• 제목/요약/키워드: Isopar-M

검색결과 3건 처리시간 0.023초

Effect of irradiation on the oxidation kinetics of TODGA-based extraction mixtures at atmospheric pressure

  • Skvortsov, I.V.;Belova, E.V.;Yudintsev, S.V.
    • Nuclear Engineering and Technology
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    • 제52권9호
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    • pp.2034-2040
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    • 2020
  • The gas evolution from mixtures consisting of 0.2 M solution of N,N,N',N'-tetra-n-octyldiglycolamide (TODGA) in n-alcohol (n-decanol or n-nonanol) with Isopar-M diluent was investigated during thermal oxidation. The effect of ionizing radiation on their thermal stability has been studied. It has been determined that the volume of gaseous thermolysis products increases by 260% in the case of n-nonanol and 80% in the case of n-decanol compared to non-irradiated solutions. It has been shown that the gas evolution rate and gas volume increase when the irradiated mixture saturated with nitric acid is heated. However, there are no prerequisites for the development of autocatalytic oxidation.

전도성 물질 서스펜션을 함유한 마이크로캡슐 (Preparation and Characterization of Functional Microcapsules Containing Suspensions of Conducting Materials)

  • 임대우;권원호
    • 공업화학
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    • 제26권1호
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    • pp.40-46
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    • 2015
  • 카본나노튜브(CNT)와 폴리아닐린(PANI)과 같은 도전성물질의 서스펜션을 함유한 마이크로캡슐이 멜라민과 포름알데히드의 in situ 중합법에 의해 제조되었다. 평균직경 $10-20{\mu}m$의 안정된 마이크로캡슐이 관찰되었으며, 이 마이크로 캡슐의 표면 모폴로지와 화학구조, 열적특성을 광학현미경, 주사전자현미경(SEM), 적외선 분광분석(FT-IR), 열중량분석(TGA) 등으로 측정하였다. 테트라클로로에틸렌과 아이소파 G (isopar-G) 및 CNT나 PANI로 구성된 도전성물질 서스펜션을 함유한 마이크로캡슐의 전기전도도를 캡슐벽을 깨뜨린 후 측정하였다. 마이크로캡슐의 심물질인 CNT나 PANI의 양이 증가할수록 측정된 전류는 증가하였다. 분쇄된 캡슐의 심물질의 전도도를 측정한 결과는 CNT나 PANI가 캡슐이 깨졌을 때, 빠져나온 심물질인 전도성 물질이 단락된 서킷을 연결해 줄 수 있는, 자기치유형 전자재료 시스템에 폴리 멜라민 포름알데히드 베이스의 코어 쉘(core shell) 마이크로캡슐이 적용 가능한 것을 보여준다.

Exothermic processes in nitric acid solutions imitating highly active raffinate

  • E.V. Belova;V.V. Kalistratova;A.S. Obedkov
    • Nuclear Engineering and Technology
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    • 제55권10호
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    • pp.3808-3814
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    • 2023
  • The thermal stability of nitric acid solutions after contact with non-irradiated and irradiated tributyl phosphate (TBP) and its solution in Isopar-M has been studied. It has been established that exothermic processes occur during heating due to the interaction of soluble radiolysis products and the decomposition of the extractant with nitric acid. Such processes can occur at temperatures below 100 ℃, but unlike a thermal explosion that occurs in seconds, they are longer in time and are accompanied by weak heat evolution. Their intensity depends on the composition of the extractant, the concentration of HNO3, and the volume ratio of the organic and aqueous phases. The presence of extractant degradation products in raffinates does not pose a risk of a rapid evolution of gaseous products during evaporation, however, the presence of reducing agents can significantly increase the intensity of the exothermic decomposition of raffinates.