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    • water: a fundamental element
    • what water should we treat ? and why ?
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Figure 32. - Case 3
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Table 11. - Targeting heat self-sufficiency
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Storage big-bags
Photo 13. - Storage in big-bags mounted on metallic frames
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Self-heating
Figure 23. - Self-heating
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1_Dehydris Lime_vue 3D_EN
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2_Dehydris Twist_Schéma1_EN
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2_Dehydris Twist_Schéma_EN
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2_Thermylis 2S_Schéma_EN
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Thermylis 2R Schema EN
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Thermylis Flex_Schema_EN
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Figure 43. - Centrifugal force
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Formula: centrifugal acceleration
Formula: centrifugal acceleration
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Formula: centrifugal acceleration - Earth’s gravitational field
Formula: centrifugal acceleration - Earth’s gravitational field
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Formula: centrifugal acceleration - rotation speed
Formula: centrifugal acceleration - rotation speed
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Formula: force Fs separating the particle from the water
Formula: force Fs separating the particle from the water
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Figure 44. - Three phases disc centrifuge. Schematic cross section
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Formula: Ratio - fire losses  %VS/TSS
Formula: Ratio - fire losses %VS/TSS
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trace metal elements
Table 72. - Limit values for trace metal elements
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trace organic elements
Table 73. - Limit values for trace organic elements
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PFRP processes pathogenic germs
Table 75. - List of PFRP processes that significantly reduce pathogenic germs
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Suez Suez

SUEZ's degremont® 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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