scispace - formally typeset
Journal ArticleDOI

Reaction pathways for the deoxygenation of vegetable oils and related model compounds.

TLDR
It is shown that the type of catalyst has a significant effect on the deoxygenation pathway, that is, group 10 metal catalysts are active in decarbonylation/decarboxylation whereas metal sulfide catalyststs are more selective to hydrode oxygengenation.
Abstract
Vegetable oil-based feeds are regarded as an alternative source for the production of fuels and chemicals. Paraffins and olefins can be produced from these feeds through catalytic deoxygenation. The fundamentals of this process are mostly studied by using model compounds such as fatty acids, fatty acid esters, and specific triglycerides because of their structural similarity to vegetable oils. In this Review we discuss the impact of feedstock, reaction conditions, and nature of the catalyst on the reaction pathways of the deoxygenation of vegetable oils and its derivatives. As such, we conclude on the suitability of model compounds for this reaction. It is shown that the type of catalyst has a significant effect on the deoxygenation pathway, that is, group 10 metal catalysts are active in decarbonylation/decarboxylation whereas metal sulfide catalysts are more selective to hydrodeoxygenation. Deoxygenation studies performed under H2 showed similar pathways for fatty acids, fatty acid esters, triglycerides, and vegetable oils, as mostly deoxygenation occurs indirectly via the formation of fatty acids. Deoxygenation in the absence of H2 results in significant differences in reaction pathways and selectivities depending on the feedstock. Additionally, using unsaturated feedstocks under inert gas results in a high selectivity to undesired reactions such as cracking and the formation of heavies. Therefore, addition of H2 is proposed to be essential for the catalytic deoxygenation of vegetable oil feeds.

read more

Citations
More filters
Journal ArticleDOI

Recent progress in catalytic conversion of microalgae oil to green hydrocarbon: A review

TL;DR: In this article, a review aimed to encompass the conversion of microalgae oil towards green hydrocarbons via various catalytic reactions and the fundamental chemistry and mechanisms involved in the conversion from micro algae oil to useful chemical products are discussed in detail.
Journal ArticleDOI

Mono- and tri-ester hydrogenolysis using tandem catalysis. Scope and mechanism

TL;DR: The scope and mechanism of thermodynamically leveraged ester RC(O)O-R′ bond hydrogenolysis by tandem metal triflate + supported Pd catalysts are investigated both experimentally and theoretically by DFT and energy span analysis.
Journal ArticleDOI

Olefins from biomass feedstocks: catalytic ester decarbonylation and tandem Heck-type coupling

TL;DR: In this article, the catalytic decarbonylation of p-nitrophenylesters of aliphatic carboxylic acids to their corresponding olefins, including commodity monomers like styrene and acrylates, has been developed.
Journal ArticleDOI

Effect of Cu promotion on cracking and methanation during the Ni-catalyzed deoxygenation of waste lipids and hemp seed oil to fuel-like hydrocarbons

TL;DR: In this article, the deoxygenation of yellow grease and hemp seed oil was studied over 20% Ni/Al2O3 and 20% NI-5% Cu/Al 2O3 catalysts in the presence of H2.
Journal ArticleDOI

The Catalysed Transformation of Vegetable Oils or Animal Fats to Biofuels and Bio-Lubricants: A Review

TL;DR: In this article, the state-of-the-art of the chemical transformation of oils/fats to the use of bio fuels or bio-lubricants in the means of transport is summarized.
References
More filters
Journal ArticleDOI

Jatropha bio-diesel production and use

TL;DR: In this paper, the authors present an overview of the currently available information on the different process steps of the production process of bio-diesel from JCL, being cultivation and production of seeds, extraction of the oil, conversion to and the use of the biodiesel and the by-products.
Journal ArticleDOI

Biodiesel fuels from vegetable oils via catalytic and non-catalytic supercritical alcohol transesterifications and other methods: a survey

TL;DR: The main factors affecting transesterification are the molar ratio of glycerides to alcohol, catalyst, reaction temperature and pressure, reaction time and the contents of free fatty acids and water in oils as mentioned in this paper.
Journal ArticleDOI

Importance of algae oil as a source of biodiesel

TL;DR: Most current research on oil extraction is focused on microalgae to produce biodiesel from algal oil, where algal-oil processes into biodiesel as easily as oil derived from land-based crops.
Journal ArticleDOI

Biodiesel and renewable diesel: A comparison

TL;DR: In this paper, the authors discuss in a general and comparative fashion aspects such as fuel production and energy balance, fuel properties, environmental effects including exhaust emissions and co-products, and what the effect of production scale may be.
Journal ArticleDOI

Heterogeneous Catalytic Deoxygenation of Stearic Acid for Production of Biodiesel

TL;DR: In this article, a novel method for production of diesel-like hydrocarbons via catalytic deoxygenation of fatty acid is discussed, where the model compound stearic acid is deoxgenated to heptadecane.
Related Papers (5)