
瞿贊(Qu Zan)
研究員
電子郵件⬜️:quzan(a)sjtu.edu.cn
辦公室電話:02154745591
辦公地點🧑🏼💼:意昂4体育官方閔行校區環境科學樓1031室
團隊網頁:http://air.sjtu.edu.cn/
研究方向
- 大氣汙染控製技術
- 重金屬控製技術
- 便攜式煙氣凈化工藝與裝備
個人簡歷
1995.09-1999.07,畢業於鄭州大學化工意昂4,獲得學士學位;
1999.09-2002.07🧖🏿♀️,畢業於鄭州大學化工意昂4♗👰🏼,獲得碩士學位;
2003.03-2007.04,畢業於意昂4体育平台🫴🏿,獲得博士學位;
2007.04-2008.03🧴, 美國加州大學勞倫斯-伯克利國家實驗室🧲🫎,博士後🗒🏌🏻♀️;
2008.03-2011.12, 意昂4体育平台🤼♀️,講師;
2012.01-2016.12🎨, 意昂4体育平台🦞,副教授🦚👨👨👧;
2015.09-2016.09, 美國佐治亞理工意昂4,訪問學者;
2017.01-至今,意昂4体育平台🏇,研究員。
研究論文
- Qu, Z.; Yan, N.Q.*; Zhao, Y.F.; Jia, J.P.; Wu, D. Removal of dibenzothiophene from the simulated petroleum by gamma-irradation induced reaction. Energy Fuels, 2006, 20, 142-147.
- Qu, Z.; Yan, N.Q.*; Jia, J.P.; Wu, D. Removal of dibenzothiophene from simulated petroleum by integrated gamma-irradiation and Zr/alumina catalyst. Applied Catalysis B: Environmental. 2007, 71, 108-115.
- Qu, Z.; Yan N.Q.*; Liu, P.; Chi, Y.; Jia, J.P. Bromine chloride as an oxidant to improve elemental mercury removal from coal-fired flue gas. Environmental Science Technology. 2009, 43, 8610-8615.
- Qu, Z.; Chang, J.J.; Hsiung, T.L.; Yan, N.Q.; Wang, H.P.; Dod, R.; Chang, S.G.*; Miller, C. Halides on Carbonaceous Materials for Enhanced Capture of Hg0: Mechanistic Study. Energy Fuels. 2010, 24, 3534-3539.
- Qu, Z.; Yan, N.Q.*; Liu, P.; Jia, J.P.; Yang, S.J. The role of iodine monochloride for the oxidation of elemental mercury. Journal of Hazardous Materials. 2010, 183(1-3), 132-137.
- Qu, Z.; Yan N.Q.*; Liu, P.; Guo, Y.F.; Jia, J.P. Oxidation and stabilization of elemental mercury from coal-fired flue gas by sulfur monobromide. Environmental Science Technology. 2010, 44, 3889-3894.
- Yan, N.Q.*; Chen, W.M.; Chen, J.; Qu, Z.*; Guo, Y.F.; Yang, S.J.; Jia, J.P. Significance of RuO2 Modified SCR catalyst for elemental mercury oxidation in coal-fired flue gas. Environmental Science Technology. 2011, 45, 5725-5730.
- Xie, J.K.; Qu, Z.*; Yan, N.Q.*; Yang, S.J.; Chen, W.M.; Hu, L.G.; Huang, W.J.; Liu, P. Novel regenerable sorbent based on Zr-Mn binary metal oxides for flue gas mercury retention and recovery. Journal of Hazardous Materials. 2013, 261, 206-213.
- Xie, J.K.; Xu, H.M.; Qu, Z.*; Huang, W.J.; Chen, W.M.; Ma, Y.P.; Zhao, S.J.; Liu, P.; Yan, N.Q.* Sn-Mn binary metal oxides as non-carbon sorbent for mercury removal in a wide-temperature window. Journal of Colloid and Interface Science. 2014, 428, 121-127.
