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Beryllium oxide on dust particles produced by ITER like wall materials in JET

https://repo.qst.go.jp/records/66800
https://repo.qst.go.jp/records/66800
d2748fad-1ac2-4b85-af9a-9c76d1e729cb
Item type 会議発表用資料 / Presentation(1)
公開日 2018-05-02
タイトル
タイトル Beryllium oxide on dust particles produced by ITER like wall materials in JET
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_c94f
資源タイプ conference object
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 Ashikawa, N.

× Ashikawa, N.

WEKO 656757

Ashikawa, N.

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Asakura, Nobuyuki

× Asakura, Nobuyuki

WEKO 656758

Asakura, Nobuyuki

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Miyamoto, M.

× Miyamoto, M.

WEKO 656759

Miyamoto, M.

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Hara, M.

× Hara, M.

WEKO 656760

Hara, M.

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Y., Trikai

× Y., Trikai

WEKO 656761

Y., Trikai

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Oyaizu, Makoto

× Oyaizu, Makoto

WEKO 656762

Oyaizu, Makoto

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Nakano, Suguru

× Nakano, Suguru

WEKO 656763

Nakano, Suguru

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Kim, Jaehwan

× Kim, Jaehwan

WEKO 656764

Kim, Jaehwan

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Hatano, Y.

× Hatano, Y.

WEKO 656765

Hatano, Y.

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Suzuki, Takuya

× Suzuki, Takuya

WEKO 656766

Suzuki, Takuya

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Kurotaki, Hironori

× Kurotaki, Hironori

WEKO 656767

Kurotaki, Hironori

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Hamaguchi, Dai

× Hamaguchi, Dai

WEKO 656768

Hamaguchi, Dai

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Nakamichi, Masaru

× Nakamichi, Masaru

WEKO 656769

Nakamichi, Masaru

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Nakamura, Hirofumi

× Nakamura, Hirofumi

WEKO 656770

Nakamura, Hirofumi

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Widdowson, A.

× Widdowson, A.

WEKO 656771

Widdowson, A.

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Heinola, K.

× Heinola, K.

WEKO 656772

Heinola, K.

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Rubel, M.

× Rubel, M.

WEKO 656773

Rubel, M.

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朝倉 伸幸

× 朝倉 伸幸

WEKO 656774

en 朝倉 伸幸

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小柳津 誠

× 小柳津 誠

WEKO 656775

en 小柳津 誠

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中野 優

× 中野 優

WEKO 656776

en 中野 優

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金 宰煥

× 金 宰煥

WEKO 656777

en 金 宰煥

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鈴木 拓也

× 鈴木 拓也

WEKO 656778

en 鈴木 拓也

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黒滝 宏紀

× 黒滝 宏紀

WEKO 656779

en 黒滝 宏紀

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濱口 大

× 濱口 大

WEKO 656780

en 濱口 大

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中道 勝

× 中道 勝

WEKO 656781

en 中道 勝

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中村 博文

× 中村 博文

WEKO 656782

en 中村 博文

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抄録
内容記述タイプ Abstract
内容記述 Joint European Torus (JET) started operation with the ITER-like Wall (ILW) in 2011 using tungsten (W)-coated CFC/bulk-tungsten divertor tiles and beryllium first wall, respectively. The main aims are: development of an integrated operation scenario for ITER, power handling and material behavior with metal walls, assessment of fuel inventory and development of ITER-oriented engineering solutions, e.g. remote handling. The determination of dust characteristics, such as structures, material composition and hydrogen isotope retention are important issues. In particular, measurement of the total tritium amount and their relationship between amount and composition are required. Therefore, this study was focused on material composition and quantitative tritium amounts in JET-ILW dust particles. Retained deuterium concentration in C, Be and W deposits under co-deposition was reported. Retention in beryllium oxide is one order of magnitude larger than metal beryllium. Hence, chemical bindings of beryllium in ILW materials are important for estimations of hydrogen isotope retention and tritium inventories. Quantitative tritium measurements for ILW from the 2011 to 2012 campaign and carbon dust particles from 2007 to 2009 campaigns collected on the inner divertor targets were done using a liquid scintillation counting (LSC). Tritium specific activity of ILW dust particles of 120 MBq/g, is nearly the same as that of carbon wall dust particles of 10-60 MBq/g. Beryllium dominant dust particles show beryllium oxide on those surfaces measured by X-ray photoelectron spectroscopy (XPS) and one of these thicknesses is about two microns. This result was estimated that the reason of higher tritium inventory in ILW dust particles was related to thick beryllium oxide on those surfaces. It should be noted that producted conditions, such as after a vacuum vent or during plasma operations, of beryllium oxide is not clear due to the ex-situ measurements. However, the ratio of volume between beryllium oxide and metal beryllium into a dust particle is higher than that of beryllium tile specimens from JET, due to the estimated volume less than 5x10-4 mm3, in the case of 100 microns diameter. Therefor it is estimated that higher tritium specific activities on ILW dust particles, it is normalized amounts by weights, were observed. Evaluations of tritium specific activity measured by a combustion method and beryllium observations measured by an electron probe micro analyzer (EPMA) in ILW dust particles will be also presented.
会議概要(会議名, 開催地, 会期, 主催者等)
内容記述タイプ Other
内容記述 13th International Workshop on Beryllium Technology,
発表年月日
日付 2017-09-08
日付タイプ Issued
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