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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
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    • Formulary
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    • 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
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    • Treating municipal wastewater
    • Treatment and conditioning of industrial water
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    • Drinking water production
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    • Wastewater treatment - Reuse
    • Desalination
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regulation of sequenced aeration for activated sludge – Greenbass™ schema
regulation of sequenced aeration for activated sludge – Greenbass™ schema
DEHYDRIS ULTRA ultra dewatering
DEHYDRIS ULTRA ultra dewatering

Sludge treatment ... General BIOSOLIDS Dehydris® Ultra Biomimicry for sustainable ultra-dewatering Reduce sludge volume and produce a sanitized biocoal for agricultural reuse Sludge volume reduction 2 or 3 times less ... Sludge dewatering...
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sludge decarbonatation drinking water production
Table 26. - Results achieved with sludge from decarbonatation in drinking water production
DIGELIS FAST thermophilic digestion at 55°C
DIGELIS FAST thermophilic digestion at 55°C

Sludge treatment ... leverages thermophilic technology combined with energy recovery equipment to expedite the sludge digestion cycle while managing energy consumption efficiently. This advanced workshop is designed to handle...
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Figure 41. - Particle size distribution of dust issued from incineration flue gases from three typical sludges
Dehydris Twist boosted sludge dewatering using piston press technology
Dehydris Twist boosted sludge dewatering using piston press technology

Sludge treatment ... Dehydris Twist boosted sludge dewatering using piston press technology ... Sludge dewatering...
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advanced dewatering of sludge by pre-liming before centrifugation – Dehydris Lime
advanced dewatering of sludge by pre-liming before centrifugation – Dehydris Lime
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the lowest energy sludge drying system – Evaporis LE schema
the lowest energy sludge drying system – Evaporis LE schema
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low temperature sludge drying system – Evaporis LT schema
low temperature sludge drying system – Evaporis LT schema
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Table 8. - General
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Récupération chaleur buées
Figure 16. - Heat recovery from a vapor circuit
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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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Formula: Thermylis - Heat balance
Formula: Thermylis - Heat balance
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Table 9. - Heat balance of a fluidized bed incinerator
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Figure 28. - The sand fluidisation area using air
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Photo 18. - Wind box (HTBF incinerator)
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Figure 29. - DM content for heat self-sustainability
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Figure 30. - Fluidisation air exchanger
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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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