- Chen, W.M.; Ma, Y.P.; Yan, N.Q.*; Qu, Z.*; Yang, S.J.; Xie, J.K.; Guo, Y.F.; Hu, L.G.; Jia, J.P. The co-benefit of elemental mercury oxidation and slip ammonia abatement with SCR-Plus catalysts. Fuel. 2014, 133, 263-269.
- Ma, Y.P.; Xu, H.M.; Qu, Z.*; Yan, N.Q.*; Wang, W.H. Absorption characteristics of elemental mercury in mercury chloride solutions. Journal of Environmental Sciences. 2014, 2257-2265.
- Chen, W.M.; Ma, Y.P.; Qu, Z.*; Liu, Q.H.; Huang, W.J.; Hu, X.F.; Yan, N.Q.* Mechanism of the Selective Catalytic Oxidation of Slip Ammonia over Ru-Modified Ce−Zr Complexes Determined by in Situ Diffuse Reflectance Infrared Fourier Transform Spectroscopy. Environmental Science Technology. 2014, 48, 12199-12205.
- Ma, Y.P.; Qu, Z.*; Xu, H.M.; Wang, W.H.; Yan, N.Q. Investigation on mercury removal method from flue gas in the presence of sulfur dioxide. Journal of Hazardous Materials. 2014, 279, 289-295.
- Qu, Z.; Yan, L.L.; Li, L.*; Xu, J.F.; Liu, M.M.; Li, Z.C.; Yan, N.Q.* Ultraeffective ZnS nanocrystals sorbent for mercury (II) removal based on size-dependent cation exchange. ACS Applied Materials Interfaces. 2014, 6, 18026-18032.
- Xu, H.M.; Xie, J.K.; Ma, Y.P.; Qu, Z.*; Zhao, S.J.; Chen, W.M.; Huang, W.J.; Yan, N.Q.* The cooperation of Fe-Sn in a MnOx complex sorbent used for capturing elemental mercury. Fuel. 2015, 140, 803-809.
- Zhao, S.J.; Qu, Z.*; Yan, N.Q.*; Li, Z.; Zhu, W.F.; Pan, J.; Xu, J.F.; Li, M.D. Ag-modified AgI-TiO2 as an excellent and durable catalyst for catalytic oxidation of elemental mercury. RSC Advances. 2015, 5, 30841-30850.
- Xu, H.M.; Qu, Z.*; Huang, W.J.; Mei, J.; Chen, W.M.; Zhao, S.J.; Yan, N.Q. Regenerable Ag/graphene sorbent for elemental mercury capture at ambient temperature. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2015, 476, 83-89.
- Ma, Y.P.; Xu, H.M.; Qu, Z.*; Yan, N.Q.; Wang, W.H. Removal of mercury from flue gas from nonferrous metal smelting, by use of mercury chloride solution, and mechanisms of inhibition by sulfur dioxide. Research on Chemical Intermediates. 2015, 41, 5889-5905.
- Xu, H.M.; Qu, Z.*; Zong, C.X.; Huang, W.J.; Quan, F.Q.; Yan, N.Q.* MnOx/graphene for the catalytic oxidation and adsorption of elemental mercury. Environmental Science Technology. 2015, 49, 6823-6830.
- Qu, Z.; Xie, J.K.; Xu, H.M.; Chen, W.M.; Yan, N.Q.* Regenerable sorbent with a high capacity for elemental mercury removal and recycling from the simulated flue gas at a low temperature. Energy Fuels. 2015, 29(10), 6187-6196.
- Huang, W.J.; Xu, H.M.; Qu, Z.*; Zhao, S.J.; Chen, W.M.; Yan, N.Q.* Significance of Fe2O3 modifed SCR catalyst for gas-phase elemental mercury oxidation in coal-fired flue gas. Fuel Processing Technology. 2016, 149, 23-28.
