Propane Conversion in the Presence of Alumina-Based Aerogel

Features of propane conversion for selective olefin production in the presence of nanofibrous aerogel materials have been studied. The effect of modification of aerogel alumina with titania and silica on the catalytic activity and the olefin selectivity in propane conversion at atmospheric pressure...

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Veröffentlicht in:Petroleum chemistry 2019, Vol.59 (1), p.71-77
Hauptverfasser: Markova, E. B., Cherednichenko, A. G., Simonov, V. N., Serov, Yu. M., Odintsova, M. V., Lyadov, A. S.
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container_end_page 77
container_issue 1
container_start_page 71
container_title Petroleum chemistry
container_volume 59
creator Markova, E. B.
Cherednichenko, A. G.
Simonov, V. N.
Serov, Yu. M.
Odintsova, M. V.
Lyadov, A. S.
description Features of propane conversion for selective olefin production in the presence of nanofibrous aerogel materials have been studied. The effect of modification of aerogel alumina with titania and silica on the catalytic activity and the olefin selectivity in propane conversion at atmospheric pressure has been shown. Low-temperature nitrogen adsorption has revealed that these catalysts have a developed specific surface area of about 300 m 2 /g; water vapor adsorption at 293 K has shown that materials of this type contain 0.2–0.6 mmol/g of acid sites. X-ray diffraction analysis and transmission electron microscopy have revealed that the synthesized materials are an amorphous aerogel with tangled fibers with a thickness of ~6 nm.
doi_str_mv 10.1134/S0965544119010109
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source Business Source Complete; SpringerNature Journals
subjects Adsorption
Aerogels
Aluminum oxide
Amorphous materials
Analysis
Catalytic activity
Catalytic converters
Chemistry
Chemistry and Materials Science
Conversion
Diffraction
Industrial Chemistry/Chemical Engineering
Liquefied petroleum gas industry
Olefins
Propane
Selectivity
Silicon dioxide
Transmission electron microscopy
Water vapor
X-ray diffraction
X-rays
title Propane Conversion in the Presence of Alumina-Based Aerogel
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