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Development of a silicone-membrane passive sampler for monitoring cylindrospermopsin and microcystin LR-YR-RR in natural waters

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Abstract Silicone membrane tubes were functionalised by filling them with synthesised γ-Fe 2 O 3 nanoparticles and used as a passive sampling device for monitoring microcystins and cylindrospermopsin in aquatic… Click to show full abstract

Abstract Silicone membrane tubes were functionalised by filling them with synthesised γ-Fe 2 O 3 nanoparticles and used as a passive sampling device for monitoring microcystins and cylindrospermopsin in aquatic environments. This novel device was calibrated for the measurement of microcystin and cylindrospermopsin concentrations in water. The effect of temperature and hydrodynamics on the sampler performance was studied in a flow-through system under controlled conditions. The chemical uptake of microcystins (MCs) and cylindrospermopsin (CYN) into the passive sampler remained linear and integrative throughout the exposure period. The rate of accumulation of most of the MC compounds tested was dependent on temperature and flow velocity. The use of 13 C labelled polychlorinated biphenyls as performance reference compounds (PRCs) in silicone membrane/γ-Fe 2 O 3 nanoparticle passive sampler, Chemcatcher and polar organic chemical integrative sampler (POCIS) was evaluated. The majority of PRCs improved the semi quantitative nature of water concentration estimated by the three samplers. The corrected sampling rate values of model biotoxin compounds were used to estimate the time-weighted average concentrations in natural cyanobacterial water blooms of the Hartbeespoort dam. The corrected sampling rates R Scorr values varied from 0.1140 to 0.5628 Ld −1 between samplers with silicone membrane having the least R Scorr values compared to the Chemcatcher and POCIS. The three passive sampling devises provided a more relevant picture of the biotoxin concentration in the Hartbeespoort dam. The results suggested that the three sampling devices are suitable for use in monitoring microcystins and cylindrospermopsin concentrations in aquatic environments.

Keywords: monitoring; passive sampler; silicone membrane; membrane

Journal Title: Physics and Chemistry of The Earth
Year Published: 2017

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