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126 results on '"Hong, Yanzhen"'

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10. Efficient electrochemical CO2 reduction in acidic electrolytes using armor-like iron nanoparticles/porous nitrogen-doped carbon.

11. The Impact of Dual-scale Management on the Family Income of Forest Farmers -- Based on the Empirical Analysis of the New-type Forestry Management Entities in Fujian Province.

14. A MOF/poly(thioctic acid) composite for enhanced gold extraction from water matrices.

18. Enhanced electroreduction of CO2 to ethanol via enriched intermediates at high CO2 pressures

19. Efficient degradation of organic contaminants via a novel iron-based poly(ionic liquid)/polydopamine composite as the heterogeneous Fenton catalyst

25. Cu/ZnOx@UiO-66 synthesized from a double solvent method as an efficient catalyst for CO2 hydrogenation to methanol

28. Comparison of International Competitiveness of Wood Forest Products Industry in Fujian and Taiwan.

29. Sorption and Separation of CO2 from Syngas by a Quaternary Ammonium-Based Poly(ionic liquid)

30. Enhanced electroreduction of CO2 to ethanol via enriched intermediates at high CO2 pressures.

31. CO2-Responsive Switchable Solvents to Induce Self-Assembled Crystallization and Phase Control of CaCO3

32. Mesoporous poly(ionic liquid)s with dual active sites for highly efficient CO2 conversion

33. Efficient degradation of organic contaminants viaa novel iron-based poly(ionic liquid)/polydopamine composite as the heterogeneous Fenton catalystElectronic supplementary information (ESI) available. See DOI: https://doi.org/10.1039/d3en00001j

41. Ultralight MgO and its Efficient Adsorption to Pb2+ and Mn2+

42. Instantaneous Solid–Liquid–Gas Carbonation of Ca(OH)2 and Chameleonic Phase Transformation in CO2-Expanded Solution

45. Solid–Gas Carbonation Coupled with Solid Ionic Liquids for the Synthesis of CaCO3: Performance, Polymorphic Control, and Self-Catalytic Kinetics

46. A High-Pressure Quartz Spring Method for Measuring Solubility and Diffusivity of CO2 in Ionic Liquids

47. Solid–liquid–gas equilibrium of the naphthalene–biphenyl–CO2 system: Measurement and modeling

50. Cu/ZnOx@UiO-66 synthesized from a double solvent method as an efficient catalyst for CO2hydrogenation to methanolElectronic supplementary information (ESI) available: Characterization. See DOI: 10.1039/d0cy02450c

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