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This volume reviews the drinking water treatments in which AOPs display a high application potential. Firstly it reveals the typical supply sources and limitations of conventional technologies and critically reviews natural organic matter characterization and removal techniques, focusing mainly on AOP treatments. It then explores using AOPs for simultaneous inactivation/disinfection of several types of microorganisms, including highly resistant Cryptosporidium protozoa. Lastly, it discusses relevant miscellaneous topics, like the most promising AOP solid catalysts, the regime change of Fenton-like processes toward continuous reactors, the application of chemometrics for process optimization, the impact on disinfection byproducts and the tracing of toxicity during AOP treatments. This work is a useful reference for researchers and students involved in water technologies, including analytical and environmental chemistry, chemical and environmental engineering, toxicology, biotechnology, and related fields. It is intended to encourage industrial and public-health scientists and decision-makers to accelerate the application of AOPs as technological alternatives for the improvement of drinking water treatment plants. .
Environment. --- Water quality. --- Water pollution. --- Chemical engineering. --- Catalysis. --- Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution. --- Water Quality/Water Pollution. --- Industrial Chemistry/Chemical Engineering. --- Environmental pollution. --- Activation (Chemistry) --- Chemistry, Physical and theoretical --- Surface chemistry --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Engineering --- Chemistry, Technical --- Metallurgy --- Chemical pollution --- Chemicals --- Contamination of environment --- Environmental pollution --- Pollution --- Contamination (Technology) --- Asbestos abatement --- Bioremediation --- Environmental engineering --- Environmental quality --- Factory and trade waste --- Hazardous waste site remediation --- Hazardous wastes --- In situ remediation --- Lead abatement --- Pollutants --- Refuse and refuse disposal --- Environmental aspects --- Water --- Purification --- Oxidation. --- Freshwater --- Freshwater quality --- Marine water quality --- Quality of water --- Seawater --- Seawater quality --- Oxidation --- Quality --- Composition --- Aquatic pollution --- Fresh water --- Fresh water pollution --- Freshwater pollution --- Inland water pollution --- Lake pollution --- Lakes --- Reservoirs --- River pollution --- Rivers --- Stream pollution --- Water contamination --- Water pollutants --- Water pollution --- Waste disposal in rivers, lakes, etc.
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This volume reviews the drinking water treatments in which AOPs display a high application potential. Firstly it reveals the typical supply sources and limitations of conventional technologies and critically reviews natural organic matter characterization and removal techniques, focusing mainly on AOP treatments. It then explores using AOPs for simultaneous inactivation/disinfection of several types of microorganisms, including highly resistant Cryptosporidium protozoa. Lastly, it discusses relevant miscellaneous topics, like the most promising AOP solid catalysts, the regime change of Fenton-like processes toward continuous reactors, the application of chemometrics for process optimization, the impact on disinfection byproducts and the tracing of toxicity during AOP treatments. This work is a useful reference for researchers and students involved in water technologies, including analytical and environmental chemistry, chemical and environmental engineering, toxicology, biotechnology, and related fields. It is intended to encourage industrial and public-health scientists and decision-makers to accelerate the application of AOPs as technological alternatives for the improvement of drinking water treatment plants. .
Nature protection --- Chemical thermodynamics --- Enzymology --- Water supply. Water treatment. Water pollution --- Environmental protection. Environmental technology --- Engineering sciences. Technology --- Chemical technology --- katalyse --- thermodynamica --- BIT (biochemische ingenieurstechnieken) --- waterbehandeling --- toxicologie --- waterverontreiniging --- biotechnologie --- milieuverontreiniging --- ingenieurswetenschappen --- chemische technologie --- Cryptosporidium --- enzymen
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Since the first works introducing the aluminum intercalated clay family in the early 1970s, interest in the synthesis of pillared interlayered clays has increased tremendously, especially research into the properties and applications of new synthesis methods. The need for solids that could be used as cracking catalysts with larger pores than zeolitic materials has spurred the synthesis of new porous materials from clays. This book reviews the properties and applications of pillared clays and other layered materials used as catalysts, focusing on: - the acidity of pillared clays and the effect it has on catalytic performance - the use of pillared clays as supports for catalytically active phases, and the use of the resulting solids in environmentally friendly reactions - the comparison between the reactions of pillared clays and anionic clays.
Chemical thermodynamics --- Physicochemistry --- Inorganic chemistry --- Enzymology --- Environmental protection. Environmental technology --- katalyse --- milieuchemie --- anorganische chemie --- fysicochemie
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Since the first works introducing the aluminum intercalated clay family in the early 1970s, interest in the synthesis of pillared interlayered clays has increased tremendously, especially research into the properties and applications of new synthesis methods. The need for solids that could be used as cracking catalysts with larger pores than zeolitic materials has spurred the synthesis of new porous materials from clays. This book reviews the properties and applications of pillared clays and other layered materials used as catalysts, focusing on: - the acidity of pillared clays and the effect it has on catalytic performance - the use of pillared clays as supports for catalytically active phases, and the use of the resulting solids in environmentally friendly reactions - the comparison between the reactions of pillared clays and anionic clays.
Chemistry. --- Catalysis. --- Physical Chemistry. --- Inorganic Chemistry. --- Environmental Chemistry. --- Chemistry, inorganic. --- Physical organic chemistry --- Environmental chemistry. --- Chimie --- Chimie organique physique --- Catalyse --- Chimie de l'environnement --- Chemistry --- Chemistry, Inorganic --- Chemistry, Physical organic --- Catalysis --- Environmental chemistry
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Nature protection --- Chemical thermodynamics --- Enzymology --- Water supply. Water treatment. Water pollution --- Environmental protection. Environmental technology --- Engineering sciences. Technology --- Chemical technology --- katalyse --- thermodynamica --- BIT (biochemische ingenieurstechnieken) --- waterbehandeling --- toxicologie --- waterverontreiniging --- biotechnologie --- milieuverontreiniging --- ingenieurswetenschappen --- chemische technologie --- Cryptosporidium --- enzymen
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