RISS 학술연구정보서비스

검색
다국어 입력

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

변환된 중국어를 복사하여 사용하시면 됩니다.

예시)
  • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
  • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
닫기
    인기검색어 순위 펼치기

    RISS 인기검색어

      검색결과 좁혀 보기

      선택해제

      오늘 본 자료

      • 오늘 본 자료가 없습니다.
      더보기
      • 무료
      • 기관 내 무료
      • 유료
      • KCI등재

        Remediation of radioiodine using polyamine anion exchange resins

        Daniel N.T. Barton,Thomas J. Robshaw,Oluwatobi Okusanya,김대근,Sarah E. Pepper,Clint A. Sharrad,이택승,Mark D. Ogden 한국공업화학회 2019 Journal of Industrial and Engineering Chemistry Vol.78 No.-

        Two weak base anion exchange resins, Lewatit A365 and Purolite MTS9850, have been tested for theremoval of aqueous iodide from conditions simulating nuclear waste reprocessing streams. pH variationand relevant co-contaminant addition (nitrate, molybdate and iodine) allowed for assessment of iodideextraction behaviour of each resin. Isotherm experiments were performed and maximum uptakecapacities obtained exceed current industrial adsorbents, such as silver-impregnated zeolites. Maximumloading capacities, determined by Dubinin–Radushkevich isotherm, were 76114 mg g 1 for MTS9850and 589 15 mg g 1 for A365. Uptake for both resins was significantly suppressed by nitrate andmolybdate ions. The presence of dissolved iodine in the raffinate however, was found to increase iodideuptake. This was explained by characterisation of the spent resin surface by infrared and Ramanspectroscopy, which determined the presence of triiodide, indicating charge-transfer complex formationon the surface. Dynamic studies assessed the effect of co-contaminants on iodide uptake in a columnenvironment. Data wasfitted to three dynamic models, with the Dose-Response model providing the bestdescription of breakthrough. In all cases iodide breakthrough was accelerated, indicating suppression ofuptake, but capacity was still significant.

      연관 검색어 추천

      이 검색어로 많이 본 자료

      활용도 높은 자료

      해외이동버튼