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成果业绩Achievement
  • 1Reconfiguring lattice oxygen turnover dynamics for boosting VOCs oxidation: A unified activity-stability descriptor in spinel oxides. Applied Catalysis B: Environment and Energy[link]
  • 2Lattice Oxygen Engineering on Perovskite Oxide Catalysts: Concurrent Enhancement of Reactivity and Replenishment for Volatile Organic Compounds Oxidation.ACS Applied Materials & Interfaces[link]
  • 3Ultrahigh alkali resistance and regeneration capacity of the birnessite deNOx catalysts: A recyclable extraction-insertion strategy. Separation and Purification Technology[link]
  • 4Significant promoting effect of toluene oxidation by CO on CuMnOx catalysts: Heterostructure and CO co-accelerated active oxygen cycling.Applied Catalysis B: Environment and Energy[link]
  • 5Homogeneously Distributed Heterostructure Energizes and Replenishes Oxygen Species for Boosting Toluene Oxidation on Perovskite Oxide CatalystsEnvironmental Science & Technology[link]
  • 6The strong Fe-Mn interaction over red mud accelerating the activation of key oxygen species for toluene oxidation.Chemical Engineering Journal[link]
  • 7Heterostructure-strengthened metal-support interaction of single-atom Pd catalysts enabling efficient oxygen activation for CO and VOC oxidation. Applied Catalysis B: Environmental[link]
  • 8Phosphorus-Water Interaction Drives Active Center Evolution into the Water-Adaptive Structure in the High-Humidity NH3-SCR Reaction. Environmental Science & Technology[link]
  • 9Abatement of CO and light alkanes on the heterostructured catalysts: Insights into the interfacial effect. Chemical Engineering Journal[link]
  • 10Construction of a floating photothermal-assisted photocatalytic system with a three-dimensional hollow porous network structure Chemosphere [link]
  • 11Hourly forecasting on PM2.5 concentrations using a deep neural network with meteorology inputs Environmental Monitoring and Assessment [link]
  • 12What is the role of interface in the catalytic elimination of multi-carbon air pollutants? Chemosphere [link]
  • 13Modulation of paired acid centers for the α-, β-, γ- and δ-MnO2 for the NH3-SCR: A comparative density functional theory (DFT) studyMolecular Catalysis[link]
  • 14Molecular simulation study on the anti-As2O3 poisoning ability of γ-Fe2O3 China Environmental Science [link]
  • 15Density functional theory of the adsorption mechanism of As2O3 on α-Fe2O3(001) and its doped surface. Journal of Harbin Institute of Technology [link]
  • 16Substantially enhanced anti-lead poisoning performance on the CeO2-WO3 pairs supported by red mud: Sacrificial effect of Fe2O3 Chemical Engineering Journal [link]
  • 17Mechanism of formaldehyde oxidation catalyzed by doped graphene single atom catalysts: Density functional theory study. Molecular Catalysis [link]
  • 18Microtubular Fe/Mn-promoted CaO-Ca12Al14O33 bi-functional material for H2 production from sorption enhanced water gas shift. Applied Catalysis B: Environmental [link]
  • 19Precise regulation of acid pretreatment for red mud SCR catalyst: Targeting on optimizing the acidity and reducibility. Frontiers of Environmental Science & Engineering [link]
  • 20Synergistic Effects of a CeO2/SmMn2O5-H Diesel Oxidation Catalyst Induced by Acid-Selective Dissolution Drive the Catalytic Oxidation Reaction. ACS Applied Materials & Interfaces [link]
  • 21Effect of Mn-doped CaO on NO removal by CO in carbonation of calcium looping for CO2 capture in a fluidized bed reactor Fuel [link]
  • 22Coupling CO2 reduction with ethane aromatization for enhancing catalytic stability of iron-modified ZSM-5. Journal of Energy Chemistry [link]
  • 23CO2-assisted ethane aromatization over zinc and phosphorous modified ZSM-5 catalysts. Applied Catalysis B: Environmental [link]
