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<p align="justify"> <br /> <br /> 2-ethylhexanol is saturated alcohol compound that used in petrochemical and polimer industry. In synthesize route of 2-EH, there is hydrogenation step of EPA via 2-ethylhexanal to 2-EH. In this research, hydrogenation of 2-ethyl-2-hexenal...

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Main Author: WANADI KURNIAWAN (NIM : 13014083) - HARRY HANS JAPRANATA (NIM : 13014115), IYAN
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/28205
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:28205
spelling id-itb.:282052018-05-22T10:40:55Z#TITLE_ALTERNATIVE# WANADI KURNIAWAN (NIM : 13014083) - HARRY HANS JAPRANATA (NIM : 13014115), IYAN Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/28205 <p align="justify"> <br /> <br /> 2-ethylhexanol is saturated alcohol compound that used in petrochemical and polimer industry. In synthesize route of 2-EH, there is hydrogenation step of EPA via 2-ethylhexanal to 2-EH. In this research, hydrogenation of 2-ethyl-2-hexenal to produce its corresponding alcohol with nickel catalyst was studied. Catalyst that have been developed are nickel/alumina catalyst with metal loading between 40% and 60% with promoter copper, zinc, and molybdenum. Peptization method is used to synthesize catalyst with boehmite and nickel(II)nitrate hexahydrate as metal source. Impregnation method used for the addition of the promoter. BET (Brunauer-Emmett-Teller), XRD (X-ray Diffraction), and TPR (Temperature-Programed Reduction) used to acquire physical data, and composition along with the hydrogen consumption for catalyst activation. Catalyst activity test have done in isothermal batch reactor at 120oC and 30 bar for 10 hours. Every 1-hour, reaction mixture analyzed using gas chromatography with FID detector and RTX-5 column. <br /> <br /> Catalyst that synthesized have surface area around 61,5 – 235,2 m2/g, pore diameter around 76.4 Å, and pore volume around 0.19 ml/g. Catalyst with best activity achieved by 53% nickel loading catalyst give 100% conversion and 81% selectivity to 2-ethylhexanol. The test result also shows that copper is the best promoter to increase hydrogenation activity of C=O bond. This result also streghtened by kinetic modeling using power law. <br /> <p align="justify"> 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"> <br /> <br /> 2-ethylhexanol is saturated alcohol compound that used in petrochemical and polimer industry. In synthesize route of 2-EH, there is hydrogenation step of EPA via 2-ethylhexanal to 2-EH. In this research, hydrogenation of 2-ethyl-2-hexenal to produce its corresponding alcohol with nickel catalyst was studied. Catalyst that have been developed are nickel/alumina catalyst with metal loading between 40% and 60% with promoter copper, zinc, and molybdenum. Peptization method is used to synthesize catalyst with boehmite and nickel(II)nitrate hexahydrate as metal source. Impregnation method used for the addition of the promoter. BET (Brunauer-Emmett-Teller), XRD (X-ray Diffraction), and TPR (Temperature-Programed Reduction) used to acquire physical data, and composition along with the hydrogen consumption for catalyst activation. Catalyst activity test have done in isothermal batch reactor at 120oC and 30 bar for 10 hours. Every 1-hour, reaction mixture analyzed using gas chromatography with FID detector and RTX-5 column. <br /> <br /> Catalyst that synthesized have surface area around 61,5 – 235,2 m2/g, pore diameter around 76.4 Å, and pore volume around 0.19 ml/g. Catalyst with best activity achieved by 53% nickel loading catalyst give 100% conversion and 81% selectivity to 2-ethylhexanol. The test result also shows that copper is the best promoter to increase hydrogenation activity of C=O bond. This result also streghtened by kinetic modeling using power law. <br /> <p align="justify">
format Final Project
author WANADI KURNIAWAN (NIM : 13014083) - HARRY HANS JAPRANATA (NIM : 13014115), IYAN
spellingShingle WANADI KURNIAWAN (NIM : 13014083) - HARRY HANS JAPRANATA (NIM : 13014115), IYAN
#TITLE_ALTERNATIVE#
author_facet WANADI KURNIAWAN (NIM : 13014083) - HARRY HANS JAPRANATA (NIM : 13014115), IYAN
author_sort WANADI KURNIAWAN (NIM : 13014083) - HARRY HANS JAPRANATA (NIM : 13014115), IYAN
title #TITLE_ALTERNATIVE#
title_short #TITLE_ALTERNATIVE#
title_full #TITLE_ALTERNATIVE#
title_fullStr #TITLE_ALTERNATIVE#
title_full_unstemmed #TITLE_ALTERNATIVE#
title_sort #title_alternative#
url https://digilib.itb.ac.id/gdl/view/28205
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