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Biofilms

Investigative Methods and Applications

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  • 266pages
  • 10 heures de lecture

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Techniques for studying biofilms—cellular colonies found in drinking water systems, wastewater operations, and natural water sources—have historically been limited. However, in the past decade, biofilms have emerged as crucial for water quality preservation, wastewater treatment, and microbiological research. Understanding biofilm development, structure, and dynamics is essential for improving water supplies and addressing issues like biofouling, corrosion, and bioweathering. This text offers a comprehensive assessment of both current and experimental methods for studying biofilms, in sample form and in situ. It demonstrates how tools such as sensors, microscopy, lasers, and calorimetry can be utilized to gather data on biofilm morphology and metabolism. The book organizes and examines the best investigative methods, covering culture-based approaches and emerging nondestructive techniques. It illustrates their application in various manmade environments, including sewers, wastewater plants, and drinking water systems, as well as in karsts and groundwater sources. By clarifying biofilm study methods, the text provides insights into challenges faced by environmental specialists, such as corrosion control and biofouling, while explaining technologies for controlled biofilm growth and effective monitoring. The technical content is aimed at engineers and researchers, facilitating the generation of electronic data.

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Biofilms, Hans Curt Flemming, Thomas Griebe, Ulrich Szewzyk

Langue
Année de publication
2000
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Titre
Biofilms
Sous-titre
Investigative Methods and Applications
Langue
Anglais
Éditeur
CRC Press
Publié
2000
Pages
266
ISBN10
1566768691
ISBN13
9781566768696
Séries
Mots clés
Description
Techniques for studying biofilms—cellular colonies found in drinking water systems, wastewater operations, and natural water sources—have historically been limited. However, in the past decade, biofilms have emerged as crucial for water quality preservation, wastewater treatment, and microbiological research. Understanding biofilm development, structure, and dynamics is essential for improving water supplies and addressing issues like biofouling, corrosion, and bioweathering. This text offers a comprehensive assessment of both current and experimental methods for studying biofilms, in sample form and in situ. It demonstrates how tools such as sensors, microscopy, lasers, and calorimetry can be utilized to gather data on biofilm morphology and metabolism. The book organizes and examines the best investigative methods, covering culture-based approaches and emerging nondestructive techniques. It illustrates their application in various manmade environments, including sewers, wastewater plants, and drinking water systems, as well as in karsts and groundwater sources. By clarifying biofilm study methods, the text provides insights into challenges faced by environmental specialists, such as corrosion control and biofouling, while explaining technologies for controlled biofilm growth and effective monitoring. The technical content is aimed at engineers and researchers, facilitating the generation of electronic data.