153 results on '"Pastor-Pérez, L"'
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2. A review on high-pressure heterogeneous catalytic processes for gas-phase CO2 valorization
3. Multicomponent graphene based catalysts for guaiacol upgrading in hydrothermal conditions: Exploring "H2-free" alternatives for bio-compounds hydrodeoxygenation
4. Is the RWGS a viable route for CO2 conversion to added value products? A techno-economic study to understand the optimal RWGS conditions
5. Ni-Phosphide catalysts as versatile systems for gas-phase CO2 conversion: Impact of the support and evidences of structure-sensitivity
6. Recent advances on gas-phase CO2 conversion: Catalysis design and chemical processes to close the carbon cycle
7. Guaiacol hydrodeoxygenation in hydrothermal conditions using N-doped reduced graphene oxide (RGO) supported Pt and Ni catalysts: Seeking for economically viable biomass upgrading alternatives
8. Flexible syngas production using a La2Zr2-xNixO7-δ pyrochlore-double perovskite catalyst: Towards a direct route for gas phase CO2 recycling
9. Cost-effective routes for catalytic biomass upgrading
10. CO2 valorisation via reverse water-gas shift reaction using promoted Fe/CeO2-Al2O3 catalysts: Showcasing the potential of advanced catalysts to explore new processes design
11. CO2 methanation in the presence of methane: Catalysts design and effect of methane concentration in the reaction mixture
12. Carbon stabilised saponite supported transition metal-alloy catalysts for chemical CO2 utilisation via reverse water-gas shift reaction
13. Understanding the promoter effect of Cu and Cs over highly effective β-Mo2C catalysts for the reverse water-gas shift reaction
14. Guaiacol hydrotreatment in an integrated APR-HDO process: Exploring the promoting effect of platinum on Ni–Pt catalysts and assessing methanol and glycerol as hydrogen sources
15. Ni stabilised on inorganic complex structures: superior catalysts for chemical CO2 recycling via dry reforming of methane
16. Synthetic natural gas production from CO2 over Ni-x/CeO2-ZrO2 (x = Fe, Co) catalysts: Influence of promoters and space velocity
17. Highly efficient Ni/CeO2-Al2O3 catalysts for CO2 upgrading via reverse water-gas shift: Effect of selected transition metal promoters
18. Biomass gasification, catalytic technologies and energy integration for production of circular methanol: New horizons for industry decarbonisation
19. H2-rich syngas production from biogas reforming: Overcoming coking and sintering using bimetallic Ni-based catalysts
20. CO2 valorisation via Reverse Water-Gas Shift reaction using advanced Cs doped Fe-Cu/Al2O3 catalysts
21. 14. Gas phase reactions for chemical CO2 upgrading
22. Multicomponent NiSnCeO2/C catalysts for the low-temperature glycerol steam reforming
23. Effect of the surface oxidation of carbon nanotubes on the selective cyclization of citronellal
24. Carbon nanotube-supported Ni–CeO2 catalysts. Effect of the support on the catalytic performance in the low-temperature WGS reaction
25. Synthesis of palladium nanoparticles over graphite oxide and carbon nanotubes by reduction in ethylene glycol and their catalytic performance on the chemoselective hydrogenation of para-chloronitrobenzene
26. Guaiacol hydrotreatment in an integrated APR-HDO process: Exploring the promoting effect of platinum on Ni–Pt catalysts and assessing methanol and glycerol as hydrogen sources
27. Biomass gasification, catalytic technologies and energy integration for production of circular methanol: New horizons for industry decarbonisation
28. H2-rich syngas production from biogas reforming: Overcoming coking and sintering using bimetallic Ni-based catalysts
29. Promoter effect of sodium in graphene-supported Ni and Ni–CeO2 catalyst for the low-temperature WGS reaction
30. Ir supported over carbon materials for the selective hydrogenation of chloronitrobenzenes
31. Is the RWGS a viable route for CO2 conversion to added value products? A techno-economic study to understand the optimal RWGS conditions
32. K-Promoted Ni-Based Catalysts for Gas-Phase CO2 Conversion: Catalysts Design and Process Modelling Validation
33. Carbothermally generated copper–molybdenum carbide supported on graphite for the CO2 hydrogenation to methanol
34. Investigating New Routes for Biomass Upgrading: “H2-Free” Hydrodeoxygenation Using Ni-Based Catalysts
35. Effect of the CeO2 synthesis method on the behaviour of Pt/CeO2 catalysis for the water-gas shift reaction
36. Carbothermally generated copper–molybdenum carbide supported on graphite for the CO2 hydrogenation to methanol.
37. Advantages of Yolk Shell Catalysts for the DRM: A Comparison of Ni/ZnO@SiO2 vs. Ni/CeO2 and Ni/Al2O3
38. Hydrodeoxygenation of guaiacol: Tuning the selectivity to cyclohexene by introducing Ni nanoparticles inside carbon nanotubes
39. Highly active Cu-ZnO catalysts for the WGS reaction at medium–high space velocities: Effect of the support composition
40. Carbothermally generated copper–molybdenum carbide supported on graphite for the CO2hydrogenation to methanolElectronic supplementary information (ESI) available. See DOI: 10.1039/d1cy00410g
41. Investigating New Routes for Biomass Upgrading: "H2‑Free" Hydrodeoxygenation Using Ni-Based Catalysts.
42. Multicomponent NiSnCeO 2 /C catalysts for the low-temperature glycerol steam reforming
43. Synthesis of palladium nanoparticles on carbon nanotubes and graphene for the chemoselective hydrogenation of para-chloronitrobenzene
44. Bimetallic PtSn/C catalysts obtained via SOMC/M for glycerol steam reforming
45. CeO2-promoted Ni/activated carbon catalysts for the water-gas shift (WGS) reaction
46. CeO 2 -promoted Ni/activated carbon catalysts for the water–gas shift (WGS) reaction
47. CO2valorisation via Reverse Water-Gas Shift reaction using advanced Cs doped Fe-Cu/Al2O3catalysts
48. CeO2-promoted Ni/activated carbon catalysts for the water–gas shift (WGS) reaction.
49. Nickel-based cerium zirconate inorganic complex structures for CO 2 valorisation via dry reforming of methane.
50. Biomass gasification, catalytic technologies and energy integration for production of circular methanol: New horizons for industry decarbonisation.
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