Research progress on Pt-based catalysts for propane dehydrogenation reaction

Journal Title: Energy Environmental Protection - Year 2024, Vol 38, Issue 4

Abstract

Propylene is an important chemical raw material that is widely used in the production of polypropylene, acrylonitrile, propylene oxide, and other chemical products. It is also the basic raw material for the three major synthetic materials: Plastics, rubber, and fiber. Propane dehydrogenation (PDH) is an industrial technology attracting attention due to the growing demand for propylene and the large-scale extraction of shale gas. However, the active components of commercial platinum (Pt -based) catalysts currently face challenges such as sintering, agglomeration, carbon build-up, rapidly deactivation, and poor stability. Therefore, it is important to develop propane dehydrogenation catalysts with both high activity and high stability. In recent years, extensive research has been conducted on Pt-based catalysts for propane dehydrogenation. This review provides a brief overview of the research progress on Pt-based catalysts, focusing on tuning additive metals and carrier effects. Specifically, it explores how additives and carriers facilitate the formation of highly dispersed and stable active sites. Furthermore, the review presents future perspectives on the development of Pt-based catalysts for the propane dehydrogenation reaction.

Authors and Affiliations

LIU Qiyuan|Department of Environmental Science and Engineering, School of Energy and Power Engineering, Xian Jiaotong University, Xian 710049, China, HE Chi*|Department of Environmental Science and Engineering, School of Energy and Power Engineering, Xian Jiaotong University, Xian 710049, China,

Keywords

Related Articles

Effects of noble metal poisoning on NH_3-SCR performances of Cu-SSZ-13 catalyst

Nitrogen oxides (NO_x) from diesel exhaust can induce severe air pollution problems. Selective catalytic reduction of NO_x with NH_3( NH_3-SCR) is the dominant technology for NO_x abatement from diesel vehicles, and Cu-S...

Research progresses of CO oxidation catalysts with superior SO_2 resistance

Carbon monoxide (CO) is a common air pollutant in industrial flue gas and motor vehicle exhaust, and its excessive emissions pose a serious threat to human health. Currently, catalytic oxidation technology is widely used...

Research progress on low-concentration CO_2 capture by porous solid-phase adsorption materials

To alleviate the increasingly severe global warming problem and achieve carbon neutrality goals, the carbon capture, utilization, and storage (CCUS) technology has attracted widespread attention as an important breakthro...

Analysis on the literature review and development frontier of "carbon lock-in" research based on bibliometrics

An analysis of the literature review of "carbon lock-in" research would be crucial for promoting low-carbon research. This paper collects Chinese and foreign literature on "carbon lock-in" from 2000 to 2022 and reviews "...

Application of HHO-CNN-LSTM-based CMAQ correction model in air quality forecasting in Shanghai

With rising levels of air-pollution, air-quality forecasting has become integral to the dissemination of human health advisories and the preparation of mitigation strategies. Traditional air quality models, such as the C...

Download PDF file
  • EP ID EP743127
  • DOI 10.20078/j.eep.20240601
  • Views 37
  • Downloads 0

How To Cite

LIU Qiyuan, HE Chi* (2024). Research progress on Pt-based catalysts for propane dehydrogenation reaction. Energy Environmental Protection, 38(4), -. https://europub.co.uk/articles/-A-743127