MICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST

<p align="justify">Methanol (CH3OH) synthesis through syngas (a gas mixture of CO2, CO, and H2) hydrogenation on Cu-based catalyst has been used for quite a long time by industry and has been inspected thouroughly to be developed as well. A research for methanol synthesis via CO2 and...

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Main Author: Luth&#64257; Maulana (13314044), Refaldi Intri Dwi Putra (13314072), Ari&#64257;n
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/25742
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:25742
spelling id-itb.:257422018-09-20T14:27:10ZMICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST Luth&#64257; Maulana (13314044), Refaldi Intri Dwi Putra (13314072), Ari&#64257;n Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/25742 <p align="justify">Methanol (CH3OH) synthesis through syngas (a gas mixture of CO2, CO, and H2) hydrogenation on Cu-based catalyst has been used for quite a long time by industry and has been inspected thouroughly to be developed as well. A research for methanol synthesis via CO2 and CO hydrogenation over nickel-based catalyst has been accomplished through this study. The e&#64256;ect of dopant introduction to nickel surface was investigated by substituting one Ni atom on Ni(111) surface with Cu, Pd, Pt, or Rh. This action showed satisfying result where CO2 hydrogenation reaction via CO2-H2COO* pathway was accelerated in respect to pure Ni catalyst. Hydrogenation reaction on Ni-Cu catalyst appeared to have the best TOF (3.12 x 10-6 site-1 s-1) on T = 573 K and P = 75 bar compared to other catalyst. On CO hydrogenation pathway, Ni-Rh catalyst displayed promising result both in HCO* and COH* intermediate pathway. A manipulation of external variable disclosed a quite signi&#64257;cant increase in TOF when the temperature is raised, the pressure is decreased, and the composition of H2 gas in syngas feed is increased. A reaction which describe the whole methanol synthesis process for each pathway has been found using Pearson’s correlation of activation energy–reaction energy and BEP correlation.<p align="justify"> <br /> text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description <p align="justify">Methanol (CH3OH) synthesis through syngas (a gas mixture of CO2, CO, and H2) hydrogenation on Cu-based catalyst has been used for quite a long time by industry and has been inspected thouroughly to be developed as well. A research for methanol synthesis via CO2 and CO hydrogenation over nickel-based catalyst has been accomplished through this study. The e&#64256;ect of dopant introduction to nickel surface was investigated by substituting one Ni atom on Ni(111) surface with Cu, Pd, Pt, or Rh. This action showed satisfying result where CO2 hydrogenation reaction via CO2-H2COO* pathway was accelerated in respect to pure Ni catalyst. Hydrogenation reaction on Ni-Cu catalyst appeared to have the best TOF (3.12 x 10-6 site-1 s-1) on T = 573 K and P = 75 bar compared to other catalyst. On CO hydrogenation pathway, Ni-Rh catalyst displayed promising result both in HCO* and COH* intermediate pathway. A manipulation of external variable disclosed a quite signi&#64257;cant increase in TOF when the temperature is raised, the pressure is decreased, and the composition of H2 gas in syngas feed is increased. A reaction which describe the whole methanol synthesis process for each pathway has been found using Pearson’s correlation of activation energy–reaction energy and BEP correlation.<p align="justify"> <br />
format Final Project
author Luth&#64257; Maulana (13314044), Refaldi Intri Dwi Putra (13314072), Ari&#64257;n
spellingShingle Luth&#64257; Maulana (13314044), Refaldi Intri Dwi Putra (13314072), Ari&#64257;n
MICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST
author_facet Luth&#64257; Maulana (13314044), Refaldi Intri Dwi Putra (13314072), Ari&#64257;n
author_sort Luth&#64257; Maulana (13314044), Refaldi Intri Dwi Putra (13314072), Ari&#64257;n
title MICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST
title_short MICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST
title_full MICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST
title_fullStr MICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST
title_full_unstemmed MICROKINETIC STUDY OF METHANOL SYNTHESIS FROM CO2 AND CO HYDROGENATION ON NICKEL-BASED CATALYST
title_sort microkinetic study of methanol synthesis from co2 and co hydrogenation on nickel-based catalyst
url https://digilib.itb.ac.id/gdl/view/25742
_version_ 1821910528825491456