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Microalgal products are an emerging class of food, feed, and nutraceuticals. They include dewatered or dried biomass, isolated pigments, and extracted fat. The oil, protein, and antioxidant-rich microalgal biomass is used as a feed and food supplement formulated as pastes, powders, tablets, capsules, or flakes designed for daily use. Pigments such as astaxanthin (red), lutein (yellow), chlorophyll (green), or phycocyanin (bright blue) are natural food dyes used as isolated pigments or pigment-rich biomass. Algal fat extracted from certain marine microalgae represents a vegetarian source of n-3-fatty acids (eicosapentaenoic acid (EPA), docosahexaenoic acid (DHA), γ-linolenic acid (GLA)). Gaining an overview of the production of microalgal products is a time-consuming task. Here, requirements and options of microalgae cultivation are summarized in a concise manner, including light and nutrient requirements, growth conditions, and cultivation systems. The rentability of microalgal products remains the major obstacle in industrial application. Key challenges are the high costs of commercial-scale cultivation, harvesting (and dewatering), and product quality assurance (toxin analysis). High-value food ingredients are commonly regarded as profitable despite significant capital expenditures and energy inputs. Improvements in capital and operational costs shall enable economic production of low-value food products going down to fishmeal replacement in the future economy.
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http://dx.doi.org/10.3390/foods10071626 | DOI Listing |
Food Res Int
November 2025
Department of Chemical Engineering, Chung Yuan Christian University, Taoyuan City 320, Taiwan. Electronic address:
Microalgae and their rich nutrient content are increasingly recognized as a sustainable food source. Microalgal macular pigment (MP), composed of zeaxanthin and lutein, is densely concentrated in the retinal macula of eyes and is frequently utilized in eye health maintenance. However, as a sustainable food ingredient, the food safety and functionality of MP need further investigated.
View Article and Find Full Text PDFBiochim Biophys Acta Proteins Proteom
September 2025
Amity Institute of Biotechnology, Amity University Uttar Pradesh, Lucknow Campus, Malhaur Station Road, Lucknow 226028, India; Research Cell, Amity University Uttar Pradesh, Lucknow Campus, Malhaur Station Road, Lucknow 226028, India. Electronic address:
Scenedesmus quadricauda, a freshwater microalga, has gained attention for its high lipid accumulation potential. However, information on fatty acid (FA) biosynthesis pathways in Scenedesmus species remains limited. Biomass (1.
View Article and Find Full Text PDFWater Res
August 2025
College of Environment and Ecology, Chongqing University, Chongqing 400045, China; Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, College of Environment and Ecology, Chongqing University, Chongqing, 400045, China. Electronic address:
This study explores the role of α-Fe₂O₃ in improving extracellular electron transfer (EET) and symbiotic interactions between electroactive Shewanella oneidensis MR-1, its gene-deficient mutants (ΔmtrC, ΔomcA, and ΔcymA), and microalgae (Chlorella vulgaris). The iron oxide facilitates the efficient transfer of electrons generated by MR-1 to microalgal photosystem via the pathway of CymA-MtrC-OmcA to α-Fe₂O₃. This process enhances the removals of TOC, TN, and NH₄⁺-N in the MR-1 bacterial-algal consortium by 9.
View Article and Find Full Text PDFBioresour Technol
September 2025
Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, College of Environment and Ecology, Chongqing University, Chongqing 400044, China.
Microalgal-bacterial granular sludge (MBGS) efficiently removes conventional contaminants, but its potential for estrogen transformation and detoxification remains unclear, which is a concerning topic for biological wastewater treatment of endocrine-disrupting contaminants. This study comprehensively investigated the fate, transformation, and detoxification of 17α-ethinylestradiol (EE2) in MBGS. Results demonstrated that MBGS showed superior performance to standalone Chlorella vulgaris and aerobic granular sludge, achieving 80.
View Article and Find Full Text PDFBioresour Technol
September 2025
Department of Chemical and Petroleum Engineering, Khalifa University of Science and Technology, PO Box 127788, Abu Dhabi, United Arab Emirates; Center for Membranes and Advanced Water Technology (CMAT), Khalifa University of Science and Technology, PO Box 127788, Abu Dhabi, United Arab Emirates. Ele
Electrotechnology has recently emerged as an eco-friendly method for enhancing microalgal processes. Electric fields can be applied to microalgae at different stages to improve their biomass productivity, high-value products (HVPs) content, harvesting efficiency, and cell disruption for biomolecule recovery. Incorporating them into microalgal processes can significantly contribute to achieving a circular bioeconomy.
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