The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4

The use of both the NiO/MgO/a-Al2O3 monolith catalyst and the autothermal reverse flow reactor for the catalytic partial oxidation of methane (CPOM) is a viable option to the production of synthesis gas because of its suitability to overcome obstacles both from the catalyst and reactor perspective....

Full description

Saved in:
Bibliographic Details
Main Authors: Chua, Marc Chester, Ngo, Prince Vincent, Te, Kenevvy
Format: text
Language:English
Published: Animo Repository 2009
Subjects:
Online Access:https://animorepository.dlsu.edu.ph/etd_bachelors/5764
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: De La Salle University
Language: English
id oai:animorepository.dlsu.edu.ph:etd_bachelors-6408
record_format eprints
spelling oai:animorepository.dlsu.edu.ph:etd_bachelors-64082021-07-15T09:04:45Z The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4 Chua, Marc Chester Ngo, Prince Vincent Te, Kenevvy The use of both the NiO/MgO/a-Al2O3 monolith catalyst and the autothermal reverse flow reactor for the catalytic partial oxidation of methane (CPOM) is a viable option to the production of synthesis gas because of its suitability to overcome obstacles both from the catalyst and reactor perspective. Research into this possible option is still in its early stages and only a few studies have been made regarding this topic. In this study, the effect of percent loading, catalyst to binder ratio and calcination temperature was investigated using Ni/MgO/a-Al2O3, catalysts deposited on a cordierite monolith using the dip slurry method. The catalysts prepared were tested using Scanning Electron Microscopy (SEM), Energy Dispersive X-Ray (EDX), Branauer-Emmet-Teller (BET) Analyzer, Atomic Absorption Spectrophotometry (AAS) and X-Ray Diffraction (XRD). NiO-MgO solid solution and a non-uniform distribution of Ni on the surface of various sections of the monolith cordierite, concentrated mostly at the middle, were observed for all the samples. The Ni/MgO/a -Al2O3, monolith catalyst with catalyst to binder ratio of 1:2, calcination temperature of 900°C, and 2% Ni loading was able to give a high surface area, high pore volume, and high durability in comparison with the other samples prepared. This catalyst was then further tested using TPD (Temperature Programmed Desorption) and showed that the Ni/MgO/a-Al2O3 catalyst have high basic sites compared to acidic sites. Further study on the activity of the monolith catalyst, effect of reduction temperature and other preparation techniques are recommended. 2009-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/etd_bachelors/5764 Bachelor's Theses English Animo Repository Catalysts Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Catalysts
Chemical Engineering
spellingShingle Catalysts
Chemical Engineering
Chua, Marc Chester
Ngo, Prince Vincent
Te, Kenevvy
The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4
description The use of both the NiO/MgO/a-Al2O3 monolith catalyst and the autothermal reverse flow reactor for the catalytic partial oxidation of methane (CPOM) is a viable option to the production of synthesis gas because of its suitability to overcome obstacles both from the catalyst and reactor perspective. Research into this possible option is still in its early stages and only a few studies have been made regarding this topic. In this study, the effect of percent loading, catalyst to binder ratio and calcination temperature was investigated using Ni/MgO/a-Al2O3, catalysts deposited on a cordierite monolith using the dip slurry method. The catalysts prepared were tested using Scanning Electron Microscopy (SEM), Energy Dispersive X-Ray (EDX), Branauer-Emmet-Teller (BET) Analyzer, Atomic Absorption Spectrophotometry (AAS) and X-Ray Diffraction (XRD). NiO-MgO solid solution and a non-uniform distribution of Ni on the surface of various sections of the monolith cordierite, concentrated mostly at the middle, were observed for all the samples. The Ni/MgO/a -Al2O3, monolith catalyst with catalyst to binder ratio of 1:2, calcination temperature of 900°C, and 2% Ni loading was able to give a high surface area, high pore volume, and high durability in comparison with the other samples prepared. This catalyst was then further tested using TPD (Temperature Programmed Desorption) and showed that the Ni/MgO/a-Al2O3 catalyst have high basic sites compared to acidic sites. Further study on the activity of the monolith catalyst, effect of reduction temperature and other preparation techniques are recommended.
format text
author Chua, Marc Chester
Ngo, Prince Vincent
Te, Kenevvy
author_facet Chua, Marc Chester
Ngo, Prince Vincent
Te, Kenevvy
author_sort Chua, Marc Chester
title The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4
title_short The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4
title_full The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4
title_fullStr The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4
title_full_unstemmed The preparation and characterization of Ni/MgO/a-Al2O3 monolith catalyst for the catalytic partial oxidation of CH4
title_sort preparation and characterization of ni/mgo/a-al2o3 monolith catalyst for the catalytic partial oxidation of ch4
publisher Animo Repository
publishDate 2009
url https://animorepository.dlsu.edu.ph/etd_bachelors/5764
_version_ 1712576483080273920