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Catalytic oxidative property of Pt@Cu nanostructures was investigated by oxidation of a model oil [dibenzothiophene (DBT) dissolved in n-heptane] to their corresponding sulfone.
A mixture of n-alkanes (C14, C15 and C16) was used as a model oil, and the influent hydrocarbons were removed by immobilized cells in the biodrum.
We used a model oil system consisting of asphaltenes precipitated from bitumen and that were then dissolved in toluene heptane mixtures (6:4, v/v).
Novel flower-like WO3·H2O micro/nano-architectures are conveniently synthesized via a low-temperature oil bath route, and its catalytic oxidative desulfurization (ODS) activity for dibenzothiophene (DBT) in a model oil is systematically evaluated within an n-octane/acetonitrile (MeCN) biphasic system in the presence of H2O2 as an oxidizing reagent.
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We have investigated the demulsification kinetics of a model oil-in-water emulsion in a centrifugal field to mimic the forces acting on emulsion droplets in oil/water separators such as hydrocyclones.
The United Arab Emirates is aggressively leading the region in fostering an entrepreneurial ecosystem, Schroeder added that this is a clear model oil economies have access to.
For investigating the industrial performance of PW/KSF, the ODS was tested using 1000 ppm crude oil as a real model oil with different extractants (MeCN, DMF and EtOH).
A well-defined model oil is selected for controlled design of experiments, thus enhancing verification of known and unknown mechanisms.
This catalyst was exploited to act as a stable heteropolyacid-based one in the direct oxidative desulfurization process with a feedstock of model oil under O2 as oxidant.
With a Busted Business Model, Oil Economies Head for the Unknown.
The feed is a series of blended model oil, which is composed of 99.5 wt% octane, 0.5 wt% 2,5-dimethyl-1,5-hexadiene 2,5-dimethyl-1,5-hexadiene 2,5-dimethyl-1,5-hexadiene 2,5-dimethyl-1,5-hexadiene
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