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Biomass valorization via pyrolysis in microalgae-based wastewater treatment: Challenges and opportunities for a circular bioeconomy

Journal of Applied Phycology 2023 30 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Etiele Greque de Morais, Jorge Alberto Vieira Costa, Jéssica Teixeira da Silveira, Lisa Schüler, Bárbara Bastos de Freitas, Jorge Alberto Vieira Costa, Michele Greque de Morais, Michele Greque de Morais, Ivet Ferrer, Luísa Barreira

Summary

Researchers reviewed how microalgae grown in wastewater treatment systems can have their leftover biomass converted into useful products — biochar, bio-oil, and gas — through a heating process called pyrolysis. While promising for a circular economy, major challenges remain including high energy demands and potential harmful emissions that need to be addressed before the approach can be widely adopted.

Abstract Microalgae-based wastewater treatment technology is a sustainable and environmentally friendly alternative to conventional treatment systems. The biomass produced during microalgae-based wastewater treatment can be valorized via pyrolysis to generate multiple valuable products, such as biochar, bio-oil, and pyrolytic gas. This study summarizes the potential of pyrolysis for valorizing microalgal biomass produced from wastewater treatment. It shows how pyrolysis can provide a variety of valuable products, the composition of which is influenced by the type of microalgae used, the operating conditions of the pyrolysis process, and the presence of contaminants in the biomass. It also highlights the main challenges to be addressed before pyrolysis can be adopted to valorize microalgae biomass. These challenges include the high energy requirements of pyrolysis, the need for further research to optimize the process, and the potential for pyrolysis to produce harmful emissions. Despite this, pyrolysis appears as a promising technology with potential to contribute to the sustainable development of a circular economy. Future research should address these challenges and develop more efficient and environmentally friendly pyrolysis processes. Graphical abstract

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