• 제목/요약/키워드: IAEA-312

검색결과 3건 처리시간 0.022초

액체섬광계수기를 이용한 토양 중 226Ra 분석 방법 연구 (Study of the determination of 226Ra in soil using liquid scintillation counter)

  • 정윤희;김현철;정근호;강문자
    • 분석과학
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    • 제29권2호
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    • pp.65-72
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    • 2016
  • 액체섬광계수기(Liquid Scintillation Counter, LSC)를 이용한 토양 중 226Ra 분석 방법에 대해 연구하였다. 용융법으로 토양에서 Ra을 추출하고, Ba(Ra)SO4로 침전시켜 방해핵종과 Ra을 분리하였다. Ba(Ra)SO4를 산에 녹을 수 있는 Ba(Ra)CO3로 변환시키고, 라돈 가스를 포집할 수 있는 소수성 섬광용액과 혼합한 다음, LSC로 분석하였다. 226Ra과 90Sr 표준시료를 이용하여 최적의 PSA(Pulse shape analysis, 파형분석) 준위를 설정하였다. FOM(Figure of merit, 성능지수)이 최대이고 알파선 중첩정도가 최소로 나타나는 PSA 80을 최적값으로 결정하였다. Glass vial을 사용했을 때 계측 효율은 243±2% 이다. 본 연구에서 개발한 분석법은 IAEA-312, IAEA-314, IAEA-315를 이용하여 그 신뢰도를 평가를 하였다. 회수율은 60~82% 이며, 측정값과 참고값과의 상대편의가 10 % 이내였다. 최소검출농도는 토양 1 g, 바탕 계수율 0.02 cpm일 때, 회수율 70 %, 계측시간 30 분을 기준으로 2.1 Bq kg−1 이다.

Acute oral toxicity and bioavailability of uranium and thorium in contaminated soil

  • Nur Shahidah Abdul Rashid;Wooyong Um ;Ibrahim Ijang ;Kok Siong Khoo ;Bhupendra Kumar Singh;Nurul Syiffa Mahzan ;Syazwani Mohd Fadzil ;Nur Syamimi Diyana Rodzi ;Aina Shafinas Mohamad Nasir
    • Nuclear Engineering and Technology
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    • 제55권4호
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    • pp.1460-1467
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    • 2023
  • A robust approach was conducted to determining the absolute oral bioavailable (fab) fractions of 238U and 232Th in rats exposed to contaminated soil along with their hematotoxicity and nephrotoxicity. The soil sample is the International Atomic Energy Agency-312 (IAEA-312) certified reference material, whereas blood, bones, and kidneys of in vivo female Sprague-Dawley (SD) rats estimate 238U- and 232Th-fab fractions post-exposure. We predict the bioavailable concentration (Cab) and fab values of 238U and 232Th after acute soil ingestion. The blood 238U (0.750%) and 232Th (0.028%) reach their maximum fab values after 48 h. The 238U (fab: 0.169-0.652%) accumulates mostly in the kidney, whereas the 232Th (fab: 0.004-0.021%) accumulates primarily in the bone. Additionally, 238U is more bioavailable than 232Th. Post 48 h acute ingestion demonstrates noticeable histopathological and hematological alterations, implying that intake of 238U in co-contaminated soil can lead to erythrocytes and proximal tubules damage, whereas, 232Th intake can harm erythrocytes. Our study provides new directions for future research into the health implications of acute oral exposures to 238U and 232Th in co-contaminated soils. The findings offer significant insight into the utilization of in vivo SD rat testing to estimate 238U and 232Th bioavailability and toxicity in exposure assessment.

돼지 유래 생체 조직의 이식재 활용을 위한 방사선 조사 미생물 제어 평가 (Comparison of Microbiological Safety of Porcine Grafts on Gamma Irradiation for Use of Xenografts)

  • 조으리;김정수;최종일;김재훈;성낙윤;송범석;김재경;박종흠;이주운
    • 방사선산업학회지
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    • 제5권3호
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    • pp.279-283
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    • 2011
  • This study was compared microbiological safety with gamma-irradiated porcine tendon and skin, as materials for the development of xenografts to regenerate damaged tissues and protect secondary contamination. The porcine tendon and skin were gamma-irradiated after inoculation of bacteria and virus to evaluate irradiation sensitivity of microorganisms. The result showed that the porcine tendon and skin were not different on the sensitivity of microorganisms by gamma irradiation. Bacteria inoculated in the porcine tendon and skin were confirmed that E. coli was the $D_{10}$ values of $0.32{\pm}0.082$ and $0.25{\pm}0.1kGy$ on tendon and skin, and B. subtilis was $4.00{\pm}0.312$ and $3.88{\pm}0.3kGy$ on gamma irradiation, respectively. Moreover, Virus inoculated in the porcine tendon and skin was observed that poliovirus (PV) was $6.26{\pm}0.332$ and $6.88{\pm}0.3kGy$, and porcine parvovirus (PPV) was $1.75{\pm}0.131$ and $1.73{\pm}0.2kGy$ and bovine viral diarrhoea virus (BVDV) was $3.70{\pm}0.212$ and $3.81{\pm}0.2kGy$ on gamma irradiation, respectively. Virus showed higher resistance compared to bacteria on gamma irradiation, but was not detected CPE (cytopathic effect) by virus both tendon and skin at 25 kGy, a standard dose recommended from IAEA for sterilization of medical products. Therefore, These results were considered that gamma irradiation could control effectively bacteria and virus to develop safe porcine xenograft, and apply same irradiation doses to all tissues including tendon and skin of porcine.