Despite attracting many attentions in the past decades, microalgal cultivation still faces many challenges for industrialisation. Growth, as one of the most crucial characteristics of a …
T Kumar, S Eswari J - Energy & Fuels, 2023 - ACS Publications
Global warming has emerged as a major problem for humanity in this anthropocentric period. The constantly rising amount of carbon dioxide (CO2) in the atmosphere has caused …
M Morales, L Sánchez, S Revah - FEMS microbiology letters, 2018 - academic.oup.com
Microalgae are among the most productive biological systems for converting sunlight into chemical energy, which is used to capture and transform inorganic carbon into biomass. The …
Microalgal and cyanobacterial resource recovery systems could significantly advance nutrient recovery from wastewater by achieving effluent nitrogen (N) and phosphorus (P) …
Microalgae are considered a promising feedstock for biorefineries given that their chemical composition–rich in carbohydrate and lipid-can be directed towards the co-production of …
CYB Oliveira, EB D'Alessandro… - Science of the Total …, 2021 - Elsevier
In the search for microalgae species with potential for biodiesel production, Choricystis minor var. minor has been seen as a promising source of biomass due to its high lipid …
YC Yeh, T Syed, G Brinitzer, K Frick… - Bioresource …, 2023 - Elsevier
Accurate prediction of microalgae growth is crucial for understanding the impacts of light dynamics and optimizing production. Although various mathematical models have been …
Widespread cultivation of phototrophic microalgae for sustainable production of a variety of renewable products, for wastewater treatment, and for atmospheric carbon mitigation …
CG Cruz, APC da Rosa… - Journal of Chemical …, 2023 - Wiley Online Library
BACKGROUND Microalgae can biosynthesize phytohormones that promote plant growth and development. These compounds can potentially replace synthetic agricultural inputs …