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- W3083669700 abstract "Pyrolytic conversion of biomass to bio-oil integrated with catalytic upgrading of the bio-oil to hydrocarbon fuels is among the most appealing and feasible approaches for the production of liquid transportation biofuels. A daunting challenge for commercialization of this process is the effective upgrading of bio-oil to lower its high oxygen content and improve its fuel properties. Hydrodeoxygenation (HDO) reaction has been implemented as an effective approach with the ability to upgrade the pyrolysis-derived bio-oil to water and a mixture of hydrocarbons, which resemble crude oil. The main challenging issue in HDO of crude bio-oil is the development of catalysts with high activity, selectivity, and stability. Downsizing the metals to nanoparticles and finely disperse them on high surface area supports could be a viable route for the synthesis of highly efficient catalysts with long durability. This chapter provides an overview of the nanostructured catalysts developed for HDO of bio-oil and its oxygenated model compounds." @default.
- W3083669700 created "2020-09-11" @default.
- W3083669700 creator A5044089052 @default.
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- W3083669700 date "2020-01-01" @default.
- W3083669700 modified "2023-10-12" @default.
- W3083669700 title "Upgrading pyrolysis-derived bio-oils via catalytic hydrodeoxygenation: an overview of advanced nanocatalysts" @default.
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- W3083669700 doi "https://doi.org/10.1016/b978-0-12-819553-6.00010-6" @default.
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