Factors Affecting Soluble Selenium Removal by a Selenate-Reducing Bacterium Bacillus sp.SF-1
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概要
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High concentration of soluble selenium, selenate and selenite, have acute and chronic toxicity toward living things. With the aim of developing a biological process for selenium removal, the effects of a variety of parameters on the reduction of soluble selenium by a Bacillus sp.strain SF-1, which is capable of reductively transforming selenate into selenite and, subsequently, into nontoxic insoluble elemental selenium, were studied. The bacterial strain could effectively reduce 20 mM of selenate to selenite and 2 mM of selenite to elemental selenium in the presence of an appropriate carbon source and in the absence of oxygen. The reduction rate of selenate to selenite was much higher than that of selenite to elemental selenium, resulting in the transient accumulation of selenite during selenate reduction. The selenate reduction rate increased with increases in the selenate concentration up to 20 mM, while the rate of selenite reduction decreased sharply at selenite concentrations of more than 2 mM. The elemental selenium transformed from selenate via selenite was found both inside and outside the cells. Bacillus sp.SF-1 was able to utilize a variety of organic acids or sugars as a carbon source in selenate reduction. Although the copresence of sulfate did not inhibit selenate reduction, it was completely inhibited by some other oxyanions, including nitrate. A model sequencing batch system using the bacterial strain was developed and exhibited good performance in the treatment of wastewater containing high concentrations of selenate.
- 社団法人日本生物工学会の論文
- 2000-06-25
著者
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TAKAHASHI Kazuaki
Department of Laboratory Animal Science, Nippon Veterinary & Animal Science University
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Ike Michihiko
Department Of Environmental Engineering Graduate School Of Engineering Osaka University
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Mori K
Department Of Civil And Environmental Engineering University Of Yamanashi
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FUJITA Masanori
Department of Environmental Engineering, Osaka University
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Fujita M
Kochi National College Of Technology
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Mori K
Faculty Of Engineering Toyama University
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Kashiwa Masami
Japan Agency for Marine-Earth Science and Technology
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Fujita Masanori
Kochi National College of Technology
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Fujita Masanori
Environ. Eng. Osaka Univ.
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Fujita Masanori
Graduate School Of Engineering Osaka University
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Ike Michihiko
Division Of Sustainable Energy And Environmental Engineering Osaka University
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Ike Michihiko
Environ. Eng. Osaka Univ.
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Fujita Masakatsu
Kochi National College Of Technology
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Fujita Masanori
Kochi National Coll. Of Technol. 200-1 Monobe Otsu Nankoku Kochi 783-8508 Jpn
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KASHIWA MASAMI
Department of Environmental Engineering, Osaka University
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NISHIMOTO SHINTARO
Department of Environmental Engineering, Osaka University
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Fujita M
Department Of Environmental Engineering Osaka University
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Takahashi K
Department Of Applied Chemistry School Of Science And Engineering Waseda University
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Ike M
Osaka University
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Ike Michihiko
Department Of Environmental Engineering Faculty Of Engineering Osaka University
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Ike M
Division Of Sustainable Energy And Environmental Engineering Graduate School Of Engineering Osaka Un
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Fujita M
Graduate School Of Biosphere Science Hiroshima University
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Fujita Masanori
Department Of Environmental Engineering Faculty Of Engineering Osaka University
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Murashige Katsushi
Division Of Sustainable Energy And Environmental Engineering Osaka University
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Fujita Masanori
Department Of Cardiology Saiseikai Izuo Hospital
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Nishimoto Shintaro
Department Of Environmental Engineering Osaka University
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Takahashi Kazuaki
Department Of Developmental Biology And Neurosciences Graduate School Of Life Sciences Tohoku Univer
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Fujita Masanori
Department Of Animal Science Faculty Of Agriculture Tohoku University:(present Address) Department O
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Takahashi Kazuaki
Department Of Animal Science Faculty Of Agriculture Tohoku University
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