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Scale Formation Under Blended Phosphate Treatment for a Utility With Lead Pipes. | LitMetric

Scale Formation Under Blended Phosphate Treatment for a Utility With Lead Pipes.

J Am Water Works Assoc

US Environmental Protection Agency (USEPA), Office of Research and Development, National Risk Management Research Laboratory, Cincinnati, Ohio.

Published: November 2017

AI Article Synopsis

  • - US corrosion control typically assumes that orthophosphate in phosphate inhibitors forms stable lead-orthophosphate solids, reducing lead release into drinking water, but this study challenges that assumption.
  • - When examining a lead service line and galvanized steel pipe, researchers found a porous amorphous layer instead of the expected crystalline lead-orthophosphate compounds, indicating a different mechanism for inhibiting lead release.
  • - The analysis showed that the lead pipe had a fragile, aluminum-rich deposit at the scale-water interface, while the galvanized pipe contained more crystalline iron and zinc compounds along with aluminum, phosphorus, calcium, and lead.

Article Abstract

US corrosion control practice often assumes that the orthophosphate component of blended phosphate corrosion inhibitors causes the formation of low-solubility lead-orthophosphate solids that control lead release into drinking water. This study identified the solids that formed on the interior surface of a lead service line and a galvanized steel pipe excavated from a system using a proprietary blended phosphate chemical. The scale was analyzed by X-ray diffraction, X-ray fluorescence, and scanning electron microscopy/energy dispersive spectroscopy. Instead of crystalline lead-orthophosphate solids, a porous amorphous layer rich in aluminum, calcium, phosphorus, and lead was observed at the lead pipe scale-water interface. Thus, the mechanism inhibiting lead release into the water was not a thermodynamically predictable passivating lead-orthophosphate scale, but rather an amorphous barrier deposit that was possibly vulnerable to disturbances. Galvanized pipe scales showed relatively crystalline iron and zinc compounds, with additional surface deposition of aluminum, phosphorus, calcium, and lead.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7424405PMC
http://dx.doi.org/10.5942/jawwa.2017.109.0121DOI Listing

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