22 results on '"Liang, Chang-Hai"'
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2. Synthesis of ZSM-22/ZSM-23 intergrowth zeolite as the catalyst support for hydroisomerization of n-hexadecane
3. Numerical study of flow structures and mixing characteristics of a sonic jet in supersonic crossflow
4. Flowfield structures of pylon-aided fuel injection into a supersonic crossflow
5. An Efficient Adaptive Central-Upwind WENO-CU6 Numerical Scheme with a New Sensor
6. Structures of near-wall wakes subjected to a sonic jet in a supersonic crossflow
7. Shock wave structures in the wake of sonic transverse jet into a supersonic crossflow
8. Aqueous phase hydrogenation of levulinic acid to γ-valerolactone on supported Ru catalysts prepared by microwave-assisted thermolytic method
9. Behaviors of the reacting flowfield during the spontaneous formation of ramjet mode under a supersonic inflow
10. Preparation of Cu/MgO catalysts for γ-valerolactone hydrogenation to 1,4-pentanediol by MOCVD
11. The difference between borate and phosphate modified carbon nanotubes in isopentane oxidative dehydrogenation
12. Interfacial phase formation of Al-Cu bimetal by solid-liquid casting method
13. Comparison between sonic jets with one jet orifice and two opposite orifices into a Ma-3.0 supersonic crossflow through circular ducts
14. Mechanism of development of turbulent boundary layer in a curved circular pipe under supersonic conditions
15. The preparation and gas separation performance of graphene/polyimide carbon membranes
16. Co-production of Naphthenic Oil and Phenolic Compounds from Medium- and Low-Temperature Coal Tar
17. Experimental study of parallel injections with different distances into a supersonic crossflow
18. Effect of Injection Mach Number on Penetration in a Supersonic Crossflow
19. Effect of ( n)SiO 2/( n)B 2O 3 in the precursor on chemical–physics properties of Ti-ZSM-5 synthesized by gas–solid method
20. Phosphate-Modified Carbon Nanotubes in the Oxidative Dehydrogenation of Isopentanes
21. Effect of (n)SiO2/(n)B2O3 in the precursor on chemical–physics properties of Ti-ZSM-5 synthesized by gas–solid method
22. Effect of (n)SiO2/(n)B2O3 in the precursor on chemical–physics properties of Ti-ZSM-5 synthesized by gas–solid method
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