Microalgae in Waste Water Remediation
Microalgae in Waste Water Remediation
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- More about Microalgae in Waste Water Remediation
Microalgae in Waste Water Remediation highlights trends and research opportunities in using microalgae for wastewater treatment, covering topics such as bioremediation, biomass production, and environmental impact.
Format: Paperback / softback
Length: 244 pages
Publication date: 24 July 2023
Publisher: Taylor & Francis Ltd
Microalgae in Waste Water Remediation serves as a comprehensive guide that explores the emerging trends and cutting-edge topics related to the utilization of microalgae in wastewater treatment. It endeavors to identify potential avenues for future research in the field of microalgae-based bioremediation. In order to accomplish this objective, the book conducts a thorough assessment and analysis of the subjects that have garnered significant attention within the scientific community, tracking their evolution over time. This invaluable resource is designed to benefit students, researchers, and policymakers who are actively engaged in the management of wastewater effluents through the utilization of microalgae and its potential applications in promoting sustainable development.
Microalgae have emerged as promising organisms for wastewater treatment due to their ability to remove pollutants, enhance nutrient removal, and produce valuable compounds. This book provides a comprehensive overview of the current state-of-the-art in microalgae research, including topics such as microalgae cultivation, biomass production, and wastewater treatment applications. It also discusses the potential of microalgae-based bioremediation for the treatment of contaminated water, including industrial effluents, agricultural runoff, and municipal wastewater.
One of the key challenges in using microalgae for wastewater treatment is the optimization of their growth conditions. This book explores various growth strategies, such as batch culture, continuous culture, and integrated bioreactors, to enhance microalgae productivity and reduce costs. It also discusses the use of different carbon sources, nutrient amendments, and light conditions to optimize microalgae growth and achieve optimal wastewater treatment outcomes.
In addition to cultivation and optimization, microalgae-based wastewater treatment also involves the extraction and purification of valuable compounds from microalgae biomass. This book discusses the latest techniques and technologies for extracting and purifying microalgae-derived compounds, such as pigments, lipids, and proteins, which can be used for various applications, including food and beverage, pharmaceuticals, and cosmetics.
Another important aspect of microalgae-based wastewater treatment is the integration of microalgae with other treatment technologies, such as activated sludge, biofiltration, and membrane bioreactors. This book explores the potential of microalgae to enhance the efficiency and effectiveness of these treatment technologies and discusses the challenges and opportunities associated with their integration.
Microalgae in Waste Water Remediation also addresses the economic and environmental implications of using microalgae for wastewater treatment. It discusses the potential of microalgae-based wastewater treatment to reduce costs, improve water quality, and promote sustainable development. It also highlights the importance of developing sustainable cultivation practices and minimizing the environmental impact of microalgae-based wastewater treatment.
In conclusion, Microalgae in Waste Water Remediation is a valuable resource for students, researchers, and policymakers interested in the field of microalgae-based wastewater treatment. It provides a comprehensive overview of the current state-of-the-art in microalgae research, cultivation, optimization, extraction, purification, and integration with other treatment technologies. The book also addresses the economic and environmental implications of using microalgae for wastewater treatment and highlights the potential of microalgae-based wastewater treatment to promote sustainable development.
Weight: 467g
Dimension: 234 x 156 (mm)
ISBN-13: 9780367707378
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