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Degrémont® water handbook Degrémont® water handbook
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  • Water and generalities
    • Water: a fundamental element
    • What water should we treat ? and why ?
    • Fundamental physical-chemical engineering processes applicable to water treatment
    • Fundamental biological engineering processes applicable to water treatment
    • Water analysis and treatability
    • Aquatic organisms
    • Corrosion in metal and concrete
  • Formulas and tools
    • Formulary
  • Processes and technologies
    • Pre-treatments
    • Flocculators – settling tanks – flotation units
    • Biological processes
    • Methane fermentation
    • Filters
    • Using ion exchangers
    • Separation by membranes
    • Degasification, odour control, evaporation
    • Oxidation-disinfection
    • Liquid sludge treatment
    • Dewatered sludge treatment
    • Reagent storage and feeding
    • Instrumentation control-regulation
    • Drinking water treatment
    • Treating municipal wastewater
    • Treatment and conditioning of industrial water
    • Industrial processes and effluent treatment
  • Degrémont® technologies
    • Drinking water production
    • Desalination
    • Wastewater treatment
    • Sludge treatment
    • Air treatment
    • Cross-cutting issues, micropollutants and PFAS
  • Case studies
    • Drinking water production
    • Wastewater treatment - Reuse
    • Desalination
    • Sludge treatment
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Textile factories Association Haute Vallée de la Touyre
Figure 51. - Textile factories operated by the Association de la Haute Vallée de La Touyre (France)
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gas scrubbing water systems oxygen furnaces
Figure 53. - Diagram of gas scrubbing water systems used in basic oxygen furnaces
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blast furnace gas scrubbing water
Figure 52. - Diagram of blast furnace gas scrubbing water system
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removal of problematic odors by chemically scrubbing foul air in the towers – Azurair C
removal of problematic odors by chemically scrubbing foul air in the towers – Azurair C
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Ultrafiltration membranes physical-chemical silica removal
Photo 23. - Ultrafiltration membranes follow the physical-chemical softening and silica removal, as pre-treatment before RO and IX to produce ultrapure water at Lodi Energy Center
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White Slough Water Pollution Lodi Energy Center
Photo 20. - White Slough Water Pollution Control Facility and the Lodi Energy Center
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Influent Water Characteristics
Table 28. - Influent water characteristics
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Clarified water
Table 29. - Clarified water characteristics
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Lodi Energy Center
Photo 21. - Lodi Energy Center
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Covered odours
Photo 27. - Covered tanks to avoid odours
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Shanghai Chemical Industry Park - 2
Photo 26. - Shanghai Chemical Industry Park – view 2
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Shanghai Chemical Industry Park - 1
Photo 25. - Shanghai Chemical Industry Park – view 1
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Floatation unit
Photo 29. - Flotation unit
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GAC units
Photo 28. - GAC units
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floatation unit plexiglass protective
Photo 33. - Inside of the stainless steel floatation unit (SERFLO S25) with plexiglass protective sides
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Characteristics sizing values
Table 38. - Characteristics of sizing values retained
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facility FAPROGI RAMBOUILLET
Photo 36. - Photo of the facility within a container FAPROGI located at RAMBOUILLET (78)
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View of the entire facility  DOW (ex Rohm et Haas)
Photo 35. - View of the entire facility DOW (ex Rohm et Haas)
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View facility FAPROGI RAMBOUILLET
Figure 48. - View of the facility Faprogi located at RAMBOUILLET
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raw effluent plant inlet
Table 40. - Raw effluent characteristics in plant inlet
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Suez Suez

SUEZ's Degrémont® water handbook offers to water treatment professionals, fundamental concepts of water treatment processes and technologies as well as degremont® solutions applied to treatment line and adapted to each use of water. Designed by field men for field men, this valuable tool is essential for site managers, environmental managers, quality managers, maintenance managers, stakeholders in sustainable development, water agencies, documentation centers in universities, consultants, local authority technical departments, water management companies, etc.

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