Javascript must be enabled to continue!
Investigating Pt/Pumice catalyst for efficient 3-methyl-1-butanol conversion
View through CrossRef
The objective of this study was to obtain a modified Pt/pumice catalyst to support the conversion reaction of 3-methyl-1-butanol under specific reaction conditions. To achieve this objective, the first step involved preparing modified pumice catalyst pellets by impregnating them with Pt metal followed by activation at a temperature of 500 °C. The second step involved characterizing the Pt/pumice catalyst, including the surface distribution of Pt metal using SEM. The third step involved conducting the catalyst activity test against 3-methyl-1-butanol in a reactor (furnace) at temperatures ranging from 400 to 500°C with a flow system for the feed. The fourth step involved analyzing the conversion results using GC-MS chromatograms. The research results showed that the Si/Al ratio in the modified Pt/Pumice catalyst using a PtCl4 solution with a concentration of 0.0321 M for impregnation was 4:1, compared to 4.8:1 for Pt/Zeolite and 3.2:1 for Pt/ABP. The modified catalyst activity test for 3-methyl-1-butanol showed the following conversion results: Pt/Pumice 27.63%, Pt/Zeolite 23.85%, Pt/Black Pumice 14.81%, and for platinum catalyst, the conversion was 22.35%. These results indicated that the highest conversion was observed in the treated sample A-3 under the reaction condition of 450°C. The conversion products analyzed using GC-MS showed the presence of three molecules: 3-methylbutanal, 2-methylbutanal, and anhydrous isobutanoate.
Title: Investigating Pt/Pumice catalyst for efficient 3-methyl-1-butanol conversion
Description:
The objective of this study was to obtain a modified Pt/pumice catalyst to support the conversion reaction of 3-methyl-1-butanol under specific reaction conditions.
To achieve this objective, the first step involved preparing modified pumice catalyst pellets by impregnating them with Pt metal followed by activation at a temperature of 500 °C.
The second step involved characterizing the Pt/pumice catalyst, including the surface distribution of Pt metal using SEM.
The third step involved conducting the catalyst activity test against 3-methyl-1-butanol in a reactor (furnace) at temperatures ranging from 400 to 500°C with a flow system for the feed.
The fourth step involved analyzing the conversion results using GC-MS chromatograms.
The research results showed that the Si/Al ratio in the modified Pt/Pumice catalyst using a PtCl4 solution with a concentration of 0.
0321 M for impregnation was 4:1, compared to 4.
8:1 for Pt/Zeolite and 3.
2:1 for Pt/ABP.
The modified catalyst activity test for 3-methyl-1-butanol showed the following conversion results: Pt/Pumice 27.
63%, Pt/Zeolite 23.
85%, Pt/Black Pumice 14.
81%, and for platinum catalyst, the conversion was 22.
35%.
These results indicated that the highest conversion was observed in the treated sample A-3 under the reaction condition of 450°C.
The conversion products analyzed using GC-MS showed the presence of three molecules: 3-methylbutanal, 2-methylbutanal, and anhydrous isobutanoate.
Related Results
Pumice and pumicite in New Mexico
Pumice and pumicite in New Mexico
NM has ranked in the top three states in the production of pumiceous materials in the U.S. since 1980. The principle domestic uses of pumice and pumicite include concrete admixture...
Influence of microbial bioinoculants on the accumulation of new phytocompounds in Oroxylum indicum (L.) Benth. ex Kurz
Influence of microbial bioinoculants on the accumulation of new phytocompounds in Oroxylum indicum (L.) Benth. ex Kurz
The seedlings of Oroxylum indicum were inoculated with plant growth promoting microbes (PGPMs) mainly, Glomus mosseae, Trichoderma harzianum and Pseudomonas putida both alone and c...
Alternative substrates in the cultivation of ornamental and vegetable plants
Alternative substrates in the cultivation of ornamental and vegetable plants
Research objective: The aim of this research was to evaluate different types of innovative substrate mixtures as an alternative to traditional growing media with peat and pumice on...
Kajian Ukuran Butir Pumice sebagai Isi Netpot Hidroponik
Kajian Ukuran Butir Pumice sebagai Isi Netpot Hidroponik
Meningkatnya kebutuhan akan sistem pertanian yang efisien dan berkelanjutan mendorong pengembangan teknologi hidroponik yang tidak memerlukan tanah sebagai media tanam. Salah satu ...
Identifying of the compositions of the blended fuels of the butanol, gasoline, and water stabilized at low temperatures
Identifying of the compositions of the blended fuels of the butanol, gasoline, and water stabilized at low temperatures
The work was purposed to identify the compositions the blended fuel of butanol, gasoline, and water forming the stable emulsions at low temperatures. The previous researches report...
Studies on Photo-reactivity of Fe/Pumice photocatalyst for Indigo carmine Photodegradation
Studies on Photo-reactivity of Fe/Pumice photocatalyst for Indigo carmine Photodegradation
Abstract
Fe/Pumice photocatalyst was prepared by impregnation. Each photocatalyst was characterized by XRD, SEM, EDS, surface elemental mapping, surface area and las...
Advancing the organosolv biorefinery. Part I: Vapor stripping–vapor permeation for the recovery of 1‐butanol from aqueous solutions
Advancing the organosolv biorefinery. Part I: Vapor stripping–vapor permeation for the recovery of 1‐butanol from aqueous solutions
Abstract
The industrial implementation of many lab‐scale biorefinery designs has been significantly hampered by the lack of availability of e...
Greenhouse gas emission of corn butanol in life-cycle
Greenhouse gas emission of corn butanol in life-cycle
Abstract
Since advances in the ABE (acetone-butanol-ethanol) fermentation process in recent years have led to significant increases in its productivity and yields, t...

