Huan Xiang, Ruojia Xin, N. Prasongthum, Paweesuda Natewong, T. Sooknoi, Jiawei Wang, P. Reubroycharoen, Xiaolei Fan

2022.3.1Resources Chemicals and Materials

DOI: 10.1016/j.recm.2021.12.002

Abstract

Bioethanol produced via valorisation of renewable biomass is of great interest to many industries. The increased availability and decreased cost of bioethanol make it a promising platform molecule to produce a wide range of value-added chemicals and fuels via the catalytic conversions. This paper provides a comprehensive review of catalytic conversions of bioethanol to a variety of chemicals/fuels such as hydrogen, C 2 –C 4 olefins, gasoline and small oxygenates. Specifically, the focus was placed on the relationship between the catalyst property (such as pore structure, acidity, active metal sites, and catalyst supports) and the catalytic performance (including catalyst activity and stability), as well as the reaction mechanisms involved. Future research avenues on the catalyst design for improving catalytic valorisation of bioethanol are also discussed.

Citation format

XIANG, Huan, et al. Catalytic conversion of bioethanol to value-added chemicals and fuels: A review. Resources Chemicals and Materials, 2022.