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|a 1306052443
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|a 628.35
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|a Integrated wastewater management and valorization using algal cultures /
|c edited by Goksel N. Demirer, Sibel Uludag-Demirer.
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|a Amsterdam :
|b Elsevier,
|c 2022.
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|a 1 online resource
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|a text
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|a Front Cover -- INTEGRATED WASTEWATER MANAGEMENT AND VALORIZATION USING ALGAL CULTURES -- INTEGRATED WASTEWATER MANAGEMENT AND VALORIZATION USING ALGAL CULTURES -- Copyright -- Contents -- Contributors -- Preface -- 1 -- Role of microalgae in circular economy -- 1. Background: circular economy and waste valorization -- 2. Conceptual framework: potential role of microalgae in the circular economy -- 2.1 Wastewater treatment by microalgal cultures -- 2.2 Biosequestration of CO2 emissions by microalgal cultures -- 2.3 Microalgal biorefineries
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|a 3. Techno-economic feasibility: scale-up potential and limitations of integrated wastewater-derived microalgal biorefineries -- 4. Conclusions -- Acknowledgments -- References -- Further reading -- 2 -- Recent advancements in algae-bacteria consortia for the treatment of domestic and industrial wastewater -- 1. Introduction -- 2. Algae in biological treatment of wastewater -- 2.1 Conventional biological treatment of wastewater: microbial ecology and function -- 2.1.1 Suspended culture systems -- 2.1.2 Attached culture systems -- 2.2 Nutrient removal
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|a 2.2.1 Suspended culture systems for microalgal wastewater treatment -- 2.2.2 Immobilized systems for microalgal wastewater treatment -- 2.3 Removal of heavy metals -- 2.4 Biotransformation of organic micropollutants -- 3. Mechanism of symbiosis between algae and bacteria -- 3.1 Carbon-oxygen recycle -- 3.2 Growth stimulation -- 3.3 Toxicity reduction -- 4. Examples of wastewater treatment by algae-bacteria consortia -- 4.1 Domestic wastewater -- 4.2 Industrial wastewater -- 5. Circular economy, process design, and modeling aspects of algae-bacteria based wastewater treatment
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|a 5.1 Circular economy examples of algae-bacteria consortia in wastewater treatment -- 5.2 Dynamic algae-bacteria models for wastewater treatment -- 6. Conclusions -- References -- 3 -- Integrated algal-based sewage treatment and resource recovery system -- 1. Introduction -- 1.1 Concerns about traditional POTWs -- 1.2 Reinvention of POTWs -- 1.2.1 Potential for energy recovery from sewage -- 1.2.2 Potential for nutrient recovery from sewage -- 1.3 Emerging approaches for sewage treatment and resource recovery -- 1.4 Algal-based sewage treatment
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|a 1.4.1 Mixotrophic sewage treatment and resource recovery system -- 1.4.2 STaRR system versus high-rate algal ponds -- 2. Details of the STaRR system -- 2.1 Mixotrophic sewage treatment by Galdieria sulphuraria -- 2.2 Hydrothermal liquefaction of algal biomass -- 2.3 Characterization of HTL byproducts -- 2.4 Leaching of phosphates from biochar -- 2.5 Recovery of phosphate from eluate of biochar -- 2.6 Recovery of nitrogen from aqueous product of HTL -- 3. Performance of the STaRR system -- 3.1 Sewage treatment -- 3.1.1 Nitrogen removal -- 3.1.2 Phosphate removal -- 3.1.3 BOD removal
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|a Sewage
|x Purification
|x Biological treatment.
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|a Algae
|x Industrial applications.
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|a Eaux us�ees
|x �Epuration
|x Traitement biologique.
|0 (CaQQLa)201-0004578
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|a Algues
|0 (CaQQLa)201-0001240
|x Applications industrielles.
|0 (CaQQLa)201-0374039
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|a Sewage
|x Purification
|x Biological treatment
|2 fast
|0 (OCoLC)fst01113768
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|a Demirer, Goksel N.
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|a Uludag-Demirer, Sibel.
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|i Print version:
|z 9780323858601
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|i Print version:
|z 0323858597
|z 9780323858595
|w (OCoLC)1263023515
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|u https://sciencedirect.uam.elogim.com/science/book/9780323858595
|z Texto completo
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