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Sasamura, Seiya*; Onuki, Toshihiko*; Kozai, Naofumi; Amachi, Seigo*
Frontiers in Microbiology (Internet), 14, p.1162788_1 - 1162788_7, 2023/04
Times Cited Count:0 Percentile:73.83(Microbiology) sp. DN11 previously isolated from gasoline-contaminated groundwater contained a gene cluster involved in bacterial iodate (IO
) respiration. This study determined if strain DN11 performed iodate respiration and assessed its potential use to remove and sequester radioactive iodine (
I) from subsurface contaminated aquifers. Strain DN11 grew anaerobically with iodate as the sole electron acceptor. After the growth of strain DN11 on iodate, silver-impregnated zeolite was added to the spent medium to remove iodide from the aqueous phase. In the presence of 200
M iodate as the electron acceptor, more than 98% of iodine was successfully removed from the aqueous phase. These results suggest that strain DN11 is potentially helpful for bioaugmentation of
I-contaminated subsurface aquifers.
Seki, Miharu*; Oikawa, Junichi*; Taguchi, Taro*; Onuki, Toshihiko; Muramatsu, Yasuyuki*; Sakamoto, Kazunori*; Amachi, Seigo*
Environmental Science & Technology, 47(1), p.390 - 397, 2013/01
Times Cited Count:43 Percentile:75.41(Engineering, Environmental)The laccase released by microorganisms oxidizes iodide to molecular iodine or hypoiodous acid, both of which are easily incorporated into natural soil organic matter.