Emerging investigator series: Mitigation of Harmful Algal Blooms by Electrochemical Ozonation: From Bench-scale Studies to Field Applications

Abstract

Harmful algal blooms (HABs) are an emerging threat to ecosystems, drinking water safety, and the recreational industry. As an environmental challenge intertwined with climate change and excessive nutrient discharge, HAB events occur more frequently and irregularly. This dilemma calls for fast-response treatment strategies. This study developed an electrochemical ozonation (ECO) process, which uses Ni-Sb-SnO2 anodes to produce locally concentrated ozone (O3) and hydroxyl radicals (•OH) to achieve ~100% inactivation of cyanobacteria (indicated by chlorophyll-a degradation) and removal of microcystins within 120 seconds. More importantly, the proof-of-concept evolved into a full-scale boat-mounted completely mixed flow reactor for the treatment of HAB-impacted lake water. The single-pass treatment at a capacity of 544 m3/d achieved 62% chlorophyll-a removal at energy consumption of < 1 Wh/L. Byproducts (e.g., chlorate, bromate, trihalomethanes, and haloacetic acids) in the treated lake water were below the regulatory limits for drinking water. The whole effluent toxicity tests suggest that ECO treatment at 10 mA/cm2 posed certain chronic toxicity to the model crustacean invertebrate (Ceriodaphnia dubia). However, the treatment at 7 mA/cm2 (identified as the optimum condition) did not increase toxicity to model invertebrate and fish (Pimephales promelas) species. This study is a successful example of leveraging fundamental innovations in electrocatalysis to solve real-world problems.

Supplementary files

Article information

Article type
Paper
Submitted
11 Jun 2024
Accepted
26 Jul 2024
First published
30 Jul 2024

Environ. Sci.: Water Res. Technol., 2024, Accepted Manuscript

Emerging investigator series: Mitigation of Harmful Algal Blooms by Electrochemical Ozonation: From Bench-scale Studies to Field Applications

S. Yang, L. E. Quispe Cardenas, A. Fariha, N. Shetewi, V. Melgarejo Cazares, N. Yang, L. McCaffrey, N. Wright, M. Twiss, S. Wang, S. J. Grimberg and Y. Yang, Environ. Sci.: Water Res. Technol., 2024, Accepted Manuscript , DOI: 10.1039/D4EW00490F

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