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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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Formula: ∑  factor
Formula: ∑ factor
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Formula:  ∑N  - operating velocity N
Formula: ∑N - operating velocity N
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∑  factor
Figure 34. - Determination of the ∑ factor
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Figure 29. - The HP centrifuge (Source: Guinard)
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Formula: Compressibility factor - increased resistance filtration
Formula: Compressibility factor - increased resistance filtration
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compressibility
Figure 39. - Schematic representation of compressibility
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lateral suspension filter-presses
Photo 22. - SIAPPM Achères plant – Capacity:230 t·d–1 DS – 14 lateral suspension filter-presses (140 x (1,500 x 1,500) plates)
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three plate filter presses
Photo 23. - Barueri (Brazil) plant for the town of Sao Paulo – three overhead filter presses (150 x 2,000) plates)
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Cogeneration As Samra plant
Photo 8. - Cogeneration at the As Samra (Amman Jordannie) plant
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biogas bio-methane
Figure 16. - From biogas to bio-methane
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End Uses bio-methane
Figure 17. - The various “End Uses” of bio-methane
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Bio-methane production unit Strasbourg
Figure 19. - Bio-methane production unit in Strasbourg
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degremont®  range digesters
Figure 20. - degremont® range of digesters
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Thermophilic digestion Digelis Fast
Figure 21. - Thermophilic digestion (50-60 °C): Digelis Fast
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two-phase anaerobic digestion
Photo 11. - The Chattanooga plant (Tenessee) which treats the effluents of 1 600 000 PE, and includes 2 thermophilic digesters which feed 4 mesophilic digesters.
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SUEZ sludge digester design
Figure 22. - degremont® sludge digester design
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Cannon mixer
Figure 24. - Photo and diagram of a Cannon mixer
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Figure 27. - Schematic diagram of a Thermylis-HTFB fluidised bed furnace
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Self-supporting refractory dome - HTFB incinerator
Photo 17. - Self-supporting refractory dome (HTFB incinerator)
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Fluidisation grate equipped
Photo 18. - Fluidisation grate equipped
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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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