- Huang, W.J.; Qu, Z.*; Chen, W.M.; Xu, H.M.; Yan, N.Q.* An enhancement method for the elemental mercury removal from coal-fired flue gas based on novel discharge activation reactor. Fuel. 2016, 171, 59-64.
- Xu, J.F.; Qu, Z.*; Yan, N.Q.; Zhao, Y.X.; Hu, X.F.; Li, L.* Size-dependent nanocrystal sorbent for copper removal from water. Chemical Engineering Journal. 2016, 284, 565-570.
- Zhu, Z.X.; Ma, Y.P.; Qu, Z.*; Fang, L.; Zhang, W.Y.; Yan, N.Q. Study on a new wet flue gas desulfurization method based on the Bunsen reaction of sulfur-iodine thermochemical cycle. Fuel. 2017, 195, 33-37.
- Qu, Z.*; Fang, L.; Chen, D.Y.; Xu, H.M.; Yan, N.Q. Effective and regenerable Ag/graphene adsorbent for Hg(II) removal from aqueous solution. Fuel. 2017, 203, 128-134.
- Chen, D.Y.; Zhao, S.J.*; Qu, Z.*; Yan, N.Q. Cu-BTC as a novel material for elemental mercury removal from sintering gas. Fuel. 2018, 217, 297-305.
- Fang, L.; Li, L.; Qu, Z.*; Xu, H.M.; Xu, J. F.; Yan, N.Q. A novel method for the sequential removal and separation of multiple heavy metals from wastewater. Journal of Hazardous Materials. 2018, 342, 617-624.
- Quan, Z.W.; Huang, W.J.; Liao, Y.; Liu, W.; Xu, H.M.; Yan, N.Q.; Qu, Z.* Study on the regenerable sulfur-resistant sorbent for mercury removal from nonferrous metal smelting flue gas. Fuel. 2019, 241, 451-458.
- Liao, Y.; Xu, H.M.; Liu, W.; Ni, H.F.; Zhang, X.G.; Zhai, A.P.; Quan, Z.W.; Qu, Z.*; Yan, N.Q. One step interface activation of ZnS using cupric ions for mercury recovery from nonferrous smelting flue gas. Environmental Science Technology. 2019, 53, 4511-4518.
- Liu, W.; Zhou, Y.X.; Hua, Y.F.; Peng, B.; Deng, M.; Yan, N.Q.; Qu, Z.* A Sulfur-resistant CuS-modified active coke for mercury removal from solid waste incineration flue gas. Environmental Science and Pollution Research. 2019, 26, 24831-24839.
- Li, J.X.; Xu, H.M.; Liao, Y.; Qiu, Y.X.; Yan, N.Q.; Qu, Z.* Atomically Dispersed Manganese on a Carbon-Based Material for the Capture of Gaseous Mercury: Mechanisms and Environmental Applications. Environmental Science Technology. 2020, 54(8), 5249-5257.
- Wang, L.L.; Xu, H.M.; Qiu, Y.X.; Liu, X.S.; Huang, W.J.; Yan, N.Q.; Qu, Z.* Utilization of Ag nanoparticles anchored in covalent organic frameworks for mercury removal from acidic waste water. Journal of Hazardous Materials. 2020, 389, 121824.
- Liu, W.; Xu, H.M.; Liao, Y.; Wang, Y.L.; Yan, N.Q.; Qu, Z.* Co-doped ZnS with large adsorption capacity for recovering Hg0 from non-ferrous metal smelting gas as a co-benefit of electrostatic demisters. Environmental Science and Pollution Reserach. 2020, 27, 20469–20477.
- Mei, J.; Liao, Y.; Qin, R.Y.; Sun, P.X.; Wang, C.; Ma, Y.P.; Qu, Z.*; Yan, N.Q.; Yang, S.J.* Acceleration of Hg0 adsorption onto natural sphalerite by Cu2+ activation during flotation: mechanism and applications in Hg0 recovery. Environmental Science Technology. 2020, 54, 7687-7696.
