SCR of NOx over Ag/Al2O3, ACS Catal., 2018, 8, 26992708.

      6.Guangyan Xu, Jinzhu Ma, Guangzhi He, Yunbo Yu*, Hong He*, An alumina-supported silver catalyst with high water tolerance for H2 assisted C3H6-SCR of NOx, Appl. Catal. B 2017, 207, 60–71.

      7.Yong Yan, Yihu Dai, Hong He, Yunbo Yu*, Yanhui Yang*, A novel W-doped Ni-Mg mixed oxide catalyst for CO2 methanation, Appl. Catal. B, 2016, 196, 108–116.

      8.Wang Lian, Wang Yafei, ZhangYan, Yu Yunbo*, He Hong*, Qin Xiubo, Wang Baoyi, Shape dependence of nanoceria on complete catalytic oxidation of o-xylene, Catal. Sci. Technol., 2016, 6, 4840–4848.

      9.Yunbo Yu, Yi Li, Xiuli Zhang, Hua Deng, Hong He*, Yuyang Li, Promotion effect of H2 on ethanol oxidation and NOx reduction with ethanol over Ag/Al2O3 catalyst, Environ. Sci. Technol., 2015, 49, 481488.

      10.Fudong Liu, Yunbo Yu(共同第一作者), 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, 2014, 84458463.

      11.Yunbo Yu*, Jiaojiao Zhao, Yong Yan, Xue Han, Hong He, A cyclic reaction pathway triggered by ammonia for the selective catalytic reduction of NOx by ethanol over Ag/Al2O3, Appl. Catal. B, 2013, 136137, 103–111.

      12.Yong Yan, Yunbo Yu*, Hong He, Jiaojiao Zhao, Intimate contact of enolic species with silver sites benefits the SCR of NOx by ethanol over Ag/Al2O3, J. Catal., 2012, 293, 13–26.

      13.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., 2010, 271, 343350.

      14.Yunbo Yu, Takashi Takei, Hironori Ohashi, Hong He, Xiuli Zhang, Masatake Haruta*, Pretreatments of Co3O4 at moderate temperature for CO oxidation at -80 oC, J. Catal., 2009, 267: 121–128.

      15.Yunbo Yu, Xiuli Zhang, Hong He*, Evidence for the formation, isomerization and decomposition of organo-nitrite and -nitro species during the NOx reduction by C3H6 on Ag/Al2O3, Appl. Catal. B, 2007, 75, 298302.

      16.Yunbo Yu, Hong He*, Qingcai Feng, Hongwei Gao, Xin Yang, Mechanism of the selective catalytic reduction of NOx by C2H5OH over Ag/Al2O3, Appl. Catal. B, 2004, 49, 159171.

      專利申請:

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      獲獎及榮譽:

    • 2019年國家自然科學獎二等獎(排名第2

      2018年獲首都環境保護先進個人稱號

      入選2017年度王寬誠率先人才計劃(產研人才扶持項目)

      2014年國家科學技術進步獎二等獎(排名第7

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