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Titlebook: Biotechnological Processes for Green Energy, and High Value Bioproducts by Microalgae, and Cyanobact; Alfredo de Jesús Martínez-Roldán Boo

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Metabolites from Microalgal Cultures as Potential Sources for the Pharmaceutical Industry,e and the abiotic factors that most influence the metabolite concentration in microalgal biomass. Likewise, the authors describe the methodologies for metabolite extraction, fractionation, and analysis and present examples that have demonstrated their potential pharmaceutical application, such as st
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Microalgae and Cyanobacteria Antioxidant Capacity under Stress Conditions,ient limitation and the effect of marine culture media. In ., the effect of total nitrogen deficiency, high salinity, light intensity, and temperature was evaluated. Nitrogen starvation or UV in . and . showed an improvement in enzymatic antioxidant activity. The limitation of nutrients in . increas
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Process Integration via a Sustainable Biorefinery Approach Using Agro-industrial Residues and Photoal intensification indicators are described. A novel diagram was proposed that describes process integration via a sustainable biorefinery approach using wastes and agro-industrial residues. The above reveals that the generated methodology can be considered for control, multi-scale-up, and optimizat
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Attached Biofilm Cultivation (ABC) of Mixotrophic Microalgae for the Sustainable Supply of Innovatig species of diatoms, cyanobacteria, and chlorophytes species naturally rich in high-value organic and inorganic materials. In this review, authors report on ABC as a means for more consistent and cost-effective industrial biomass production. Principle physiochemical parameters affecting biofilm met
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Interactions Between Organizations Regarding Management of River Water Basins at a Socially Vulneramediation strategies applying . immobilized in alginate. This experience demonstrated the potential of this simple and low-cost technology to remove urban-water contaminants, offering as an additional advantage of the possibility of an easy biomass recovery, which may become a source of alternative
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2543-0599 of pollutants, wastewater treatment, production of high-value products or bioenergy, and finally evaluate the feasibility of the processes both ineconomic and sustainability aspects.  .978-3-031-43971-1978-3-031-43969-8Series ISSN 2543-0599 Series E-ISSN 2543-0602
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https://doi.org/10.1007/978-3-031-43969-8Biofuels; Bioprocesses; Biorefinery; High-Value Products; Microalgal Biotechnology
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978-3-031-43971-1The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
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Biotechnological Processes for Green Energy, and High Value Bioproducts by Microalgae, and Cyanobact978-3-031-43969-8Series ISSN 2543-0599 Series E-ISSN 2543-0602
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,Verständnisse von Raum und Gesellschaft,a, rivers, lakes, lagoons, soil, etc.), and the possibility of performing autotrophic, mixotrophic, and heterotrophic metabolism. This diversity is the reason for their ability to produce and accumulate different compounds, many of which have the potential to be used in industrial processes. These c
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