Monitoring natural organic matter in drinking water treatment with photoelectrochemical oxygen demand

Author:

DeMont Isobel1ORCID,Anderson Lindsay E.1ORCID,Bennett Jessica L.1,Sfynia Chrissa2,Bjorndahl Paul3,Jarvis Peter2ORCID,Stoddart Amina K.1ORCID,Gagnon Graham A.1ORCID

Affiliation:

1. Centre for Water Resources Studies, Department of Civil & Resource Engineering Dalhousie University Halifax Nova Scotia Canada

2. Cranfield Water Science Institute Cranfield University Cranfield UK

3. Department of Mathematics & Statistics Dalhousie University Halifax Nova Scotia Canada

Abstract

AbstractConventional metrics such as total organic carbon (TOC) and ultraviolet absorbance at 254 nm (UV254) may oversee aspects of natural organic matter (NOM) reactivity in drinking water treatment. The novel photoelectrochemical oxygen demand (peCOD) analyzer indirectly measures the oxygen consumed during NOM oxidation with photo‐ and electrochemical methods, quantifying NOM reactivity. peCOD was valuable for tracking NOM degradation in nine drinking water treatment facilities, particularly in processes where conventional metrics failed to capture changes in NOM from partial oxidation (e.g., biofiltration and oxidation). However, peCOD exhibited moderate correlations with TOC (R2 = 0.67) and UV254 (R2 = 0.48), indicating the need for its concurrent use with conventional methods. While peCOD was not a significant predictor of disinfection by‐product formation potential (R2 < 0.20), its inclusion alongside standard NOM metrics improved the performance of multivariable regression models. Thus, peCOD provided a rapid, standardized, operator‐friendly, environmentally conscious, concentration‐based approach for evaluating NOM characteristics in drinking water samples.

Publisher

Wiley

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