Phycology-Based Approaches for Wastewater Treatment and Resource Recovery

Phycology-Based Approaches for Wastewater Treatment and Resource Recovery

Shah, Maulin P.; Verma, Pradeep

Taylor & Francis Ltd

10/2024

293

Mole

9780367726454

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1. Biotechnological advances for utilization of algae, microalgae, and cyanobacteria for wastewater treatment and resource recovery. 2. Wastewater utilization as growth medium for seaweed, microalgae and cyanobacteria, defined as potential source of human and animal services. 3. Identification, Cultivation and Potential Utilization of Micro-algae in Domestic Wastewater Treatment. 4. Phyco-remediation: A Promising Solution for Heavy Metal Contaminants in Industrial Effluents. 5. Microalgae mediated elimination of endocrine-disrupting chemicals. 6. The application of microalgae for bioremediation of pharmaceuticals from wastewater: recent trend and possibilities. 7. Green Nanotechnology: A microalgal approach to remove heavy metals from wastewater. 8. Valued products from algae grown in wastewater. 9. Seaweeds used in wastewater treatment: Steps to Industrial commercialization. 10. Recent insights of algal based bioremediation and energy production for environmental sustainability.
Algae Biomass;Algae;Algal Cells;Organic Pollutants;HRAP;Biotechnology;Chlorella Vulgaris;Cyanobacteria;HRT;Oil Spills;Heavy Metal Ions;Remediations;Microbial Fuel Cell;Raceway Ponds;EPS;Wastewater Treatment;Microalgal Cells;Nutrient Removal;Metal Ions;Kappaphycus Alvarezii;Bubbling Column Photobioreactors;Seaweed Biomass;Biocrude Oil;Pharmaceutical Removal;Endocrine Disrupting Chemicals;TFBS;Degraded Metabolites;Chlorella Variabilis;Tannery Wastewater;Heavy Metal Removal;Total Coliforms Removal