Keywords
carbon dioxide
dehydrogenation
propane to propylene
supercritical carbon dioxide
utilization of carbon dioxide.
Abstract
The propane dehydrogenation reaction was carried out in the presence of CO2 on a Cr(3%)/SiO2 catalyst under supercritical conditions. Dependences of the propane conversion, product selectivity, and olefin productivity on the C3H8:CO2 ratio and reagent consumption were revealed. It was found that the application of supercritical conditions resulted in the increase in propylene productivity by a factor of three and overall olefin productivity by a factor of five as compared to a conventional reaction in the gas phase.
References
1.
Friedlingstein P., Andrew R.M., Rogelj J., Peters G.P., Canadell J.G., Knutti R., Luderer G., Raupach M.R., Schaeffer M., van Vuuren D.P., Le Quéré C.
Nature Geoscience,
2014
2.
Hu B., Guild C., Suib S.L.
Journal of CO2 Utilization,
2013
3.
Michorczyk P., Ogonowski J., Zeńczak K.
Journal of Molecular Catalysis A Chemical,
2011
4.
XU B., ZHENG B., HUA W., YUE Y., GAO Z.
Journal of Catalysis,
2006
5.
Ge X., Zou H., Wang J., Shen J.
Reaction Kinetics and Catalysis Letters,
2005
6.
Michorczyk P., Ogonowski J.
Reaction Kinetics and Catalysis Letters,
2005
7.
Michorczyk P., Ogonowski J.
Reaction Kinetics and Catalysis Letters,
2007
8.
Shishido T., Shimamura K., Teramura K., Tanaka T.
Catalysis Today,
2012
9.
Baek J., Yun H.J., Yun D., Choi Y., Yi J.
ACS Catalysis,
2012
10.
Sattler J.J., Ruiz-Martinez J., Santillan-Jimenez E., Weckhuysen B.M.
Chemical Reviews,
2014
11.
Botavina M.A., Martra G., Agafonov Y.A., Gaidai N.A., Nekrasov N.V., Trushin D.V., Coluccia S., Lapidus A.L.
Applied Catalysis A: General,
2008
12.
Tedeeva M.A., Kustov A.L., Pribytkov P.V., Leonov A.V., Dunaev S.F.
Russian Journal of Physical Chemistry A,
2018
13.
Kruse A., Vogel H.
Chemical Engineering and Technology,
2008
14.
10.1016/j.mencom.2020.03.022_bib0075
Hughes
Deactivation of Catalysts,
1984
15.
Bilalov T.R., Gumerov F.M., Gabitov F.R., Kharlampidi K.E., Fedorov G.I., Sagdeev A.A., Yarullin R.S., Yakushev I.A.
Russian Journal of Physical Chemistry B,
2009
16.
Gallyamov R.F., Sagdeev A.A., Gumerov F.M., Gabitov F.R.
Russian Journal of Physical Chemistry B,
2010
17.
Galimova A.T., Sagdeev A.A., Kuzmin V.Z., Gumerov F.M.
Russian Journal of Physical Chemistry B,
2015
18.
Reduction of carbon dioxide with hydrogen on a CuO–ZnO mixed catalyst under supercritical conditions
Bogdan V.I., Kustov L.M.
Mendeleev Communications,
2015
19.
Evdokimenko N.D., Kustov A.L., Kim K.O., Igonina M.S., Kustov L.M.
Mendeleev Communications,
2018
20.
Evdokimenko N.D., Kim K.O., Kapustin G.I., Davshan N.A., Kustov A.L.
Catalysis in Industry,
2018
21.
10.1016/j.mencom.2020.03.022_bib0110
Kustov
Zeolites and Zeolitelike Materials,
2016
22.
Kustov A.L., Benavente Donaire P.S., Koklin A.E., Bogdan V.I.
Kinetics and Catalysis,
2014