Recovering Microalgal Bioresources: A Review of Cell Disruption Methods and Extraction Technologies

Molecules. 2022 Apr 27;27(9):2786. doi: 10.3390/molecules27092786.

Abstract

Microalgae have evolved into a promising sustainable source of a wide range of compounds, including protein, carbohydrates, biomass, vitamins, animal feed, and cosmetic products. The process of extraction of intracellular composites in the microalgae industry is largely determined by the microalgal species, cultivation methods, cell wall disruption techniques, and extraction strategies. Various techniques have been applied to disrupt the cell wall and recover the intracellular molecules from microalgae, including non-mechanical, mechanical, and combined methods. A comprehensive understanding of the cell disruption processes in each method is essential to improve the efficiency of current technologies and further development of new methods in this field. In this review, an overview of microalgal cell disruption techniques and an analysis of their performance and challenges are provided. A number of studies on cell disruption and microalgae extraction are examined in order to highlight the key challenges facing the field of microalgae and their future prospects. In addition, the amount of product recovery for each species of microalgae and the important parameters for each technique are discussed. Finally, pulsed electric field (PEF)-assisted treatments, which are becoming an attractive option due to their simplicity and effectiveness in extracting microalgae compounds, are discussed in detail.

Keywords: cell disruption; extraction; intracellular compounds; lipids; microalgae bioresources; pulsed electric field.

Publication types

  • Review

MeSH terms

  • Animals
  • Biofuels
  • Biomass
  • Carbohydrates
  • Cell Wall
  • Electricity
  • Microalgae* / metabolism

Substances

  • Biofuels
  • Carbohydrates