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March 7, 2026ACS ES&T Water2 citationsOpen Access

Algaecide-Releasing Buoys for Sustained Harmful Algal Bloom Control

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UKUmberto A. KoberHBHaniehsadat BarikbinYSYoung‐Woo Seo

Key Points

  • The research aims to develop buoy-like devices that can sustainably release algaecide for controlling harmful algal blooms in aquatic systems.
  • Developed reusable buoy devices for algaecide release.
  • Utilized H2O2-based, water-soluble algaecide with a hydrogel diffusion barrier.
  • Varying gel thickness, algaecide concentration, and surface area-to-volume ratio for controlled release.
  • Conducted microcosm testing in cyanobacteria-laden Lake Erie water.
  • Buoys maintained algaecide release for over one month.
  • Release rates were predictably controlled following first-order kinetics.
  • Sustained algicidal effects observed in early-stage harmful algal blooms during a 14-day test.

Abstract

Cyanobacterial harmful algal bloom (CHAB) management is challenging, costly, and often requires repeated algaecide application. To this end, here we develop and characterize reusable buoy-like devices that can sustain algaecide release over periods exceeding one month. Using a commercial H2O2-based, water-soluble algaecide and a polyacrylate-based hydrogel as a diffusion barrier, we demonstrate that release rates from these buoys can be predictably controlled by varying gel thickness, initial algaecide concentration, and the gel surface area-to-buoy volume ratio, and that release follows first-order kinetics accurately predicted from known gel, buoy, and H2O2 properties. Microcosm testing on cyanobacteria-laden Lake Erie water indicates that this technology (at least over the 14-day time scale of this initial algicidal activity experiment) produces a sustained algicidal effect during early-stage CHABs. Moreover, the buoys can undergo buoyancy-driven changes in their orientation, enabling sensing of when they must be refilled. Overall, these findings suggest that these reusable, algaecide-releasing devices could enable sustained and targeted algicidal effects in lakes, ponds, and reservoirs, which could facilitate early-stage CHAB treatment. Other possible applications of this sustained release technology (e.g., pest control in rice fields or sustained disinfection) are also briefly discussed.

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Cite This Study

Kober et al. (2026) studied this question.

synapsesocial.com/papers/69abc1235af8044f7a4e9ba2https://doi.org/10.1021/acsestwater.5c01257
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