Converting polyisoprene rubbers into bio-jet fuels via a cascade hydropyrolysis and vapor-phase hydrogenation process
Energy Conversion and Management, ISSN: 0196-8904, Vol: 270, Page: 116250
2022
- 15Citations
- 20Captures
- 1Mentions
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Most Recent News
Recent Research from Hong Kong Polytechnic University Highlight Findings in Energy Conversion and Management (Converting Polyisoprene Rubbers Into Bio-jet Fuels Via a Cascade Hydropyrolysis and Vapor-phase Hydrogenation Process)
2022 NOV 28 (NewsRx) -- By a News Reporter-Staff News Editor at Daily Hong Kong Report -- Investigators publish new report on Energy - Energy
Article Description
Producing alternative drop-in bio-jet fuels from biomass provides a promising approach to achieve carbon neutrality. To upcycle biomass-based polyisoprene rubbers into jet-fuel range C 10 cycloalkane, we proposed a cascade hydropyrolysis and vapor-phase hydrogenation process in a flow-through two-stage pressurized fixed-bed reactor. The hydropyrolysis temperature in the first stage is of vital importance for the formation of primary limonene intermediate in the non-catalytic degradation of polyisoprene rubbers, and a reaction temperature of 460 °C maximized limonene yield to 588.6 mg/g for natural rubber and 546.2 mg/g for Eucommia rubber. Over a Pt/C catalyst loaded in the second stage, the limonene intermediate produced from the first-stage reactor can be completely hydrogenated, giving a 642.7 mg/g yield of jet-fuel range C 10 cycloalkane with 83.6% selectivity. The depolymerization mechanism of polyisoprene rubbers was thoroughly studied, and a competitive reaction between limonene hydrogenation and limonene dehydrogenation was observed. This is the first report on producing C 10 cycloalkane from natural rubbers via a cascade hydropyrolysis and hydrogenation process, providing a promising strategy to upcycle polyisoprene rubbers into bio-jet fuels.
Bibliographic Details
http://www.sciencedirect.com/science/article/pii/S0196890422010275; http://dx.doi.org/10.1016/j.enconman.2022.116250; http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=85138820090&origin=inward; https://linkinghub.elsevier.com/retrieve/pii/S0196890422010275; https://dx.doi.org/10.1016/j.enconman.2022.116250
Elsevier BV
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