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(Ebook) Analysis, Fate and Removal of Pharmaceuticals in the Water Cycle, Volume 50 (Comprehensive Analytical Chemistry) (Comprehensive Analytical Chemistry) by Mira Petrovic, Damia Barcelo ISBN 9780080549705, 9780444530523, 0080549705, 0444530525

  • SKU: EBN-1685234
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Instant download (eBook) Analysis, Fate and Removal of Pharmaceuticals in the Water Cycle, Volume 50 (Comprehensive Analytical Chemistry) (Comprehensive Analytical Chemistry) after payment.
Authors:Mira Petrovic, Damia Barcelo
Pages:600 pages.
Year:2007
Editon:1
Publisher:Elsevier Science
Language:english
File Size:5.11 MB
Format:pdf
ISBNS:9780080549705, 9780444530523, 0080549705, 0444530525
Categories: Ebooks

Product desciption

(Ebook) Analysis, Fate and Removal of Pharmaceuticals in the Water Cycle, Volume 50 (Comprehensive Analytical Chemistry) (Comprehensive Analytical Chemistry) by Mira Petrovic, Damia Barcelo ISBN 9780080549705, 9780444530523, 0080549705, 0444530525

Pharmaceutically active substances are a class of new, so-called "emerging" contaminants that have raised great concern in recent years. Human and veterinary drugs are constantly being introduced into the environment, mainly as a result of the manufacturing process. Over a period of time, this level of chemical input may lead to long-term concentrations and promote continual, but unnoticed adverse effects on aquatic and terrestrial organisms. Analysis, Fate and Removal of Pharmaceuticals in the Water Cycle discusses state-of-the-art analytical methods for trace determination of pharmaceuticals in environmental samples while reviewing the fate and occurrence of pharmaceuticals in the water cycle (elimination in wastewater and drinking water treatment). Focus is given to the newest developments in the treatment technologies, such as membrane bioreactors and advance oxidation processes. * Well-structured overview of latest developments in trace determination* Concise and critical compilation of literature published over the last few years * Focuses on new treatment technologies, such as membrane bioreactors and advance oxidation processes
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