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Production of Environmentally Friendly Polyester by Hydrogenation of Poly(butylene terephthalate) over Rh-Pt Catalysts Supported on Carbon Black and Recovery by a Compressed CO2Antisolvent Technique
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Production of Environmentally Friendly Polyester by Hydrogenation of Poly(butylene terephthalate) over Rh-Pt Catalysts Supported on Carbon Black and Recovery by a Compressed CO2Antisolvent Technique

A.B. Lende, S. Bhattacharjee 和 C.-S. Tan
Industrial and Engineering Chemistry Research, 卷.59(49), 頁碼.21333-21346
2020
Web of Science ID: WOS:000599504000008

摘要

Binary alloys Butenes Carbon black Hydrogenation Platinum alloys Polyesters Rhodium alloys Temperature Adsorption ability Anti-solvents Aromatic rings Effects of temperature H2 spillover Poly(butylene terephthalate) Polyol methods Pt-bimetallic catalysts Catalyst supports
The direct hydrogenation of poly(butylene terephthalate) (PBT) using 1,1,1,3,3,3-hexafluro-2-propanol (HFIP) as the solvent to environmentally friendly polyester poly(butylene-1,4-cyclohexanedicarboxylate) (PBC) using a VulcanXC72-supported 2.5 wt % rhodium (Rh) and 2.5 wt % platinum (Pt) catalyst synthesized via the polyol method was studied. The pathway for the complete hydrogenation of PBT was suggested by observing the effects of temperature, H2 pressure, and reaction time on conversion and selectivity. Rh-Pt bimetallic catalysts were found to be superior to monometallic Rh catalysts for the hydrogenation of PBT, owing to the stronger aromatic ring adsorption ability of Rh coupled with Pt, assisting effective H2 spillover. At 50 °C and a H2 pressure of 6.89 MPa, PBT could be completely hydrogenated to PBC in 60 min, and PBC could be effectively recovered using a compressed CO2 antisolvent technique at room temperature after hydrogenation. ©

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