Overview
ABSTRACT
This article relates to the treatment operations for the elimination of dissolved substances present in natural fresh water used as raw material in industry and the production of drinking water. The main processes are described and grouped by major physicochemical reaction (gas-liquid exchange, oxidation, adsorption, ion exchange, equilibrium, membranes), the operations are explained as well as the expected performances and drawbacks. A final chapter is devoted to a synthesis by dissolved substance, the interest of which is to quickly identify the process(es) allowing its elimination or transformation.
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Bernard LEGUBE : Professor Emeritus at the University of Poitiers, specialist in water quality and treatment
INTRODUCTION
The previous article, "
In many cases, however, treatment must be taken a step further, removing oxidizable organic matter that is poorly or not at all biodegradable (generally analyzed by COD, TOC, etc.), nitrogen-based macro-pollutants (nitrates, ammonium, etc.), metals and other non-metallic mineral compounds, mineral and organic micropollutants, certain gases, etc., sometimes requiring disinfection to produce drinking-quality water, and in the most advanced cases, achieving a product as close as possible to the element H 2 O (“ultrapure water”).
This article therefore reviews all physicochemical treatment processes (biological treatments are not covered here; see
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KEYWORDS
oxidation | adsorption | Gas-liquid exchange | ion exchange | equilibrium | membrane processes
Water treatment before use. Dissolved matter
Bibliography
- AWWA (American Water Works Association) - Water Quality & Treatment: A Handbook of Community Water Supplies (Qualité et traitement de l'eau : un manuel pour les services municipaux de distribution d'eau). - 4e édition, PONTIUS (F.W.) Technical Editor, McGraw-Hill New York, Londres, Paris, p. 1194...
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