1、化工装备强化与本质安全方向 [1] Wang W.W., Chen Y.K., Zhou L.T., Dong Y.S., Li C.J.*. Design and hydrodynamics of a novel multidowncomer bubble-breaking tray. Industrial & Engineering Chemistry Research, 2024, 63, 17379-17391. [2] Li C.J., Shen Z.W., Pan Q.P., Duan J.H., Wang W.W*. Study on the effect of multiple bubbles hydrodynamics on pool boiling heat transfer. International Journal of Multiphase Flow, 2024, 174, 104792. [3] Li C.J., Zou Y.Q., Li G.Y., Lu Y.C., Wang W.W., Duan J.H*. Hydrodynamic characteristics of pyrolyzing biomass particles in a multi-chamber fluidized bed. Powder Technology, 2023, 421, 118403. [4] Li C.J., Fang X.X., Sun M.L., Duan J.H., Wang W.W*. Study on two-phase cloud dispersion from liquefied CO2 release. Chinese Journal of Chemical Engineering, 2023, 60, 37-45. [5] Duan J.H., Li G.Y., Shen Z.W., Zhang X.X., Zou Y.Q., Pan Q.P., Wang W.Z., Li C.J.*. Hydrodynamic performance and structural optimization of a slurry bubble column with vertical tube internals. Physics of Fluids, 2023, 35, 065119. [6] Li C.J., Zou Y.Q., Shen Z.W., Zhang X.X., Wu K., Wang W.W., Duan J.H.*. Effect of graphene oxide coating on bubble dynamics and nucleate pool boiling heat transfer. Advanced Powder Technology, 2023, 34, 104080. [7] Zhou L.Q., Li C.J.*. Study on thermal and energy-saving performances of pipe-embedded wall utilizing low-grade energy. Applied Thermal Engineering, 2020, 176, 115477. [8] Duan J.H., Gao S., Hou C.G., Wang W.W., Zhang P., Li C.J.*. Effect of cylinder vortex stabilizer on separator performance of the Stairmand cyclone. Powder Technology, 2020, 372, 305-316. [9] Li C.J., Wang W.W., Guo X.L., Duan J.H.*. Fluidization characteristics of wide-size-distribution particles in a gas-solid fluidized bed reactor. International Journal of Chemical Reactor Engineering, 2020, 18(12), 20200100. [10] Duan J.H., Gao S., Lu Y.C., Wang W.W., Zhang P., Li C.J.*. Study and optimization of flow field in a novel cyclone separator with inner cylinder. Advanced Powder Technology, 2020, 31, 4166-4179. 2、能源与环境光催化方向 [1] Zhang Q.H., Wang W.W., Qu Y.L., Bian M.Q., Liu R., Chen G.H., Li C.J.*, Duan J.H. A novel Z-scheme Ag/AgBr/Bi4O5Br2 heterojunction with rich oxygen vacancy for enhanced photocatalytic degradation of formaldehyde. Microporous and Mesoporous Materials, 2025, 389, 113555. [2] Duan J.H., Liu R., Bian M.Q., Lin M., Shen Y.J., Li C.J.*. Boosting electrocatalytic nitrogen fixation on Ni-P codoped MoS2 nanosheets. Journal of Alloys and Compounds, 2024, 991, 174537. [3] Li H.H., Guo L.X., Qu J.N., Fang X.X., Fu Y.Q., Duan J.H., Wang W.W., Li C.J.*. Co-Ni supported yttrium oxide material as a catalyst for ammonia decomposition to COx-free hydrogen. International Journal of Hydrogen Energy, 2023, 48, 8985-8996. [4] Li C.J., Xiang M.Q., Fu Y.Q., Yue J., Wang W.W., Duan J.H.*. MoSx/ZnS on CuO/Cu Mesh Composite Catalyst for Enhanced Photocatalytic N2 Reduction. Industrial & Engineering Chemistry Research, 2023, 62, 15449-15458. [5] Li C.J., Qu J.N., Zong F., Liu R., Wang W.W.*. Enhanced photocatalytic nitrogen fixation of an in situ-constructed Fe mesh-based La/TiO2/MIL-88A heterojunction. Industrial & Engineering Chemistry Research, 2023, 62, 20127-20141. [6] Li C.J., Fang X.X., Zong F., Xiang M.Q., Liu R., Duan J.H.*. Three-dimensional monolithic TiO2/ZIF-8/AgCl/Ag-based photocatalytic microreactor for efficient degradation of organic pollutants. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2023, 679, 132597. [7] Li C.J., Guo L.X., Chen G.H., Fu Y.Q., Zhang X.X., Zou Y.Q., Duan J.H., Wang W.W.*. CoNi alloy catalyst supported on Zr-modified Y2O3 for ammonia decomposition to COx-free hydrogen. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2023, 671, 131671. [8] Li C.J., Su Q., Wang W.W., Zhang Z.S., Duan J.H.*. Boosting N2 photoreduction using a ZnO@HCuxS composite with high activity and easy recovery grown on a copper mesh. New Journal of Chemistry, 2023, 47, 10216. [9] Duan J.H., He X., Ma Z., Yue J., Wang W.W., Li C.J.*. The composite of Zr-doped TiO2 and MOF-derived metal oxide for oxidative removal of formaldehyde at the room temperature. Microporous and Mesoporous Materials, 2022, 336, 111892. [10] Duan J.H., Shao D.Z., Wang W.W., Zhang D.L., Li C.J.*. Strongly coupled molybdenum phosphide@phosphorus-doped porous carbon derived from MOF used in N2 electroreduction under ambient conditions. Microporous and Mesoporous Materials, 2021, 313, 110852. |