2022•Energy & FuelsRequires access

Co-Based Catalysts Supported on Ceria with Different Shape Structures for Hydrodeoxygenation of Guaiacol

Chenglong Wen, Mohong Lu, Mengyang Zhao, Jie Zhu, Mingshi Li, Jian Shang, Yuhua Shan, Chunshan Song

Open publisher page 23 citations

Abstract

CeO 2 with three different morphologies of nanorods (CeO 2 -r), particles (CeO 2 -p), and cubes (CeO 2 -c) was prepared, and the guaiacol hydrodeoxygenation over their corresponding Co-based catalysts was performed at 160–220 °C, 2 MPa, a H 2 flow rate of 80 mL/min, and a weight hourly space velocity of 0.7 h –1 . Compared with Co/CeO 2 -p and Co/CeO 2 -c, Co/CeO 2 -r has smaller Co particle sizes, a higher Brunauer–Emmett–Teller surface area, and larger amount of Co active centers, oxygen vacancies, and weak acid sites. These better physicochemical properties for Co/CeO 2 -r provide more Co active sites for guaiacol hydrodeoxygenation, favor the adsorption and activation of guaiacol, and contribute to the cleavage of C–O. Therefore, Co/CeO 2 -r presents a maximum guaiacol conversion of 97.1% and the highest yield of cyclohexanol of 91.7% among these catalysts. The result shows that the shape structure of CeO 2 has an important influence on the guaiacol hydrodeoxygenation performance over its corresponding catalysts.

About this research paper

What this paper is about

CeO 2 with three different morphologies of nanorods (CeO 2 -r), particles (CeO 2 -p), and cubes (CeO 2 -c) was prepared, and the guaiacol hydrodeoxygenation over their corresponding Co-based catalysts was performed at 160–220 °C, 2 MPa, a H 2 flow rate of 80 mL/min, and a weight hourly space velocity of 0.7 h –1 . Compared with Co/CeO 2 -p and Co/CeO 2 -c, Co/CeO 2 -r has smaller Co particle sizes, a higher Brunauer–Emmett–Teller surface area, and larger amount of Co active centers, oxygen vacancies, and weak acid sites. These better physicochemical properties for Co/CeO 2 -r provide more Co active sites for guaiacol hydrodeoxygenation, favor the adsorption and activation of guaiacol, and contribute to the cleavage of C–O. Therefore, Co/CeO 2 -r presents a maximum guaiacol conversion of 97.1% and the highest yield of cyclohexanol of 91.7% among these catalysts. The result shows that the shape structure of CeO 2 has an important influence on the guaiacol hydrodeoxygenation performance over its corresponding catalysts.

Why it matters

OpenAlex reports 23 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

CeO 2 with three different morphologies of nanorods (CeO 2 -r), particles (CeO 2 -p), and cubes (CeO 2 -c) was prepared, and the guaiacol hydrodeoxygenation over their corresponding Co-based catalysts was performed at 160–220 °C, 2 MPa, a H 2 flow rate of 80 mL/min, and a weight hourly space velocity of 0.7 h –1 . Compared with Co/CeO 2 -p and Co/CeO 2 -c, Co/CeO 2 -r has smaller Co particle sizes, a higher Brunauer–Emmett–Teller surface area, and larger amount of Co active centers, oxygen vacancies, and weak acid sites. These better physicochemical properties for Co/CeO 2 -r provide more Co active sites for guaiacol hydrodeoxygenation, favor the adsorption and activation of guaiacol, and contribute to the cleavage of C–O. Therefore, Co/CeO 2 -r presents a maximum guaiacol conversion of 97.1% and the highest yield of cyclohexanol of 91.7% among these catalysts. The result shows that the shape structure of CeO 2 has an important influence on the guaiacol hydrodeoxygenation performance over its corresponding catalysts.

Key concepts: Guaiacol, Hydrodeoxygenation, Catalysis, Space velocity, Cyclohexanol, Chemistry, Adsorption, Yield (engineering)

Related papers

Back to paper searchBrowse research topicsOriginal source
Co-Based Catalysts Supported on Ceria with Different Shape Structures for Hydrodeoxygenation of Guaiacol — Research Paper | ScholarLens