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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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Spiral Heat Exchanger
Spiral Heat Exchanger
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système Double-Seam Lipp
système Double-Seam Lipp
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système Double-Seam Lipp
système Double-Seam Lipp
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Thermoposting plant system collecting routing air biofilter
Photo 4. - Thermoposting plant in the town of Revel (Haute-Garonne, France): rear view of the system for collecting and routing air to the biofilter
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Thermoposting plant Reve containers Ampli-Roll handling system
Photo 3. - Thermoposting plant in the town of Revel (Haute-Garonne, France): view of the containers with the Ampli-Roll handling system
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Thermoposting- preparing sludge/co-mixture
Photo 2. - Thermoposting- preparing the sludge/co-product mixture
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Sludge behaviour dry solids content
Figure 4. - Sludge behaviour versus the dry solids content
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Innodry dryer Arendale plant
Photo 5. - Innodry dryer: Arendale (Sweden) plant
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Heat processes sludge
Table 2. - Heat processes applied to sludge
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intensive recirculation principle
Figure 5. - Diagram showing the intensive recirculation principle
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Evaporis™ LE dryer
Figure 6. - Schematic diagram of an Evaporis™ LE dryer
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Classifying drying technologies
Table 3. - Classifying drying technologies
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Analysis returns inlet
Table 4. - Analysis of returns to inlet (in kg per tH2O evaporated)
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storing dried sludge
Table 5. - Table summarizing different possibilities for storing dried sludge
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Thermal oil loop boiler - dryer
Figure 15. - Thermal oil loop: 1 boiler/1 dryer
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Figure 14. - Heat exchanger fluid loop (thermal oil)
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Disc dryer
Figure 12. - Disc dryer (Haarslev)
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Storage skips
Photo 12. - Storage in skips
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Storage silos
Photo 11. - Storage in silos
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Figure 17. - Pelletisation unit
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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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