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"Water is a finite resource, and the demand for clean water is constantly growing. Clean freshwater is needed to meet irrigation demands for agriculture, for consumption, and for industrial uses. The world produces billions of tons of wastewater every year. This volume looks at multitude of ways to capture, treat, and reuse wastewater and how to effectively manage watersheds. It presents a selection of new technologies and methods to recycle, reclaim, and reuse water for agricultural, industrial, and environmental purposes. Key Features: explores the experiences and existing methodologies in the field of reuse of wastewater looks at different approaches in integrated water resources management examines the issues of groundwater management and development discusses saline water intrusion in coastal area presents various watershed management approaches includes case studies and analyses of various water management efforts."--
Water reuse --- Watershed management --- Eaux usées --- Bassins hydrographiques
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"It is common practice to evaluate wastewater to understand drug consumption, from antibiotics to illegal narcotics, and even to analyze dietary habits and trends. Evaluating contaminants in wastewater enables researchers, environmental scientists, and water quality experts to gain valuable information and data. Wastewater-based epidemiology is an emerging science that has proven to be a cost- and time-effective biomonitoring tool. This book provides a roadmap to detecting wastewater-borne pathogenic contaminants such as viruses, bacteria, fungi and others. It provides a basic, fundamental discussion of how sampling and monitoring of wastewater using epidemiological concepts and practices can aid in determining the presence of the COVID-19 virus in a community, for example, and may help predict future outbreaks. Offers a unique discussion of the detection of bacteria, fungi, and COVID-19 and other viruses in wastewater. Presents the fundamentals of wastewater chemistry and microbiology. Explains biomonitoring, sampling, testing, and health surveillance in a practical manner. Fundamentals of wastewater-based epidemiology : biomonitoring of bacteria, fungi, COVID-19, and other viruses is an invaluable resource to a wide array of readers with varying interests and backgrounds in water science and public health"
Sewage --- Biological monitoring. --- Epidemiology. --- Biological Monitoring. --- Wastewater-Based Epidemiological Monitoring. --- Eaux usées --- Surveillance épidémiologique fondée sur les eaux usées. --- Surveillance biologique. --- Épidémiologie. --- Microbiology. --- microbiology. --- Microbiologie. --- COVID-19 (Disease) --- Eaux usées --- Épidémiologie. --- environmental monitoring. --- Biological monitoring --- Epidemiology --- Microbiology
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Une eau est dite "potable" (ou "destinée à la consommation humaine") quand elle satisfait à un certain nombre de paramètres réglementés qui ne sont pas toujours faciles à satisfaire, notamment sous la pression des usages et des effets déjà visibles et attendus du changement climatique sur la ressource en eau. Cette nouvelle édition s'enrichit de développements concernant les impacts du changement climatique (disponibilité et qualité des ressources, traitement et coût de l'eau potable et l'évaluation et la gestion des risques sanitaires. Elle décrit également, en tenant compte des avancées récentes, les différents procédés de traitement des eaux (clarification, affinage, traitements spécifiques et désinfection) conventionnels et avancés, les aspects théoriques et techniques de dimensionnement, d'exploitation et de suivi des usines, ainsi que les performances à attendre, la maîtrise des dysfonctionnements et la lutte contre les non-conformités. Elle est destinée aux techniciens et ingénieurs chargés de la production et du contrôle sanitaire, aux bureaux d'études, ainsi qu'aux étudiants et enseignants. Ses développements sur l'eau potable en général, les effets du changement climatique, les risques sanitaires et les paramètres de qualités s'adressent également à tous les publics intéressés.
Eau potable --- Eaux usées --- Eau --- Épuration. --- Évacuation. --- Épuration --- Filtration. --- Qualité de l'eau --- Teneur en composés organiques.
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Intended for a wide audience ranging from engineers and academics to decision-makers in both the public and private sectors, Biological Treatment of Solid Waste: Enhancing Sustainability reviews several technologies that help communities manage solid waste sustainably, while at the same time generating energy, revenue, and other resources.
Sewage --- Soil microbiology. --- Compost. --- Eaux usées --- Sols --- Purification --- Biological treatment. --- Épuration --- Traitement biologique. --- Microbiologie. --- Soil microbiology --- Compost --- Biological treatment --- Sewage - Purification - Biological treatment --- Eaux usées --- Épuration
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