Development in Wastewater Treatment Research and Processes
Innovative Trends in Removal of Refractory Pollutants from Pharmaceutical Wastewater
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91 245 Ft
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Product details:
- Publisher Elsevier Science
- Date of Publication 17 January 2024
- ISBN 9780323992787
- Binding Paperback
- No. of pages462 pages
- Size 234x190 mm
- Weight 950 g
- Language English 529
Categories
Long description:
Development in Wastewater Treatment Research and Processes: Innovative Trends in Removal of Refractory Pollutants from Pharmaceutical Waste Water sorts out emerging and burning issues faced by the pharmaceutical industry, along with common effluent treatment plans. The book provides a comprehensive view of recent advents of various novel, advanced and hybrid treatment technologies in pharmaceutical wastewater treatment to treat emerging pollutants released by the pharmaceutical industry in their untreated wastewater. In addition, the book gives insights into recent developments with a physico-chemical and microbiological focus on the treatment of emerging contaminants (pollutants) present in pharmaceutical wastewater.
MoreTable of Contents:
1. Removal of pharmaceutical contaminants from waste water through activated sludge processes 2. Combine effect of Physico-chemical and Biological process on removal of pharmaceutical contaminants from the wastewater 3. Application of electrochemical oxidation4. Application of biosensors/biological assays for the analysis of contaminants present in pharmaceutical waste water 5. Oxidation and advanced oxidation processes 6. Removal of pharmaceutical contaminants through membrane bioreactor 7. Removal of pharmaceutical contaminants through fluidized bed reactor 8. Hybrid membrane processes 9. Advanced (nano)materials 10. Removal of emerging contaminants from pharmaceutical waste water through conventional treatment 11. Bioremediation 12. Natural treatment systems 13. Innovative technologies for emerging issues in pharmaceuticals14. Application of ultrafiltration, Nano filtration, reverse osmosis in pharmaceutical waste water treatment 15. Generation of transformation products during water treatment. 16. Novel strategies for efficiency enhancement
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