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Journal Articles

Determination of impurity elements in graphite materials by closed vessel acid leaching/ICP-AES

Watanabe, Kazuo; ;

Bunseki Kagaku, 44(1), p.19 - 23, 1995/00

no abstracts in English

Journal Articles

Wet oxidation decomposition of graphite to determine impurity elements

; ; ;

Bunseki Kagaku, 35(11), p.911 - 915, 1986/11

no abstracts in English

Journal Articles

Impurity elements and their distribution in grahite

; ; ;

Bunseki Kagaku, 35(11), p.920 - 925, 1986/11

no abstracts in English

Oral presentation

Development of the SUS310EHP stainless steel having superior corrosion resistance, 2; Inter-granular corrosion tests at the SUS310EHP stainless steel

Kato, Chiaki; Soma, Yasutaka; Ueno, Fumiyoshi; Okada, Kiyotaka*; Ebina, Tetsunari*; Kano, Yoichi*; Nakayama, Jumpei

no journal, , 

no abstracts in English

Oral presentation

The Measurement of thermal conductivity of MOX including simulated FPs and impurities

Horii, Yuta; Hirooka, Shun; Kato, Masato; Uno, Hiroki*; Ogasawara, Masahiro*; Tamura, Tetsuya*; Yamada, Tadahisa*; Okumura, Kazuyuki

no journal, , 

As part of studies on physical properties of low-decontaminated fuel pellets, simulated FPs (Sm$$_{2}$$O$$_{3}$$ and Nd$$_{2}$$O$$_{3}$$) and impurities included at such as fuel fabrication process (Al$$_{2}$$O$$_{3}$$ and SiO$$_{2}$$) were added to MOX, and their effects on thermal conductivity were evaluated. Addition of Sm$$_{2}$$O$$_{3}$$ and Nd$$_{2}$$O$$_{3}$$ in MOX, that can be solutionized, decreased thermal conductivity whereas addition of Al$$_{2}$$O$$_{3}$$ and SiO$$_{2}$$, that don't make a solid solution with MOX, increased thermal conductivity.

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