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In Advanced Physiochemical Treatment Technologies, leading pollution control educators and practicing professionals describe how various combinations of different cutting-edge process systems can be arranged to solve air, noise, and thermal pollution problems. Each chapter discusses in detail the three basic forms in which pollutants and waste are manifested: gas, solid, and liquid.
Sewage --- Water --- Purification --- Technological innovations. --- Hydrology --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage
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Wastewater treatment and sludge disposal are important for protecting receiving rivers, lakes, and other water bodies, and vital for human health. Since excessive discharge may cause eutrophication and deterioration of aquatic systems, the US EPA and other national agencies have set guidelines for wastewater discharge standards. Conventional technologies are well developed and widely applied worldwide for wastewater treatment; however, new ideas and new technologies are gaining additional interest for the sake of water and energy reuse. While water is essential in arid regions, wastewater reuse and recycling have been playing an important role in human life. Although there are no universal standards for industrial and agriculture reuse, balancing wastewater treatment and public health protection presents challenges and opportunities.
Sewage. --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage --- Life Sciences --- Waste Management --- Environmental Sciences
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Sewage --- Purification --- Technological innovations. --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage
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Sewage --- Purification --- Technological innovations. --- Cost effectiveness. --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage
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Sewage --- -Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage --- Purification --- -Ion exchange process --- -Purification --- Domestic effluent --- Purification&delete& --- Ion exchange process --- Ion exchange --- Electrochemical treatment
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Sewage --- Eaux usées --- Purification --- -Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage --- -Purification --- Eaux usées --- Effluent treatment --- Purification of sewage --- Sewage treatment --- Water treatment --- Disinfection
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Ce rapport examine les mécanismes innovants susceptibles d’aider à attirer de nouvelles ressources financières pour les services d’eau et d’assainissement (SEA). Il se concentre en particulier sur la mobilisation de financements remboursables fondés sur le marché (tels que les prêts, les obligations et les actions) comme moyen de combler l’insuffisance de financement pour la réalisation des Objectifs du Millénaire pour le développement liés à l’eau et d'autres objectifs cruciaux du secteur. Les rapports Camdessus et Gurría publiés il y a sept et quatre ans respectivement, formulent un certain nombre de recommandations dans ce domaine. Ce rapport examine dans quelle mesure ces recommandations ont été mises en œuvre et livre une réflexion sur la manière dont l’innovation financière pourrait s’adapter au contexte mondial marqué par une évolution rapide et par la persistance de la crise économique et financière. A lire également De l’eau pour tous: Perspectives de l’OCDE sur la tarification et le financement (2009) Infrastructures en eau et secteur privé: Guide de l’OCDE pour l’action publique (à venir) Problèmes sociaux liés à la distribution et à la tarification de l'eau (2003) Le prix de l'eau: Les tendances dans les pays de l'OCDE (1999)
Finance and Investment --- Environment --- Water --- Sewage --- Purification --- Finance. --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage --- Hydrology
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Industrial Wastewater Treatment, Recycling and Reuse is an accessible reference to assist you when handling wastewater treatment and recycling. It features an instructive compilation of methodologies, including advanced physico-chemical methods and biological methods of treatment. It focuses on recent industry practices and preferences, along with newer methodologies for energy generation through waste. The book is based on a workshop run by the Indus MAGIC program of CSIR, India. It covers advanced processes in industrial wastewater treatment, applications, and feasibility analysis, and explores the process intensification approach as well as implications for industrial applications. Techno-economic feasibility evaluation is addressed, along with a comparison of different approaches illustrated by specific case studies. Industrial Wastewater Treatment, Recycling and Reuse introduces you to the subject with specific reference to problems currently being experienced in different industry sectors, including the petroleum industry, the fine chemical industry, and the specialty chemicals manufacturing sector. Provides practical solutions for the treatment and recycling of industrial wastewater via case studies Instructive articles from expert authors give a concise overview of different physico-chemical and biological methods of treatment, cost-to-benefit analysis, and process comparison Supplies you with the relevant information to make quick process decisions.
Sewage --- Purification. --- Treatment. --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage --- Effluent treatment --- Purification of sewage --- Sewage treatment --- Water treatment --- Disinfection
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energy generation --- water reuse --- water treatment --- wastewater --- biological treatment --- physical and chemical treatment --- Water --- Sewage --- Water. --- Sewage. --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage --- Hydrology
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In many countries, especially in developing countries, many people lack access to water and sanitation services and this inadequate service is the main cause of diseases in these countries. Application of appropriate wastewater treatment technologies, which are effective, low cost, simple to operate, proven technologies, is a key component in any strategy aimed at increasing the coverage of wastewater treatment. Sustainable Treatment and Reuse of Municipal Wastewater presents the concepts of appropriate technology for wastewater treatment and the issues of strategy and policy for increasing wastewater treatment coverage. The book focuses on the resolution of wastewater treatment and disposal problems in developing countries, however the concepts presented are valid and applicable anywhere and plants based on combined unit processes of appropriate technology can also be used in developed countries and provide to them the benefits described.
Sewage --- Domestic effluent --- Domestic sewage --- Domestic wastewater --- Effluent (Sewage) --- Industrial effluent --- Industrial wastewater --- Sewage effluent --- Waste water --- Waste waters --- Wastewater --- Wastewaters --- Sewerage --- Effluent treatment --- Purification of sewage --- Sewage treatment --- Water treatment --- Purification. --- Recycling. --- Disinfection --- Environmental Sciences --- reuse & sludge
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