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  1. その他誌上発表

Environmental Transfer of carbon-14 in Japanese paddy fields

https://repo.qst.go.jp/records/58486
https://repo.qst.go.jp/records/58486
9e1e023f-8abc-4740-a187-742091d1a263
Item type 一般雑誌記事 / Article(1)
公開日 2014-12-03
タイトル
タイトル Environmental Transfer of carbon-14 in Japanese paddy fields
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ article
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 石井, 伸昌

× 石井, 伸昌

WEKO 585067

石井, 伸昌

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荻山, 慎一

× 荻山, 慎一

WEKO 585068

荻山, 慎一

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櫻井, 伸治

× 櫻井, 伸治

WEKO 585069

櫻井, 伸治

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田上, 恵子

× 田上, 恵子

WEKO 585070

田上, 恵子

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内田, 滋夫

× 内田, 滋夫

WEKO 585071

内田, 滋夫

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石井 伸昌

× 石井 伸昌

WEKO 585072

en 石井 伸昌

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荻山 慎一

× 荻山 慎一

WEKO 585073

en 荻山 慎一

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櫻井 伸治

× 櫻井 伸治

WEKO 585074

en 櫻井 伸治

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田上 恵子

× 田上 恵子

WEKO 585075

en 田上 恵子

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内田 滋夫

× 内田 滋夫

WEKO 585076

en 内田 滋夫

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内容記述タイプ Abstract
内容記述 It has been recognized that 14C is one of the dominant radionuclides affecting dose from TRU wastes. This radionuclide has a decay half-life of 5,730 years, and 14C-organic materials have very low sorption properties to clay and rock in the environment. This raises some concerns about the releases of 14C to the biosphere from radioactive waste repositories. For the safety assessment of TRU waste disposal, we studied the behavior of 14C in rice paddy field soils. We also determined key parameters such as soil-soil solution distribution coefficients (Kds) and soil-to-rice plant transfer factors (TFs) of 14C in the field soils. The TFs were obtained in laboratory and field experiments. In our laboratory experiments, we used [1,2-14C] sodium acetate as a source of 14C because it has been suggested that low-molecular-weight organic-14C compounds are released from metallic TRU wastes. The results showed that 14C-bearing sodium acetate in irrigated paddy soils was rapidly decomposed by indigenous bacteria. Although some of the 14C was assimilated into the bacterial cells, most of the 14C was released into the air as gaseous compounds. The main chemical species of 14C gases was 14CO2, and a part of the released 14CO2 gas was used by rice plants during photosynthesis. Only a negligible amount of 14C was absorbed through the roots. Therefore, the contamination of rice plants is mainly caused by gasification of 14C, and microorganisms are responsible for driving this process. The activity of microorganisms is a key issue in the behavior of 14C in paddy fields.
書誌情報 Environmental Transfer of carbon-14 in Japanese paddy fields

発行日 2015-01
出版者
出版者 Springer
ISBN
識別子タイプ ISBN
関連識別子 978-4-431-55110-2
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