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Phosphate Corrosion Control in Drinking Water

Phosphate Corrosion Control in Drinking Water

Phosphate Corrosion Control in Drinking Water

Product catalog summary
Introduction
Corrosion in water distribution systems occurs due to the oxidation of metals when exposed to oxygenated water, forming stable metal oxides. This can affect consumer health, increase costs, and alter the aesthetics of water. Older systems with lead-based solders require protection to prevent elevated lead levels, regulated by the EPA at ≤0.015 mg/L. Inorganic phosphates, such as polyphosphates and orthophosphates, are used as corrosion inhibitors. Reliable monitoring is essential for effective corrosion control and cost reduction.

Phosphate Corrosion Control
Phosphate is used to minimize corrosion in potable water systems and reduce lead corrosion to comply with EPA standards. For passivation, phosphate is dosed at >3.0 mg/L as orthophosphate, while maintenance dosages range from 0.5-1.5 mg/L.

Phosphate Treatment Monitoring
Monitoring phosphate concentration is crucial for adequate corrosion control. Continuous monitoring is preferred over manual methods to avoid under- or overfeeding during flow fluctuations. An online instrument for phosphate feed control helps meet regulatory and aesthetic requirements while reducing chemical costs. Continuous systems with automatic feed maintain desired set points regardless of flow rate changes, minimizing corrosion and costs.

AMI Phosphate II
The AMI Phosphate II is an online analyzer for automatic and continuous measurement of dissolved orthophosphate. It is ideal for monitoring and controlling phosphate dosing. Features include an overflow cell and flowthrough photometer to prevent coating and clogging, and an optional cleaning module to reduce maintenance. Built-in surveillance functions generate alarms for invalid measurements, such as missing flow or empty reagents.
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Catalog excerpts

Phosphate Corrosion Control in Drinking Water-1

Phosphate Corrosion Control in Drinking Water Introduction Corrosion occurs because metals tend to oxidize when they come in contact with oxygenated water, resulting in the formation of stable metal oxides. Corrosion in water distribution systems can impact consumers’ health, costs, and the aesthetics of finished water. Older systems may include lead based solders which must be protected to avoid elevated lead concentrations which is regulated by the EPA at ≤0.015 mg/L. Corrosion inhibitors such as inorganic phosphates in the form of polyphosphates, orthophosphates, glassy phosphates, and bimetallic phosphates are often employed. To ensure proper corrosion control, correct feed and to reduce operating cost reliable monitoring is required. Phosphate Corrosion Control Phosphate is commonly used to minimize corrosion to potable water distribution systems, residential, commercial, and industrial potable water piping, and reduce lead corrosion to comply with EPA standards. To achieve passivation of new or previously untreated systems phosphate is typically dosed at > 3.0 mg/L as orthophosphate. The typical maintenance dosage to ensure corrosion control is 0.5-1.5 mg/L as orthophosphate. Phosphate Treatment Monitoring Phosphate concentration monitoring is necessary to ensure adequate corrosion control. Manual monitoring is possible, however to avoid under- or overfeed during periods of fluctuating system flows continuous 1 Phosphate Corrosion Control in Drinking Water Randy Turner, Swan USA Philippe Trösch, Application Manag

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Phosphate Corrosion Control in Drinking Water-2

monitoring is advantageous. Controlling phosphate feed with an online instrument allows to minimize corrosion to meet regulatory and aesthetic requirements, and reduce chemical costs. Above chart shows an underdosing of phosphate while the flow is increased with the previous manual feed system. Higher risk of corrosion in the distribution network and a higher concentration of lead in the drinking water are the results. A continuous system with automatic feed allows maintenance of a desired set point independent of the flow rate fluctuation. An automatic measurement of the phosphate provides all...

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