• 제목/요약/키워드: DHOA

검색결과 3건 처리시간 0.019초

GC/MS를 이용한 DHOA의 방사선 분해생성물 분석 (Determination of Radiolysis Produce of DHOA by GC/MS)

  • 양한범;이일희;임재관;정동용;김광욱;김종승
    • 방사성폐기물학회지
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    • 제7권1호
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    • pp.17-23
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    • 2009
  • 방사성 액체폐기물에 함유되어 있는 우라늄의 추출제 또는 아미드 (amide) 화합물 추출제를 사용한 용매추출계에서 제 3상 생성 방지제로 사용되는 dihexyloctanamide(DHOA)을 합성하고, 이를 $^{60}Co$ 감마 방사선으로 조사시킬 때 생성된 방사선 분해생성물 (radiolysis product)을 정량 분석하였다. 방사선 조사된 DHOA에 대한 FT-IR 스펙트럼과 방사선 분해생성물에 대한 GC/MS 스펙트럼 그리고 GC/MS-SIM 방법으로 측정한 결과를 근거로 octanoic acid와 dihexylamine 2종의 방사선 분해생성물의 존재를 확인하였으며, 이들 2종 화합물의 표준시약과 tridecane을 내부표준물질(ISTD)로 사용하여 GC/MS-SIM 방법으로 정량 분석하였다. 방사선 분해생성물에 대한 총 이온 크로마토그램에서 나타난 머무름 거동, 분리도 및 해 상도에서 정량 분석할 수 있는 결과를 얻었으며, 총 이온 크로마토그램에서 분리피크가 나타나는 시간은 octanoic acid는 8.65분, tridecane은 9.79분 그리고 dihexylamine은 10.27분이었다. 그리고 DHOA의 방사선 흡수선량이 증가할수록 octanoic acid의 농도는 감소하였으며, dihexylamine의 농도는 증가하였다.

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CO-SEPARATION OF Am AND RARE EARTH ELEMENTS FROM A HIGHLY ACIDIC RADWASTE SOLUTION BY A SOLVENT EXTRACTION WITH (DIMETHYLDIBUTYL TETRADECYLMALONAMIDE-DIHEXYLOCTANAMIDE)/N-DODECANE

  • Lee, Eil-Hee;Lim, Jae-Gwan;Chung, Dong-Yong;Yoo, Jae-Hyung;Kim, kwang-Wook
    • Nuclear Engineering and Technology
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    • 제41권3호
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    • pp.319-326
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    • 2009
  • This study was carried out to investigate the high-acidity co-separation of Am and RE from a simulated radwaste solution by a solvent extraction using a mixture of Dimethyldibutyltetradecylmalonamide (DMDBTDMA, as an extractant) and dihexyl octanamide (DHOA, as a phase modifier) diluted with n-dodecane (NDD). All the experiments were conducted as a batch type. First, the environmentally friendly DMDBTDMA and DHOA composed of only CHON atoms were self-synthesized. Then, the conditions for the prevention of a third phase, generated in the organic phase were examined. In addition, the effects of the concentration of nitric acid, DHOA, oxalic acid and $H_2O_2$ on the co-extraction of Am and RE were elucidated. Consequently, the optimum condition of (0.5M DMDBTDMA+0.5M DHOA)/NDD-0.3M $C_2H_2O_4-4.5M$ $HNO_3$ and O/A=2 was obtained through experimental work. Under this condition, the extraction yields were found to be about 80% for Am, more than 70% for RE such as La, Eu, Nd, Ce, etc., 3% for Cs and Sr, 69% for Fe and less than 11% for Mo and Ru. For the co-extraction of Am and RE, Fe should be removed in advance or prevented from a co-extraction with Am by controlling the different extraction rates of Am and Fe. About 95% of the Am and RE in the organic phase were stripped using a 0.5M $HNO_3$.