Is <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel
The viability of the use of <i>ortho</i>-cresol as a bio-blendstock or antiknock additive from lignocellulosic biomass is assessed; Ignition delays of <i>ortho</i>-cresol within blends with <i>iso</i>-octane are measured with the ULille rapid compression machine,...
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MDPI AG
2021
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oai:doaj.org-article:115eaa4b483f472f9b315463427dbad22021-11-11T15:55:17ZIs <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel10.3390/en142171051996-1073https://doaj.org/article/115eaa4b483f472f9b315463427dbad22021-11-01T00:00:00Zhttps://www.mdpi.com/1996-1073/14/21/7105https://doaj.org/toc/1996-1073The viability of the use of <i>ortho</i>-cresol as a bio-blendstock or antiknock additive from lignocellulosic biomass is assessed; Ignition delays of <i>ortho</i>-cresol within blends with <i>iso</i>-octane are measured with the ULille rapid compression machine, and compared with results from the literature; It is shown that <i>ortho</i>-cresol has a strong inhibiting effect on the reactivity towards ignition, most notably in the Negative Temperature Coefficient region; This effect is found to originate from competition with <i>iso</i>-octane on the OH radicals, where the reactivity of <i>ortho</i>-cresol with these radicals does not lead to radical chain-branching.Carolina S. MergulhãoYann FenardGuillaume VanhoveMDPI AGarticleignition delaylow-temperature combustionortho-cresolco-oxidationkinetic modelingrapid compression machineTechnologyTENEnergies, Vol 14, Iss 7105, p 7105 (2021) |
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ignition delay low-temperature combustion ortho-cresol co-oxidation kinetic modeling rapid compression machine Technology T |
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ignition delay low-temperature combustion ortho-cresol co-oxidation kinetic modeling rapid compression machine Technology T Carolina S. Mergulhão Yann Fenard Guillaume Vanhove Is <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel |
description |
The viability of the use of <i>ortho</i>-cresol as a bio-blendstock or antiknock additive from lignocellulosic biomass is assessed; Ignition delays of <i>ortho</i>-cresol within blends with <i>iso</i>-octane are measured with the ULille rapid compression machine, and compared with results from the literature; It is shown that <i>ortho</i>-cresol has a strong inhibiting effect on the reactivity towards ignition, most notably in the Negative Temperature Coefficient region; This effect is found to originate from competition with <i>iso</i>-octane on the OH radicals, where the reactivity of <i>ortho</i>-cresol with these radicals does not lead to radical chain-branching. |
format |
article |
author |
Carolina S. Mergulhão Yann Fenard Guillaume Vanhove |
author_facet |
Carolina S. Mergulhão Yann Fenard Guillaume Vanhove |
author_sort |
Carolina S. Mergulhão |
title |
Is <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel |
title_short |
Is <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel |
title_full |
Is <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel |
title_fullStr |
Is <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel |
title_full_unstemmed |
Is <i>ortho</i>-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel |
title_sort |
is <i>ortho</i>-cresol a viable lignocellulosic blendstock? a kinetic study of its co-oxidation within a surrogate fuel |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/115eaa4b483f472f9b315463427dbad2 |
work_keys_str_mv |
AT carolinasmergulhao isiorthoicresolaviablelignocellulosicblendstockakineticstudyofitscooxidationwithinasurrogatefuel AT yannfenard isiorthoicresolaviablelignocellulosicblendstockakineticstudyofitscooxidationwithinasurrogatefuel AT guillaumevanhove isiorthoicresolaviablelignocellulosicblendstockakineticstudyofitscooxidationwithinasurrogatefuel |
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