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May 15, 2026Applied Sciences0 citationsOpen Access

Are Surfactant-Modified Zeolites Toxic to Non-Target Microorganisms?

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LCLeah A. ConstantinouNewcastle UniversityRKRobin N. KaurNewcastle UniversityGCGary S. CaldwellNewcastle University

Key Points

  • This research aims to determine the toxicity of surfactant-modified zeolites on non-target microorganisms, focusing on specific microalgae and cyanobacteria.
  • Cells were exposed to natural zeolite, hexadecyltrimethylammonium-bromide (HDTMA-Br), and HDTMA-Br SMZ for 24 hours.
  • Post-exposure analysis was conducted at 2 and 26 hours using flow cytometry and imaging pulse amplitude modulated fluorometry.
  • Tests included multiple species: Synechococcus elongatus, Chlorella vulgaris, Nannochloropsis oculata, and Duniallela salina.
  • SMZ and surfactant treatments showed a trend of reduced cell density across the tested organisms.
  • The SMZ treatment reduced effective PSII quantum yield (Y(II)) in C. vulgaris but increased regulated energy dissipation quantum yield.
  • No Y(II) signals were detected in any species exposed to the surfactant treatment.

Abstract

Zeolites are naturally abundant, low-cost aluminosilicate minerals commonly found in sedimentary rock. The surface chemistry of zeolite can be modified via cationic surfactant loading, termed a surfactant-modified zeolite (SMZ), that can be used as an antimicrobial technology in water treatment processes. This raises the possibility that SMZs could be utilised to treat blooms of harmful algae and cyanobacteria; however, there is a lack of understanding of the toxicity of SMZs to non-target microorganisms, including non-problematic algae and cyanobacteria. To address this knowledge gap, this research investigates whether hexadecyltrimethylammonium-bromide (HDTMA-Br) SMZs are toxic to the cyanobacterium Synechococcus elongatus and the microalgae Chlorella vulgaris, Nannochloropsis oculata and Duniallela salina. The cells were exposed to natural zeolite, HDTMA-Br surfactant and HDTMA-Br SMZ for 24 h and analysed 2- and 26 h post-exposure via flow cytometry and imaging pulse amplitude modulated fluorometry. There was an overall trend of reduced cell density in the SMZ and surfactant treatments. The SMZ treatment reduced the effective PSII quantum yield (Y(II)) but increased the quantum yield of regulated energy dissipation for C. vulgaris. When exposed to the surfactant treatment, no Y(II) signals were detected from any species. We conclude that SMZs are toxic to non-target microorganisms, with resilience dependent upon cell wall structure.

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Cite This Study

Constantinou et al. (2026) studied this question.

synapsesocial.com/papers/6a06b9e2e7dec685947ac882https://doi.org/10.3390/app16104741
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