Designing a Multifunctional Catalyst for the Direct Production of Gasoline-Range Isoparaffins from CO 2

In the formulation of zeolite-based catalysts for the direct cracking of crude, the use of kaolin matrixes prevents, to a large extent, zeolite dealumination. Metals and other impurities in crude oil provoke a slight decrease in activity and selectivity patterns.

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Veröffentlicht in:JACS Au 2021-11, Vol.1 (11), p.1961-1974
Hauptverfasser: Dokania, Abhay, Ould-Chikh, Samy, Ramirez, Adrian, Cerrillo, Jose Luis, Aguilar, Antonio, Russkikh, Artem, Alkhalaf, Ahmed, Hita, Idoia, Bavykina, Anastasiya, Shterk, Genrikh, Wehbe, Nimer, Prat, Alain, Lahera, Eric, Castaño, Pedro, Fonda, Emiliano, Hazemann, Jean-Louis, Gascon, Jorge
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container_end_page 1974
container_issue 11
container_start_page 1961
container_title JACS Au
container_volume 1
creator Dokania, Abhay
Ould-Chikh, Samy
Ramirez, Adrian
Cerrillo, Jose Luis
Aguilar, Antonio
Russkikh, Artem
Alkhalaf, Ahmed
Hita, Idoia
Bavykina, Anastasiya
Shterk, Genrikh
Wehbe, Nimer
Prat, Alain
Lahera, Eric
Castaño, Pedro
Fonda, Emiliano
Hazemann, Jean-Louis
Gascon, Jorge
description In the formulation of zeolite-based catalysts for the direct cracking of crude, the use of kaolin matrixes prevents, to a large extent, zeolite dealumination. Metals and other impurities in crude oil provoke a slight decrease in activity and selectivity patterns.
doi_str_mv 10.1021/jacsau.1c00317
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subjects Chemical Sciences
title Designing a Multifunctional Catalyst for the Direct Production of Gasoline-Range Isoparaffins from CO 2
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