4.7 Article

Macroalgae as a potential source of biomass for generation of biofuel: Artificial intelligence, challenges, and future insights towards a sustainable environment

Journal

FUEL
Volume 336, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.fuel.2022.126826

Keywords

Biomass; Macroalgae; Biofuel; Artificial intelligence; Sustainable energy; Sustainable environment

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The increase in population and energy demand has led to the exploration of alternative energy sources. The use of biofuels and renewable energy has gained attention due to the negative environmental impacts of fossil fuels. Macroalgae, rich in carbohydrates, lipids, and proteins, have emerged as a promising source for biofuel production. Various biotechnological methods, including fermentation, anaerobic digestion, burning, pyrolysis, and hydrothermal liquefaction, can convert macroalgae into valuable gaseous, liquid, and solid compounds. This review highlights the methods and studies on macroalgae-based energy generation, the application of artificial intelligence in biofuel production, and proposes solutions to overcome existing challenges for a sustainable environment.
The increase in the world's population and the demand for energy has increased the need to use different sources of energy generation. On the other hand, the use of fossil fuels, which is currently considered the main source of energy around the world, has led to the production of a high amount of environmental pollution and the reduction of natural fuel resources. Therefore, the use of biofuels and renewable as a potential and clean source is a very attractive alternative. Currently, macroalgae are cultivated for various industrial and food purposes in different regions of the world. Due to the high number of compounds such as carbohydrates, lipids, and proteins, macroalgae can be a suitable source to produce biofuels. There are various biotechnological methods to produce energy from macroalgae. These methods are divided into two general categories of biochemical processes such as fermentation and anaerobic digestion and thermochemical processes such as burning, pyrolysis and hydro-thermal liquefaction. In these methods, depending on the type of method, valuable gaseous, liquid, and solid compounds are produced that have many applications. This review focuses on the methods and studies con-ducted on energy generation from different species of macroalgae and develop various applications of artificial intelligence to produce biofuel from this type of algae and also identify the challenges towards a sustainable environment and offers different solutions to overcome the existing challenges.

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