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Updated: Aug 28, 2026

An Anaerobic Biosensor Assay for the Detection of Mercury and Cadmium
Published on: December 17, 2018
Basic Study on Mercury Methylation Under Oxic Conditions: Incubation Experiments Using Seawater from Minamata Bay,
Akito Matsuyama1, Michiaki Kindaichi1, Yoko Taniguchi1
1Department of International Affairs and Research, National Institute for Minamata Disease (NIMD), 4058-18 Hama, Minamata 867-0008, Kumamoto, Japan.
Abstract:
Background: This study investigated the generation of dissolved methylmercury (diss-MeHg) under oxic conditions in the surface waters of Minamata Bay. Although mercury methylation has been extensively investigated under reducing conditions, its occurrence under oxic conditions remains poorly understood. Methods: Incubation conditions capable of artificially inducing mercury methylation were established for the first time. Incubation parameters were optimized using surface seawater samples. Results: Diss-MeHg production was positively correlated with dissolved organic carbon (DOC) concentrations (1-5 mg/L). The highest methylation was observed at 22 °C and 32.5‱ salinity, though no statistically significant differences were observed within the ranges of 18-22 °C and 31.5-34.5‱. Under the optimized conditions (22 °C, 32.5‱, 5 mg/L DOC), seawater samples were sequentially filtered through membranes of various pore sizes. Diss-MeHg was detected in fractions filtered through 0.8- and 3-µm membrane filters but was absent from the 0.45- and 0.2-µm fractions. Additionally, autoclaving the 0.8 µm filtrate prevented diss-MeHg production. Conclusions: These findings suggest the presence of a distinct biological mercury methylation process operating under oxic conditions in surface seawater.
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