- Liao, Y.; Liu, W.; Xu, H.M.; Hong, Q.Y.; Wang, Y.L.; Qu, Z.*; Yan, N.Q. Zinc concentration internal circulation technology for elemental mercury recovery from zinc smelting flue gas. Fuel. 2020, 280, 118566.
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Wang, L.L.; Deng, M.; Xu, H.M.; Li, W.W.; Huang, W.J.; Yan, N.Q.; Zhou, Y.X.; Chen, J.S.; Qu, Z.* Selective reductive removal of silver ions from acidic solutions by redox-active covalent organic frameworks. ACS Applied Materials & Interfaces. 2020, 12, 37619-37627.
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Sun, Y.N.; Deng, M.; Huang, W.J.; Zhou, Y.X.; Zhao, Y.; Chen, J.S.; Yan, N.Q.; Qu, Z.* Radical-Induced Oxidation Removal of Mercury by Ozone Coupled with Bromine. ACS ES&T Engineering. 2021, 1, 110-116.
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Sun, Y.N.; Xie, J.K.; Huang, W.J.; Li, G.; Li, S.C.; Cui, P.; Xu, H.M.; Qu, Z.*; Yan, N.Q. Novel product-adjustable technology using Wellman-Lord method coupled with sodium-alkali for SO2 removal and regeneration from smelting gas. Fuel. 2021, 288, 119714.
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Wang, L.L.; Zhang, K.; Luo, J.M.; Ma, J.Y.; Ji, W.X.; Hong, Q.Y.; Xu, H.M.; Huang, W.J.; Yan, N.Q.; Qu, Z.* Metastable Facet-Controlled Cu2WS4 Single Crystals with Enhanced Adsorption Activity for Gaseous Elemental Mercury. Environmental Science Technology. 2021, 55, 5347-5356.
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Li, J.X.; Xu, H.M.; Huang, Z.J.; Hong, Q.Y.; Qiu, Y.X.; Yan, N.Q.; Qu, Z.* Strengthen the affinity of element mercury on the carbon-based material by adjusting the coordination environment of single-site manganese. Environmental Science Technology. 2021, 55, 14126−14135.
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Xu, H.M.; Hong, Q.Y.; Li, J.X.; Liao, Y.; Huang, W.J.; Qu, Z.*; Yan, N.Q. Heterogeneous Reaction Mechanisms and Functional Materials for Elemental Mercury Removal from Industrial Flue Gas. ACS ES&T Engineering. 2021, 1, 10, 1383–1400.
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Wang, L.L.; Ji, L.P.; Li, W.W.; Zhang, K.; Xu, H.M.; Huang, W.J.; Yan, N.Q.; Qu, Z.* Fabrication of Cu2S hollow nanocages with enhanced high-temperature adsorption activity and recyclability for elemental mercury capture. Chemical Engineering Journal. 2022, 427, 130935.
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Huang, W.J.; Xu, H.M.; Liu, X.S.; Wang, L.L.; Li, S.T.; Ji, L.P.; Qu, Z.*; Yan, N.Q. Surface protection method for the magnetic core using covalent organic framework shells and its application in As(III) depth removal from acid wastewater. Journal of Environmental Sciences, 2022, 115, 1-9.
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Li, W.W.; Gao, G.Q.; Wang, L.L.; Xu, H.M.; Huang, W.J.; Yan, N.Q.; Qu, Z.* Dual confinement strategy based on metal-organic frameworks to synthesize MnOx@ZrO2 catalysts for toluene catalytic oxidation. Fuel, 2022, 320, 123983.
