• 제목/요약/키워드: Spent resin treatment

검색결과 23건 처리시간 0.017초

수중 방사능 측정시 이온교환농축법과 증발건조법의 비교 (Comparison of the Ion-exchange Method and Evaporation Method for the Detection of Radioactivity in Water)

  • 지평국;박종묵;노성기
    • Journal of Radiation Protection and Research
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    • 제13권2호
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    • pp.52-56
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    • 1988
  • 수중의 방사능을 측정하기 위한 전처리과정으로서 이온교환농축법과 증발건조법을 서로 비교하였다. 시료를 증발건조법으로 처리하였을때 방사성물질의 손실율은 이온교환농축법에 비해 20% 정도 많았다. 또, 1리터의 시료를 처리하는 데 소요된 증발시간은 $70^{\circ}C$에서 증발시킨 경우 약20시간이었으나 이온교환농축법으로 같은 양의 시료를 처리하는데 소요된 시간은 약6시간이었다. 따라서 이온교환농축법이 증발건조법에 비해 효과적이며 특히 수중의 저준위 방사성물질 측정에 적합한 것으로 나타났다.

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초임계수 산화공정에 의한 원전 폐수지 처리기술 (Treatment of Spent ion-Exchange Resins from NPP by Supercritical Water Oxidation(SCWO) Process)

  • 김경숙;손순환;송규민;한주희;한기도;도승회
    • 방사성폐기물학회지
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    • 제7권3호
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    • pp.175-182
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    • 2009
  • 유동층 비중차 분리기를 이용하여 혼합 폐 이온교환수지에서 폐 양이온수지와 폐 음이온수지로 분리하였으며, 원소분석과 열분석으로 분리가 잘 되었음을 확인하였다. 비중차 분리를 통해 얻은 수백 미크론의 구형 알갱이 형태의 폐 양이온수지와 폐 음이온수지 각각을 볼밀로써 24시간 습식 분쇄하여 적정 입도 이하의 입자가 균일하게 분산된 고농도 슬러리를 얻은 다음, 희석하여 $COD_{cr}$, 농도 25,000ppm의 시료를 준비하였다. 실험실 규모의 소형 초임계수산화(Super Critical Water Oxidation, SCWO) 장치(반응기 용량 : 220 mL)로써 화력발전소에서 발생한 폐 양이온수지와 폐 음이온수지에 대해 최적의 분해조건을 확립한 다음, 파일럿플랜트(반응기 용량 : 24 L)로 scale-up 실험을 수행하였다. 우선 화력발전소의 폐수지로서 파일럿테스트를 실시한 다음, 원자력발전소의 폐수지로써 파일럿테스트를 수행하여 최적의 분해조건을 설정하였다. 실험실 규모의 소형 SCWO 장치와 파일럿플랜트의 설계 및 운전에서 얻은 경험을 바탕으로 원자력발전소 내에 설치 가능한 규모로 상용설비(처리용량 : 150kg/h)를 설계 중에 있다.

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GT rotary file을 이용한 만곡 근관형성시 작업 효율 및 file 변형 발생에 관한 연구 (A STUDY OF WORKING EFFICIENCY AND FILE DEFORMATION OF GT ROTARY FILE IN CURVED CANALS)

  • 신주희;백승호;배광식;임성삼;윤수한;김병현
    • Restorative Dentistry and Endodontics
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    • 제26권5호
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    • pp.418-435
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    • 2001
  • Root canal preparation process is of utmost importance in successful treatment of root canal. Also, one of the most important purpose of the root canal preparation is to enlarge the root canal three dimensionally without changing the curvature of the root canal However as the curvature of the root canal increases, there are many difficulties involved in formation of optimum root canal. Therefore in order to solve the above mentioned problems, new developments in methods of root canal preparation and equipments for such purposes were made. Recently, vigorous studies about newly introduced engine-driven nickel-ti-tanium rotary file are conducted. As shown in research results to dates, it is well established that the use of nickel-titanium file is better suited for curved root canal than stainless steel file in maintaining the curvature or root canal and reducing the deformation of root canal. However it is also acknowledged that there are a few discrepancies in research results according to protocol, due to failure to remove variables in experiments. In addition, although it is recommended by the manufacturer that the GT rotary file should maintain a low rotational speed of 150~350rpm and 'light pressure' as light as not to break the lead of a pencil, academic studies about the vertical force which is not yet standardized are not sufficiently explored. Therefore, this research devised and utilized a special research equipment to standardize the appropriate range of vertical force for GT rotary file through experiments by breaking of the lead of a pencil as expressed by the manufacturer and to accurately measure factors involved through repeating and recreating the environment of root canal preparation. Forming nine experimental groups by varying the vertical forces (150g. 220g, 300g) and rpm (150rpm, 250rpm, 350rpm), the effects of changing vertical forces and rpm on working efficiency were measured in terms of time expended in root canal preparation by crown-down method using a transparent resin block with 35 degree curvature and GT rotary file (z-test). The following research using this special research equipment that involved nine experimental groups and varying the vertical force for root canal preparation from 300g which is within the normal vertical force range to 700g and 1000g which fall outside the normal rpm range. The results were as follows : 1. Analysis of the experiment results revealed that the time spent in root canal preparation decreased as the vertical forces and rpm increased (p<0.05). Also, the effects of rpm were greater than those of the vertical forces within the normal vertical force range ($\beta$-weight test). 2. Observation of the deformation of GT rotary file revealed that deformation increases in a direct correlation with the vertical force increase and in a reverse correlation with the rpm decrease. In the case of the vertical forces close to the normal range, the probability of GT rotary file deformation were quite different depending on the rpm changes. In the case of greater vertical forces, the occurrences of deformation of the file were more frequent regardless of the rpm changes. 3. Deformation and breakage of file were also commonly observed in the expended time measurement experiments and GT rotary file deformation experiments in which low speed rpm (150rpm) was used and at the curved portion of the resin block.

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