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2014 年度 実施状況報告書

微生物起源Mn酸化物による放射性Csの新規固定機構の解明

研究課題

研究課題/領域番号 26820410
研究機関独立行政法人日本原子力研究開発機構

研究代表者

YU QianQian  独立行政法人日本原子力研究開発機構, 原子力科学研究部門 先端基礎研究センター, 研究員 (90712018)

研究期間 (年度) 2014-04-01 – 2016-03-31
キーワード*Cs decontamination / biomaterial / Mn oxide / XAFS
研究実績の概要

The accident at the Fukushima Daiichi nuclear power plant resulted in an abruptly release of huge amounts of Cs into the environment. It is important to find a suitable material for the decontamination of Cs. Biogenic birnessite (BB)is produced from biological mineralization. It possesses a layer structure, which is very similar to mica-like minerals. Therefore, BB was used as a candidate material for the fixation of Cs from the contaminated seawater.
Using microorganisms, a series of Cs adsorbents has been successfully prepared. The structural differences in atomic scale of these biomaterials were well-characterized by X-ray absorption spectroscopy(XAFS). The metal-doped material shows a higher Mn average oxidation state compared to BB. Additionally, doping of Zn or Ni during BB crystallization enhances the formation of vacancies.
The obtained materials showed good performance for Cs uptake. Additionally, the adsorption capacity of Cs for Ni doped material is 2-3 times higher than the original one. The obtained results suggested that modified biomineral has potential for the decontamination of Cs from seawater.

現在までの達成度 (区分)
現在までの達成度 (区分)

2: おおむね順調に進展している

理由

The study was progressed smoothly as expected.
Preparation of biogenic Mn oxide was performed successfully. The atomic structure of the biomineral was adjusted by adding Zn or Ni during crystallization of biogenic Mn oxide. Three biogenic materials: BB, Zn doped BB, and Ni doped BB were prepared, and the structure of all materials were characterized by Mn K-edge XAFS spectroscopy. The results indicated that doping of Zn or Ni during BB crystallization enhances the formation of layer vacancies and increase the average oxidation state of Mn.
Uptake of Cs by three materials was also performed with a wide range of concentration. The Ni doped material showed 2-3 times higher uptake capacity than the original one.

今後の研究の推進方策

1. Characterizing the fixation mechanism of Cs by biological materials.
1) Determine the coordination mechanism of Cs by XAFS spectroscopy.
2) Calculate the density as well as the affinity of sorption sites on Cs adsorbent by simulating the uptake data with sorption model.
2. Comparing the Cs decontamination efficiency of optimized biological materials with commercialized Mn oxides using simulated and real seawater.
3. Summarize all experimental and computational results obtained above to clarify the new fixation mechanism for biological material.

次年度使用額が生じた理由

Several field work is scheduled in the next year, including XAFS experiment in PF, and sampling of Seawater. The remaining amount is planned to use for these purpose.

次年度使用額の使用計画

XAFS experiment in PF (three times): 126,378 yen
Sampling of Seawater: 140,000 yen

  • 研究成果

    (5件)

すべて 2015 2014

すべて 雑誌論文 (1件) (うち査読あり 1件) 学会発表 (3件) 図書 (1件)

  • [雑誌論文] In situ X-ray diffraction investigation of the evolution of a nanocrystalline lithium-ion sieve from biogenic manganese oxide.2014

    • 著者名/発表者名
      Yu, Q.; Sasaki, K.,
    • 雑誌名

      Hydrometallurgy

      巻: 150 ページ: 253-258

    • DOI

      http://dx.doi.org/10.1016/j.hydromet.2014.07.002

    • 査読あり
  • [学会発表] Effect of Live Acremonium strictum KR21-2 Fungus on the Mobility of REEs During the Bio-Oxidation of Mn(II)2015

    • 著者名/発表者名
      Qianqian Yu
    • 学会等名
      249th ACS National Meeting
    • 発表場所
      Denver, CO, U.S.A.
    • 年月日
      2015-03-21 – 2015-03-26
  • [学会発表] Fungus activity promoted transformation of REEs during bio-oxidation of Mn(II)2015

    • 著者名/発表者名
      Qianqian Yu
    • 学会等名
      15th ASRC workshop
    • 発表場所
      Nantes, France
    • 年月日
      2015-01-11 – 2015-01-12
  • [学会発表] Adaptive interactions between Live Acremonium strictum KR21-2 Fungus and REEs during Mn(II) bio-oxidation2014

    • 著者名/発表者名
      Qianqian Yu
    • 学会等名
      日本地球化学学会
    • 発表場所
      富山大学
    • 年月日
      2014-09-16 – 2014-09-18
  • [図書] Synthesis of a biotemplated lithium ion-sieve derived from fungally formed birnessite, Chapter in "Advances in the Environmental Biogeochemistry of Manganese Oxides"2015

    • 著者名/発表者名
      Sasaki, K.; Yu, Q.,
    • 総ページ数
      16
    • 出版者
      ACS Books

URL: 

公開日: 2016-06-01  

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