  • 24Extraction of PFOA from dilute wastewater using ionic liquids that are dissolved in N-octanol. Journal of hazardous materials [link]
  • 25Multidisciplinary design optimization of distributed energy generation systems: The trade-offs between life cycle environmental and economic impacts. Applied Energy [link]
  • 26Sacrificial carbon strategy for facile fabrication of highly-dispersed cobalt-silicon nanocomposites: Insight into its performance on the CO and CH4 oxidation. Journal of Cleaner Production [link]
  • 27Multi-pollutant control (MPC) of NO and chlorobenzene from industrial furnaces using a vanadia-based SCR catalyst. Applied Catalysis B: Environmental [link]
  • 28Synthesis of α-MnO2-like rod catalyst using YMn2O5 A-site sacrificial strategy for efficient benzene oxidation. Journal of Hazardous Materials [link]
  • 29Facile synthesis λ-MnO2 spinel for highly effective catalytic oxidation of benzene. Chemical Engineering Journal [link]
  • 30Activity improvement of acid treatment on LaFeO3 catalyst for CO oxidation. Catalysis Today [link]
  • 31Accelerating Fe(Ⅲ)/Fe(Ⅱ) cycle via Fe(Ⅱ) substitution for enhancing Fenton-like performance of Fe-MOFs. Applied Catalysis B: Environmental [link]
  • 32Inspection of various precipitant on SrO-based catalyst for transesterification: Catalytic performance, reusability and characterizations. Catalysis Today [link]
  • 33Rational tailoring of the electronic structure for the SrxNaTayO3 semiconductor: Insights into its enhanced photoactivity and optical property. Chemosphere [link]
  • 34Insight into the promotion mechanism of activated carbon on the monolithic honeycomb red mud catalyst for selective catalytic reduction of NOx. Frontiers of Environmental Science & Engineering [link]
  • 35Key intermediates from simultaneous removal of NOx and chlorobenzene over a V2O5–WO3/TiO2 catalyst: a combined experimental and DFT study. Catalysis Science & Technology [link]
  • 36Acid-pretreated red mud for selective catalytic reduction of NOx with NH3: Insights into inhibition mechanism of binders. Catalysis Today [link]
  • 37Fabrication of Nanohybrid Spinel@CuO Catalysts for Propane Oxidation: Modified Spinel and Enhanced Activity by Temperature-Dependent Acid Sites. ACS Applied Materials & Interfaces [link]
  • 38Recent advances in carbon dioxide hydrogenation to produce olefins and aromatics. Chem [link]
  • 39Multipollutant Control (MPC) of Flue Gas from Stationary Sources Using SCR Technology: A Critical Review. Environmental Science & Technology [link]
  • 40Cerium-tungsten oxides supported on activated red mud for the selective catalytic reduction of NOx. Green Energy & Environment [link]
  • 41Severe deactivation and artificial enrichment of thallium on commercial SCR catalysts installed in cement kiln. Applied Catalysis B: Environmental [link]
  • 42Rational tuning towards A/B-sites double-occupying cobalt on tri-metallic spinel: Insights into its catalytic activity on toluene catalytic oxidation. Chemical Engineering Journal [link]
  • 43NH3-SCR performance of WO3 blanketed CeO2 with different morphology: Balance of surface reducibility and acidity. Catalysis Today [link]
  • 44Deactivation Mechanism of Multipoisons in Cement Furnace Flue Gas on Selective Catalytic Reduction Catalysts. Environmental Science & Technology [link]
  • 45Preparation of γ-Fe2O3 Catalysts and their deNOx Performance: Effects of Precipitation Conditions. Chemical Engineering & Technology [link]
  • 46Dechlorination of chlorobenzene on vanadium-based catalysts for low-temperature SCR. Chemical Communications [link]
  • 47De-reducibility mechanism of titanium on maghemite catalysts for the SCR reaction: An in situ DRIFTS and quantitative kinetics study. Applied Catalysis B: Environmental [link]
  • 48Performance of Modified LaxSr1-xMnO3 Perovskite Catalysts for NH3 Oxidation: TPD, DFT, and Kinetic Studies. Environmental Science & Technology [link]