Keywords
green p-xylene
green hydrocarbons
hydrothermal microwave synthesis
rapeseed oil
silicon carbide
zeolite HMFI (ZSM-5)
Abstract
The conversion of rapeseed oil using a catalytic material containing HMFI zeolite and silicon carbide was studied for the first time. The synthesized material effectively catalyzes the conversion of rapeseed oil into liquid hydrocarbons that mostly contain aromatic hydrocarbons, including a mixture of isomeric xylenes, in which the p-xylene content reaches 75%.
References
1.
Dedov A.G., Loktev A.S., Isaeva E.A., Karavaev A.A., Kitashov Y.N., Markin S.V., Baranchikov A.E., Ivanov V.K., Moiseev I.I.
Petroleum Chemistry,
2017
2.
Botas J.A., Serrano D.P., García A., Ramos R.
Applied Catalysis B: Environmental,
2014
3.
Lee A.F., Bennett J.A., Manayil J.C., Wilson K.
Chemical Society Reviews,
2014
4.
Doronin V.P., Potapenko O.V., Lipin P.V., Sorokina T.P., Buluchevskaya L.A.
Petroleum Chemistry,
2012
5.
Knyazeva E.E., Konnov S.V., Tikhonova A.A., Ponomareva O.A., Ivanova I.I.
Petroleum Chemistry,
2015
6.
Galadima A., Muraza O.
Journal of Industrial and Engineering Chemistry,
2015
7.
Dedov A.G., Loktev A.S., Karavaev A.A., Moiseev I.I.
Mendeleev Communications,
2018
8.
Pinto F., Martins S., Gonçalves M., Costa P., Gulyurtlu I., Alves A., Mendes B.
Applied Energy,
2013
9.
Negm N.A., Rabie A.M., Mohammed E.A.
Applied Catalysis B: Environmental,
2018
10.
Hilten R., Speir R., Kastner J., Das K.C.
Bioresource Technology,
2011
11.
Liu Y., Podila S., Nguyen D.L., Edouard D., Nguyen P., Pham C., Ledoux M.J., Pham-Huu C.
Applied Catalysis A: General,
2011
12.
Albahar M., Li C., Zholobenko V.L., Garforth A.A.
Microporous and Mesoporous Materials,
2020
13.
Huang X., Wang R., Pan X., Wang C., Fan M., Zhu Y., Wang Y., Peng J.
Green Energy and Environment,
2020
14.
Sadrameli S.M., Green A.E., Seames W.
Journal of Analytical and Applied Pyrolysis,
2009
15.
Silva Freitas L.N., de Sousa F.P., Rodrigues de Carvalho A., Pasa V.M.
Fuel,
2021
16.
David E.
Applied Catalysis A: General,
2021
17.
Le-Phuc N., Tran T.V., Phan T.T., Ngo P.T., Ha Q.L., Luong T.N., Tran T.H., Phan T.T.
Renewable Energy,
2021
18.
Dedov A.G., Karavaev A.A., Loktev A.S., Mitinenko A.S., Cherednichenko K.A., Moiseev I.I.
Materials Letters,
2021
19.
Arora P., Abdolahi H., Cheah Y.W., Salam M.A., Grennfelt E.L., Rådberg H., Creaser D., Olsson L.
Catalysis Today,
2021
20.
Naji S.Z., Tye C.T., Abd A.A.
Process Biochemistry,
2021
21.
Singh O., Agrawal A., Dhiman N., Vempatapu B.P., Chiang K., Tripathi S., Sarkar B.
Renewable Energy,
2021
22.
Zhang Z., Xie X., Lee W.J., Zhao G., Li C., Wang Y.
Food Chemistry,
2022
23.
Dedov A.G., Karavaev A.A., Loktev A.S., Zemlianskii P.V., Vagapova M.N., Maslakov K.I., Cherednichenko K.A., Egazar'yants S.V., Khoroshilov A.V., Ivanov P.I.
Mendeleev Communications,
2023