Seasonal Lead Release into Drinking Water and the Effect of Aluminum.

ACS ES T Water

Centre for Water Resources Studies, Department of Civil & Resource Engineering, Dalhousie University, 1360 Barrington Street, Halifax, Nova Scotia B3H 4R2, Canada.

Published: May 2022

AI Article Synopsis

  • * A study conducted in Halifax, Canada showed a seasonal pattern in lead release linked to aluminum levels in orthophosphate-treated water.
  • * Experiments revealed that higher aluminum concentrations increase lead release from pipe materials by 41%, suggesting aluminum's role in reducing the effectiveness of orthophosphate in controlling lead solubility.

Article Abstract

Monitoring lead in drinking water is important for public health, but seasonality in lead concentrations can bias monitoring programs if it is not understood and accounted for. Here, we describe an apparent seasonal pattern in lead release into orthophosphate-treated drinking water, identified through point-of-use sampling at sites in Halifax, Canada, with various sources of lead. Using a generalized additive model, we extracted the seasonally varying components of time series representing a suite of water quality parameters and we identified aluminum as a correlate of lead. To investigate aluminum's role in lead release, we modeled the effect of variscite (AlPO·2HO) precipitation on lead solubility, and we evaluated the effects of aluminum, temperature, and orthophosphate concentration on lead release from new lead coupons. At environmentally relevant aluminum and orthophosphate concentrations, variscite precipitation increased predicted lead solubility by decreasing available orthophosphate. Increasing the aluminum concentration from 20 to 500 μg L increased lead release from coupons by 41% and modified the effect of orthophosphate, rendering it less effective. We attributed this to a decrease in the concentration of soluble (<0.45 μm) phosphorus with increasing aluminum and an accompanying increase in particulate lead and phosphorus (>0.45 μm).

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9112280PMC
http://dx.doi.org/10.1021/acsestwater.1c00320DOI Listing

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