Lignocellulose biomass pyrolysis for bio-oil production : biomass pre-treatment methods for production of drop-in fuels

R. Kumar, V. Strezov, H. Weldekidan, J. He, S. Singh, T. Kan, B. Dastjerdi

Research output: Chapter in Book / Conference PaperChapter

Abstract

Bio-oil upgrading can be achieved mainly via three methods: Biomass pre-treatment, catalytic upgrading, and downstream bio-oil upgrading. The chapter aims to review the different physicochemical biomass pre-treatment methods used to improve the physiochemical properties of the bio-oils produced from the pyrolysis of treated biomass. Biomass pre-treatment could be classified as physical, thermal, chemical, and biological methods. The physical methods, such as grinding and densification, improve the biomass particle size and density, affecting the heat flow and mass transfer during pyrolysis, while thermal methods, such as torrefaction, decrease the activation energy of the pyrolysis process and increase the levels of hydrocarbons in the produced bio-oil. The chemical methods generally remove the minerals and alkali metals from the biomass, improve its calorific value and enhance other biomass properties. The biomass pre-treatment methods can be integrated with catalytic pyrolysis to enhance the total carbon yield and aromatic hydrocarbons in the bio-oil. This chapter provides a review of the basic principles of the methods and important parameters that affect biomass properties, highlights the key challenges involved in each treatment method, and suggests possible future recommendations to further understand the influence of the pre-treatment methods on bio-oil upgrading. In the last section, the effect of integrated catalytic pyrolysis and pre-treatment methods on bio-oil upgrading is provided.
Original languageEnglish
Title of host publicationBiowaste and Biomass in Biofuel Applications
EditorsYashvir Singh, Vladimi Strezov, Prateek Negi
Place of PublicationU.S.
PublisherCRC Press
Pages123-196
Number of pages74
ISBN (Electronic)9781003265597
ISBN (Print)9781032193588
DOIs
Publication statusPublished - 1 Jan 2023

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