Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Catalytic-Level Identification of Prepared Pt/HY, Pt-Zn/HY, and Pt-Rh/HY Nanocatalysts on the Reforming Reactions of N-Heptane

View through CrossRef
The operation of reforming catalysts in a fixed bed reactor undergoes a high level of interaction between the operating parameters and the reaction mechanism. Understanding such an interaction reduces the catalyst deactivation rate. In the present work, three kinds of nanocatalysts (i.e., Pt/HY, Pt-Zn/HY, and Pt-Rh/HY) were synthesized. The catalysts’ performances were evaluated for n-heptane reactions in the fixed bed reactor. The operating conditions applied were the following: 1 bar pressure, WHSV of 4, hydrogen/n-heptane ratio of 4, and the reaction temperatures of 425, 450, 475, 500, and 525 °C. The optimal reaction temperature for all three types of nanocatalysts to produce high-quality isomers and aromatic hydrocarbons was 500 °C. Accordingly, the nanocatalyst Pt-Zn/HY provided the highest catalytic selectivity for the desired hydrocarbons. Moreover, the Pt-Zn/HY-nanocatalyst showed more resistance against catalyst deactivation in comparison with the other two types of nanocatalysts (Pt/HY and Pt-Rh/HY). This work offers more understanding for the application of nanocatalysts in the reforming process in petroleum refineries with high performance and economic feasibility.
Title: Catalytic-Level Identification of Prepared Pt/HY, Pt-Zn/HY, and Pt-Rh/HY Nanocatalysts on the Reforming Reactions of N-Heptane
Description:
The operation of reforming catalysts in a fixed bed reactor undergoes a high level of interaction between the operating parameters and the reaction mechanism.
Understanding such an interaction reduces the catalyst deactivation rate.
In the present work, three kinds of nanocatalysts (i.
e.
, Pt/HY, Pt-Zn/HY, and Pt-Rh/HY) were synthesized.
The catalysts’ performances were evaluated for n-heptane reactions in the fixed bed reactor.
The operating conditions applied were the following: 1 bar pressure, WHSV of 4, hydrogen/n-heptane ratio of 4, and the reaction temperatures of 425, 450, 475, 500, and 525 °C.
The optimal reaction temperature for all three types of nanocatalysts to produce high-quality isomers and aromatic hydrocarbons was 500 °C.
Accordingly, the nanocatalyst Pt-Zn/HY provided the highest catalytic selectivity for the desired hydrocarbons.
Moreover, the Pt-Zn/HY-nanocatalyst showed more resistance against catalyst deactivation in comparison with the other two types of nanocatalysts (Pt/HY and Pt-Rh/HY).
This work offers more understanding for the application of nanocatalysts in the reforming process in petroleum refineries with high performance and economic feasibility.

Related Results

Catalytic Conversion of Greenhouse Gases Using Sustainable Nanocatalysts
Catalytic Conversion of Greenhouse Gases Using Sustainable Nanocatalysts
This study explores the catalytic conversion of greenhouse gases (GHGs) using sustainable nanocatalysts, with the goal of addressing climate change and decreasing human-caused emis...
Inhibition of autoignition and combustion rate for n -heptane homogeneous charge compression ignition combustion by methanol additive
Inhibition of autoignition and combustion rate for n -heptane homogeneous charge compression ignition combustion by methanol additive
This paper investigated the effects of methanol additive on autoignition and combustion rate of homogeneous charge compression ignition (HCCI) combustion using n-heptane. n-Heptane...
Microbial photoproduction of heptane
Microbial photoproduction of heptane
Abstract Fatty Acid Photodecarboxylase (FAP) has emerged as a promising catalyst for the biological production of long-chain hydrocarbons. We hav...
ANALYSIS OF ETHANOL-FUELLED SOLID OXIDE FUEL CELL SYSTEMS FOR COMBINED COOLING, HEAT AND POWER GENERATION
ANALYSIS OF ETHANOL-FUELLED SOLID OXIDE FUEL CELL SYSTEMS FOR COMBINED COOLING, HEAT AND POWER GENERATION
A solid oxide fuel cell (SOFC) fuelled by ethanol, an attractive green fuel that can be renewably produced from agricultural products, is regarded as a promising clean process to g...
OPTIMIZATION OF THE CATALYTIC REFORMING PROCESS
OPTIMIZATION OF THE CATALYTIC REFORMING PROCESS
The formulation and solution of the optimization problem requires the determination of the preliminary composition of the vector of input optimized values and the type of optimizat...
Asymmetric Domino Reactions Based on the Use of Chiral Metal Catalysts
Asymmetric Domino Reactions Based on the Use of Chiral Metal Catalysts
This chapter illustrates how much asymmetric organometallic catalysis has contributed to the development of enantioselective domino and multicomponent reactions. It updates the maj...
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
 Isolation, characterization of natural products dimeric amide alkaloids from roots of the Piper chaba Hunter. The synthesis of these products using intermolecular [4+2] cycloaddit...

Back to Top