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Gao, G.Q.; Liao, Y.; Li, W.W.; Li, Z.H.; Xu, H.M.; Huang, W.J.; Yan, N.Q.; Qu, Z.* Active Surface RuOx Species Originating from Size-Driving Self-Dispersion Process for Toluene Catalytic Combustion. Chemical Engineering Journal, 2022, 441, 136127.
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Wang, L.L.; Zhang, K.; Li, J.X.; Shen, X.R.; Yan, N.Q.; Zhao, H.Z.; Qu, Z.* Engineering of Defect-Rich Cu2WS4 Nano-homojunctions Anchored on Covalent Organic Frameworks for Enhanced Gaseous Elemental Mercury Removal. Environmental Science Technology. 2022, 56, 22, 16240-16248.
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Huang, W.J.; Zong, C.X.; Liu, Z.S.; Hong, Q.Y.; Ji, L.P.; Xu, H.M.; Qu, Z.*; Yan, N.Q. Cubic SAPO-34 supported MnOx for low-temperature gaseous mercury oxidation and adsorption from coal-fired flue gas. Fuel. 2023, 332, 126142.
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Li, W.W.; Liu, Z.S.; Wang, L.L.; Gao, G.Q.; Xu, H.M.; Huang, W.J.; Yan, N.Q.; Wang, H.W.; Qu, Z.* FeSx@MOF-808 composite for efficient As(III) removal from wastewater: behavior and mechanism. Journal of Hazardous Materials. 2023, 446, 130681.
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Li, J.X.; Li, H.L.; Xu, H.M.; Hong, Q.Y.; Ji, L.P.; Liu, Z.S.; Qiu, Y.X.; Huang, W.J.; Yan, N.Q.; Qu, Z.* Regulated adsorption sites using atomically single cluster over biochar for efficient elemental mercury uptake. Biochar. 2023, 5(13).
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Xu, H.M.; Hong, Q.Y.; Zhang, Z.Y.; Cai, X.L.; Fan, Y.R.; Liu, Z.S.; Huang, W.J.; Yan, N.Q.; Qu, Z.*; Zhang, L.Z.* SO2-Driven In Situ Formation of Superstable Hg3Se2Cl2 for Effective Flue Gas Mercury Removal. Environmental Science Technology. 2023, 57, 13, 5424-5432.
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Chen, C.; Huang, W.J.; Xu, H.M.; Liu, Z.S.; Li, X.W.; Shi, H.Z.; Yu, Y.M.; Qu Z.*; Yan, N.Q. CO2 sequestration and CaCO3 recovery with steel slag by a novel two-step leaching and carbonation method. Science of the Total Environment. 2023, 891, 164203.
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Gao, G.Q.; Liu, W.; Liu, Z.S.; Li, Z.H.; Xu, H.M.; Huang, W.J.; Yan, N.Q.; Qu, Z.* Electron Donation from Boron Suboxides via Strong p–d Orbital Hybridization Boosts Molecular O2 Activation on Ru/TiO2 for Low-Temperature Dibromomethane Oxidation. Environmental Science Technology. 2023, 57, 45, 17566-17576.
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Liu, Z.S.; Xu, H.M.; Fan, Y.R.; Hong, Q.Y.; Huang, W.J.; Yu, F.; Qu, Z.*; Yan, N.Q. Cation Concavities Induced d-Band Electronic Modulation on Co/FeOx Nanostructure to Activate Molecular and Interfacial Oxygen for CO Oxidation. Environmental Science Technology. 2023, 57, 50, 21272-21283.
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Li, W.W.; Cheng, C.; Gao, G.Q.; Xu, H.M.; Huang, H.M.; Qu, Z.*; Yan, N.Q. Trace SO2 capture within the engineered pore space using a highly stable SnF62−-pillared MOF. Material Horizons. 2024, 11, 8, 1889-1898.
