论文著作:
1. Liu Y.; He, C.; Jiang X.; Zhang R.; Liu X.; Hildebrandt D. Lu X. Fischer-Tropsch Synthesis to a-Olefins with Low CO2 Selectivity on a Co2C Catalyst, Chemical Engineering Journal, 2024, 479, 147927.
2. He, C.; Lu, X.; Liu, Y.; Yan, Z.; Zhang, R.; Liu, X. Stability enhancement for silver catalyst in ethylene epoxidation by support treatment, Catalysis Communications, 2023, 178, 106669.
3. Tang, Y.; Liu, Y.; Chen, J.; He, C.; Lu, X.; Zhang, R.; Liu, X. Review of CO2 selectivity and its control in the Fischer Tropsch Synthesis to value-added chemicals, React. Chem. Eng., 2023, 8, 122.
4. Chang J.; Zhang, Y.; Lu, X.; Yao, Y.; Liu, X.; Hildebrandt, D. Insight into the Role of Co2C Supported on Reduced Graphene Oxide in Fischer-Tropsch Synthesis and Ethene Hydroformylation, Applied Catalysis A: General, 2021, 614, 118050.
5. Zhang, Y.; Yao, Y.; Chang, J.; Lu, X.; Liu, X.; Hildebrandt, D. Fischer–Tropsch synthesis with ethene co-feeding: Experimental evidence of the CO-insertion mechanism at low temperature, AIChE Journal, 2020, 66, 17029.
6. Adeleke, A.A.; Liu, X.; Lu, X.; Moyo, M.; Hildebrandt, D. Cobalt Hybrid Catalysts in Fischer-Tropsch Synthesis. Reviews in Chemical Engineering, 2020, 36, 437-457.
7. Seadira, T.; Sadanandam, G.; Ntho, T.A.; Lu, X.; Masuku, C.M.; Scurrell, M. Hydrogen Production from Glycerol Reforming: Conventional and Green Production. Reviews in Chemical Engineering, 2018, 34, 695-726.
8. Muvhiiwa, R. F.; Lu, X.; Hildebrandt, D.; Glasser, D.; Matambo, T. Applying Thermodynamics to Digestion/Gasification Processes: The Attainable Region Approach. Journal of Thermal Analysis and Calorimetry, 2018, 131, 25-36.
9. Gorimbo, J.; Muleja, A.; Lu, X.; Yao, Y.; Liu, X.; Hildebrandt, D.; Glasser, D. Lu Plot and Yao Plot: Models To Analyze Product Distribution of Long-Term Gas-Phase Fischer–Tropsch Synthesis Experimental Data on an Iron Catalyst. Energy Fuels, 2017, 31, 5682–5690.
10. Lu, X.; Zhu, X.; Masuku, C.M.; Hildebrandt, D.; Glasser, D. A Study of the Fischer–Tropsch Synthesis in a Batch Reactor: Rate, Phase of Water, and Catalyst Oxidation. Energy Fuels, 2017, 31, 7405–7412.
11. Gorimbo J. Lu, X.; Liu, X.; Yao, Y.; Hildebrandt, D.; Glasser, D. Low Pressure Fischer-Tropsch Synthesis: in-situ Oxidative Regeneration of Iron Catalysts. Industrial & Engineering Chemistry Research 2017, 56, 4267-4274.
12. Gorimbo J. Lu, X. Hildebrandt, D.; Glasser, D. A long term study of the gas phase Low pressure Fischer-Tropsch products when reducing an iron catalyst with three different reducing gases. Applied Catalysis A 2017, 534, 1-11.
13. Lu, X.; Hildebrandt, D.; Glasser, D. Distribution between C2 and C3 in low temperature Fischer–Tropsch synthesis over a TiO2-supported cobalt catalyst. Applied Catalysis A 2015, 506, 67-76.
14. Masuku, C. M.; Lu, X.; Hildebrandt, D.; Glasser, D. Reactive distillation in conventional Fischer-Tropsch reactors. Fuel Processing Technology 2015, 130, 54–61.
15. Zhu, X.; Lu, X.; Liu, X.; Hildebrandt, D.; Glasser, D. Heat Transfer Study with and without Fischer-Tropsch Reaction in a Fixed bed Reactor with TiO2, SiO2, and SiC Supported Cobalt Catalysts. Chemical Engineering Journal 2014, 247, 75-84.
16. Lu, X.; Hildebrandt, D.; Liu, X.; Glasser, D. A Thermodynamic Approach to Olefin Product Distribution in Fischer−Tropsch Synthesis. Industrial & Engineering Chemistry Research 2012, 51, 16544–16551.
17. Glasser, D.; Hildebrandt, D.; Liu, X.; Lu, X.; Masuku, C.M. Recent advances in understanding the Fischer–Tropsch synthesis (FTS) reaction. Current Opinion in Chemical Engineering 2012, 1, 296–362.
18. Lu, X.; Zhu, X.; Hildebrandt, D.; Liu, X.; Glasser, D. A new way to look at FTS using flushing experiments. Industrial & Engineering Chemistry Research 2011, 50, 4359–4365.
19. Lu, X.; Hildebrandt, D.; Liu, X.; Glasser, D. Making Sense of the Fischer-Tropsch Synthesis Reaction: Start-up. Industrial & Engineering Chemistry Research 2010, 49, 9753–9758.
20. Zhu, X.; Lu, X.; Liu, X.; Hildebrandt, D.; Glasser, D. Study of Radial Heat Transfer in a Tubular Fischer-Tropsch Synthesis Reactor. Industrial & Engineering Chemistry Research 2010, 49, 10682–10688.