Study on ZnCrOx/H-Beta bifunctional catalyst for butane synthesis from syngas

Butane is an important chemical with applications as a clean fuel and solvent. The direct conversion of syngas to butane offers a promising route to the production of high-value chemicals. However, simultaneously achieving high CO conversion and butane selectivity remains a major challenge in heterogeneous catalysis. Herein, we successfully constructed a ZnCrO x /H-Beta bifunctional catalytic system for butane from syngas. By tuning the Zn/Cr ratio in the metal oxide, the surface structure and oxygen vacancy concentration were optimized. Comprehensive characterization results reveal that a Zn/Cr ratio of 2:1 leads to optimal ZnO surface enrichment and the formation of abundant oxygen vacancies (50.1%), which efficiently promote the conversion of syngas into methanol intermediates. Subsequently, these intermediates are selectively converted to butane over the acid sites of H-Beta zeolite via hydrogenation, oligomerization, and hydrogen transfer reactions. Under optimal reaction conditions, the ZnCrO x /H-Beta catalyst achieves a high butane selectivity of 53.2% with a CO conversion of 27.0%.

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Publication Details

Journal
Fuel
Published
2026-09-11
DOI
https://doi.org/10.1016/j.fuel.2026.141293
Primary Topic
Catalysts for Methane Reforming
Type
article
Field-Weighted Citation Impact
0.00

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article

Study on ZnCrOx/H-Beta bifunctional catalyst for butane synthesis from syngas

Peng He, Yujie Xie, Guo Sun, Xuemin Cao et al.
Fuel
Catalysts for Methane Reforming
article

Study on ZnCrOx/H-Beta bifunctional catalyst for butane synthesis from syngas

Peng He, Yujie Xie, Guo Sun, Xuemin Cao, Junyan Zhao, Botao Teng, Weiyi Zhang, Sen Wang
article en

Abstract

Butane is an important chemical with applications as a clean fuel and solvent. The direct conversion of syngas to butane offers a promising route to the production of high-value chemicals. However, simultaneously achieving high CO conversion and butane selectivity remains a major challenge in heterogeneous catalysis. Herein, we successfully constructed a ZnCrO x /H-Beta bifunctional catalytic system for butane from syngas. By tuning the Zn/Cr ratio in the metal oxide, the surface structure and oxygen vacancy concentration were optimized. Comprehensive characterization results reveal that a Zn/Cr ratio of 2:1 leads to optimal ZnO surface enrichment and the formation of abundant oxygen vacancies (50.1%), which efficiently promote the conversion of syngas into methanol intermediates. Subsequently, these intermediates are selectively converted to butane over the acid sites of H-Beta zeolite via hydrogenation, oligomerization, and hydrogen transfer reactions. Under optimal reaction conditions, the ZnCrO x /H-Beta catalyst achieves a high butane selectivity of 53.2% with a CO conversion of 27.0%.

FuelVol. 430
Tianjin University of Science and Technology (CN), Institute of Coal Chemistry (CN), University of Chinese Academy of Sciences (CN)
National Natural Science Foundation of China, Ministry of Science and Technology of the People's Republic of China, ShanXi Science and Technology Department
Industry, innovation and infrastructure
Openalex Percentile: Top 31%
Catalysts for Methane Reforming
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Study on ZnCrOx/H-Beta bifunctional catalyst for butane synthesis from syngas — Peng He, Yujie Xie, et al. · Fuel (2026) | TGRS Research Map | TGRS