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Biodegradation and Detoxification of Micropollutants in Industrial Wastewater

Biodegradation and Detoxification of Micropollutants in Industrial Wastewater

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  • More about Biodegradation and Detoxification of Micropollutants in Industrial Wastewater

Micropollutants in industrial wastewater are a significant source of pollution. Biodegradation and Detoxification of Micropollutants in Industrial Wastewater summarizes the occurrence, source, effects, and detection and treatment methods of these pollutants. The book covers 11 chapters on the fate and effects of micropollutants, quantitative and qualitative analysis, and treatment technologies.

Format: Paperback / softback
Length: 252 pages
Publication date: 29 April 2022
Publisher: Elsevier - Health Sciences Division


Biodegradation and Detoxification of Micropollutants in Industrial Wastewater is a comprehensive guide that delves into the presence and origins of micropollutants in diverse industrial wastewater streams. It encompasses a wide range of micropollutants, their detrimental impacts, and the latest advancements in detection and treatment techniques. The book is organized into 11 chapters, each dedicated to exploring the fate and effects of micropollutants, conducting quantitative and qualitative analysis of micropollutants in industrial wastewaters, and discussing innovative approaches for treating micropollutants through conventional and advanced wastewater treatment technologies.

Micropollutants, which are small and persistent organic or inorganic compounds, are widely present in industrial wastewater. These pollutants originate from various sources, including industrial activities, agricultural runoff, urban stormwater, and pharmaceutical manufacturing. The types of micropollutants encountered in industrial wastewater include pharmaceuticals, personal care products, pesticides, industrial chemicals, and heavy metals.

The presence of micropollutants in industrial wastewater can have significant environmental and human health consequences. These pollutants can accumulate in aquatic ecosystems, leading to the disruption of biological processes, the toxicity of organisms, and the contamination of drinking water sources. They can also pose risks to human health through direct exposure or indirect pathways, such as the consumption of fish or water contaminated with micropollutants.

Detection and treatment of micropollutants in industrial wastewater are crucial for mitigating their adverse effects on the environment and human health. Traditional treatment methods, such as physical and chemical treatment, may not be effective in removing all micropollutants from wastewater. Therefore, emerging detection and treatment technologies, such as advanced oxidation processes, membrane bioreactors, and biotreatment, are being developed to address this challenge.

Advanced oxidation processes, such as ozone, UV radiation, and photocatalysis, are highly effective in removing micropollutants from industrial wastewater. These processes involve the generation of reactive oxygen species that degrade and eliminate micropollutants through chemical reactions. Membrane bioreactors, on the other hand, utilize biological membranes to filter and remove micropollutants from wastewater, while biotreatment involves the use of microorganisms to degrade and remove micropollutants.

In conclusion, Biodegradation and Detoxification of Micropollutants in Industrial Wastewater is a valuable resource for researchers, engineers, and practitioners in the field of wastewater treatment. It provides a comprehensive overview of the occurrence and source of micropollutants in industrial wastewater, their effects, and emerging detection and treatment methods. By highlighting the importance of addressing micropollutant pollution, this book contributes to the development of sustainable and environmentally friendly industrial practices.

Weight: 450g
Dimension: 235 x 191 (mm)
ISBN-13: 9780323885072

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