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Xie, Y.B.; Wang, X.Q.*; Qu, Z.*; Ning, P.*; Wang, L.L.; Xu, H.M.; Huang, W.J.; Lu, J.C.; Luo, J.F. Enhancing AsH3 Detoxification via Electron-Deficient [NiIII-OH (μ-O)] in a Nickel-Modified NaY Zeolite: A Pathway toward As0 Products. Environmental Science Technology. 2024, 58, 15, 6704-6715.
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Hong, Q.Y.; Xu, H.M.*; Sun, X.M.; Li, J.X.; Huang, W.J.; Qu, Z.*; Zhang, L.Z.; Yan, N.Q.* In-situ low-temperature sulfur CVD on metal sulfides with SO2 to realize self-sustained adsorption of mercury. Nature Communications. 2024, 15, 3362.
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Liu, Z.S.; Fan, Y.R.; Xu, H.M.; Huang, W.J.; Yu, F.; Qu, Z.*; Yan, N.Q. Asymmetric Coordination of Single-Atom Ru Sites Achieves Efficient N(sp3)-H Dehydrogenation Catalysis for Ammonia Oxidation. Environmental Science Technology. 2024, 58, 24, 10717-10728.
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Fan, Y.R.; Xu, H.M.*; Gao, G.Q.; Wang, M.M.; Huang, W.J.; Ma, L.; Yao, Y.C.*; Qu, Z.*; Xie, P.F.*; Dai, B.; Yan, N.Q. Asymmetric Ru-In atomic pairs promote highly active and stable acetylene hydrochlorination. Nature Communications. 2024, 15, 6035.
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Fan, Y.R.; Wang, M.M.; Liu, Z.S.; Gao, G.Q.; Hong, Q.Y.; Huang, W.J.; Ma, L.; Qu, Z.*; Yan, N.Q.; Xu, H.M.* Lattice-Strain Engineering in Ni–Ru Heterostructures for Efficient Acetylene Hydrochlorination toward Vinyl Chloride. ACS Nano. 2024, 18, 31, 20624-20635.
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Xu, H.M.; Hong, Q.Y.; Wang, J.N.; Lei, J.; Wang, M.M.; Li, J.X.; Liu, Z.S.; Jiao, M.Z.; Huang, W.J.; Qu, Z.*; Yan, N.Q. Revealing the Jahn-Teller Mitigating Complexity of Se-anchored Mn-oxides for Superior SO2 Resistance in Gaseous Molecular Oxygen Activation. ACS Catalysis. 2025, 15, 361-369.
科研項目
一、國家自然科學基金委項目
1. 國家自然科學基金(青年項目)🏌🏻♂️,弱電離環境中鹵硫化物對煙氣零價汞的去除機製研究💟,50908145,2010.01-2012.12,項目負責人👩🏼🏭;
2. 國家自然科學基金(面上項目)🧓🏼,含溴除汞促進劑在煙氣除汞過程中的歸趨及其次生汙染控製研究,51278294,2013.01-2016.12,項目負責人⚆;
