Utilization of Loaded Cobalt onto MCM-48 Mesoporous Catalyst as a Heterogeneous Reaction in a Fixed Bed Membrane Reactor to Produce Isomerization Product from n-Heptane

Author:

Ali Nisreen S.1,Salih Issam K.2,Harharah Hamed N.3ORCID,Majdi Hasan Sh.2ORCID,Salih Hussein G.4,Kalash Khairi R.5ORCID,Al-Shathr Ali4ORCID,Al-Sudani Farah T.4,Abdulrahman Mahir A.4ORCID,Alrubaye Jamal M.4,Albayati Talib M.4ORCID,Saady Noori M.6ORCID,Zendehboudi Sohrab7ORCID

Affiliation:

1. Materials Engineering Department, College of Engineering, Mustansiriyah University, Baghdad P.O. Box 14022, Iraq

2. Department of Chemical Engineering and Petroleum Industries, Al-Mustaqbal University, Babylon 51001, Iraq

3. Department of Chemical Engineering, College of Engineering, King Khalid University, Abha 61411, Saudi Arabia

4. Department of Chemical Engineering, University of Technology—Iraq, 52 Alsinaa St., Baghdad P.O. Box 35010, Iraq

5. Environment and Water Directorate, Ministry of Science and Technology, Baghdad 10070, Iraq

6. Department of Civil Engineering, Memorial University, St. John’s, NL A1B 3X5, Canada

7. Department of Process Engineering, Memorial University, St. John’s, NL A1B 3X5, Canada

Abstract

The use of catalytic membranes as microstructured reactors without a separative function has proved effective. High catalytic activity is possible with minimal mass transport resistances if the reactant mixture is pushed to flow through the pores of a membrane that has been impregnated with catalyst. In this study, n-heptane (C7H16) was hydrocracked and hydro-isomerized within a plug-flow zeolitic catalytic membrane-packed bed reactor. The metallic cobalt (Co) precursor at 3 wt.% was loaded onto support mesoporous materials MCM-48 to synthesize heterogeneous catalysis. The prepared MCM-48 was characterized by utilizing characterization techniques such as scanning electron microscopy (SEM), X-ray diffraction (XRD), energy dispersive X-ray analysis (EDAX), Fourier transform infrared (FTIR), nitrogen adsorption–desorption isotherms, and the Brunauer–Emmett–Teller (BET) surface area. The structural and textural characteristics of MCM-48 after encapsulation with Co were also investigated. The analyses were performed before and after metal loading. According to the results, the 3 wt.% Co/MCM-48 of metallic catalyst in a fixed bed membrane reactor (MR) appears to have an excellent catalytic activity of ~83% during converting C7H16 at 400 °C, whereas a maximum selectivity was approximately ~65% at 325 °C. According to our findings, the synthesized catalyst exhibits an acceptable selectivity to isomers with multiple branches, while making low aromatic components. In addition, a good catalytic stability was noticed for this catalyst over the reaction. Use of 3 wt.% Co/MCM-48 catalyst led to the highest isomerization selectivity as well as n-heptane conversion. Therefore, the heterogeneous catalysis MCM-48 is a promising option/ alternative for traditional hydrocracking and hydro-isomerization processes.

Funder

Dean of Scientific Research at King Khalid University

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis,General Environmental Science

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