3. 國家自然科學基金(面上項目),有色金屬冶煉煙氣汞定向形態調控回收技術原理研究🏄🏿♀️,21677096,2017.01-2020.12🏥,項目負責人5️⃣;
4. 國家自然科學基金(面上項目),基於高溫過濾/催化體系協同脫除焚燒煙氣持久性有機汙染物與汞的應用基礎研究,52070129🦸🏼♀️,2021.01-2024.12,項目負責人🧑🏿🏫;
5. 國家自然科學基金(面上項目)😠,構效精確匹配的復合型釕基催化材料用於溴代烴去除的應用基礎研究,52470123,2025.01-2028.12🦤🈳,項目負責人👃🏻;
6. 國家自然科學基金(重點項目),TMS功能材料的綠色製備及其在煙氣硫/汞低碳協同控製中的應用研究,22436004,2025.01-2029.12,項目骨幹(排名第2)。
二、科技部項目
1. 國家高技術研究發展計劃項目(863計劃)🫁,燃煤鍋爐煙氣汞汙染排放控製技術,2007AA06Z340🕵🏽♀️✥,2007-2010,子課題負責人;
2. 國家高技術研究發展計劃項目(863計劃)🏄🏿♀️,工業鍋爐濕法脫硫脫硝脫汞技術與示範👰🔎,2011AA060801👩🔬,2011-2014,子課題負責人;
3. 國家高技術研究發展計劃項目(863計劃)🦃🖖🏿,有色爐窯煙氣高濃度SO2回收及重金屬協同控製技術研究與示範, 2012AA062504,2012-2014🏋🏻♂️,子課題負責人🚒;
4. 國家重點基礎研究發展計劃項目(973計劃)🏅,汞汙染排放過程形態調控機製及控製技術原理🚵🏿♀️🧛♂️,2013CB430005👈,2013-2017,子課題負責人;
5. 國家重點研發計劃項目👼,有色金屬冶煉煙氣多汙染物協同控製技術,2017YFC0210500,2017-2020🔟🎄,子課題負責人;
6. 國家重點研發計劃項目,高原高寒地區災害現場安置裝備關鍵技術與裝備研究及應用示範,2017YFC0806300,2017-2020👽,子課題負責人;
7. 生態環境部對外合作中心"中國履行《關於汞的水俁公約》能力建設項目",四川省有色金屬冶煉行業含汞廢物環境無害化管理現狀評估,FECO/LY4/S/22/013,2021-2022📌,課題負責人;
8. 國家重點研發計劃項目,有色冶金復雜廢氣多汙染物低能耗高效協同治理技術及示範,2024-2028,子課題負責人;
9. 國家重點研發計劃項目,燃煤煙氣汙染物低成本資源化利用技術,2024YFB4105100🧊,2024-2028,課題負責人🫳🏽。
榮譽獎項
- 意昂4体育官方優秀共產黨員🗿,2011年;
- 意昂4体育官方“SMC-晨星青年學者”獎勵計劃(B類),2012年;
- 意昂4体育官方“晨星-優秀學者"獎勵計劃(教授A類),2018年🏇🏼;
- 《燃煤煙氣汞及其它汙染物協同控製技術研發與應用》♨️,教育部技術發明二等獎,2018年✒️;
- 《鐵基尖晶石材料用於協同除汞脫硝的應用基礎研究》,上海市自然科學二等獎,2018年;
- 《有色金屬冶煉行業汙酸處理及資源化利用關鍵技術》👰🏻♂️,河南省教育廳科技成果一等獎🧑🏻🌾,2019年;
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《有色金屬冶煉行業汙酸處理及資源化利用關鍵技術》,河南省科技進步三等獎🙍🏿,2020年;
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《疫情醫療廢物應急處置裝置研發與應用》👨🏽⚕️,中國發明協會發明創業成果一等獎✬,2020年🤾🏼♀️;
- 意昂4体育官方優秀共產黨員🟢,2021年;
- 《我國汞汙染特征🙍♂️、環境過程及減排技術原理》,貴州省自然科學一等獎🦸🏼,2021年。
- 《燃煤煙氣硫-硝-汞聯合脫除關鍵技術研究》🏃👨🏿🔧,中華環保聯合會科技進步二等獎💇🏻♂️,2022年。
- 《有色冶煉煙氣多汙染物協同控製耦合資源化技術與應用》(發明),中國有色金屬工業科學技術一等獎,2022年👨🏽⚕️。
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《有色金屬冶煉煙氣多汙染物協同控製技術研發與應用》,教育部技術發明一等獎,2022年🧑✈️。
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《工業煙氣超低排放與協同控製關鍵材料及技術裝備》,浙江省科技進步一等獎,2022年。
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《面向生態強國建設🚐,構築產學研用環境專業🎭🤦🏼♀️、多層次人才培養模式探索與實踐》🛣,中國有色金屬學會高等教育教學成果二等獎,2024。