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정용삼,문종화,조현제,김영진,Chung, Yong-Sam,Moon, Jong-Hwa,Cho, Hyun-Je,Kim, Young-Jin The Korean Society of Analytical Science 2005 분석과학 Vol.18 No.1
A comparison of the analytical data obtained by three $k_0$-NAA software programs was carried out using both the airborne particulate matter collected from an urban site and the certified reference materials of the air filter and urban dust to evaluate the performance of the analysis. The individual $k_0$-NAA standardization methods of three countries, Korea, China and Vietnam which had been modified from the well established $k_0$-program were used for the comparative analysis. The measured concentrations of 30 elements from the two kinds of air samples based on this software were in agreement with each other within about 20% analytical error except for a few elements. By contrast, the results of China and Vietnam were moderately higher than that of Korea due to a systematic error associated with the detection efficiency, gamma peak analysis and geometric effect.
<sup>75</sup>Se과 <sup>77m</sup>Se 핵종을 이용한 생물시료 중의 셀렌 분석에 대한 비교 연구
문종화,강상훈,김선하,정용삼,김영진,Moon, Jong-Hwa,Kang, Sang-Hoon,Kim, Sun-Ha,Chung, Yong-Sam,Kim, Young-Jin 한국분석과학회 2005 분석과학 Vol.18 No.1
셀렌은 항산화 작용을 하는 미량 원소로 잘 알려져 있으며 많은 고객들은 다양한 식품시료중의 셀렌의 농도 및 정량에 관심을 갖고 있다. 본 연구에서는 $^{75}Se$과 $^{77m}Se$ 핵종을 이용한 중성자 방사화 분석법에 의한 생물시료중의 셀렌 분석법을 확립하고 비교하고자 하였다. 이를 위하여 미국표준연구원의 3종의 인증 표준물질을 선택하여 미리 설정된 분석조건 (조사, 냉각 및 측정시간) 하에서 셀렌의 농도를 결정하였다. 두 가지 분석방법에 의한 측정값을 인증값과 평가하였으며 $^{75}Se$과 $^{77m}Se$의 측정값에 대한 검출한계와 불확도를 서로 비교 하였다. Se is well known as an anti-oxidant trace element and many customers are interested in an analysis and contents of Se in the various foodstuff samples. This study was aimed at establishig and comparing an analytical method for the determination of the Se in biological samples by neutron activation analysis using two nuclides, $^{75}Se$ and $^{77m}Se$. Keeping this objective, three NIST biological standard reference materials were chosen and the concentrations of the Se were determined under the prefixed analytical conditions such as the irradiation, decay and measurement time. The measured values by both analytical methods were evaluated with certified values. In addition, the detection limits and measurement uncertainty for the analytical results using $^{75}Se$ and $^{77m}Se$ were compared with each other.
고순도 실리카중 알파방출 불순물 분석을 위한 HTS-NAA/γ-spectrometry 연구
이길용,윤윤열,조수영,양명권,심상권,김용제,정용삼,Lee, Kil Yong,Yoon, Yoon Yeol,Cho, Soo Young,Yang, Myung Kwon,Shim, Sang Kwon,Kim, Yongje,Chung, Yong Sam 한국분석과학회 2005 분석과학 Vol.18 No.1
고정밀 전자소자의 오동작의 한 원인인 soft error는 원료물질에 함유된 U, Th과 같은 알파방출 불순물로 알려져 있으며 전자소자의 소형화, 고집적화에 따라서 이들 불순물의 규제함량은 기존의 분석법으로는 불가능할 정도로 낮아지고 있다. 연구의 목적은 다양한 전자소자의 밀봉소재로 사용되는 EMC (epoxy molding compound)의 주 원료인 고순도 실리카에 함유되어 있는 U, Th을 고감도 (ng/g이하)로 분석할 수 있는 방사화분석법과 감마선분광분석법의 개발이다. 지금까지 방사화분석법에 이용하던 PTS (pneumatic transfer system) 중성자 조사 설비로는 산업계에서 요구하는 분석 감도를 충족시킬 수 없기 때문에 의약용 혹은 산업용 RI 생산에 주로 사용되고 있는 HTS (Hydraulic transfer system) 중성자 조사 설비를 이용한 방사화분석 조건을 확립하였다. 또한, 공기중 라돈 ($^{222}Rn$)과 자핵종 (progenies)에 의한 불안정한 바탕방사능은 분석의 감도는 물론 정확도를 저하시키는 주 요인으로 작용하므로 질소가스 유입시스템을 제작하여 라돈에 의한 바탕방사능을 소멸 혹은 안정화시켰다. 그 결과 U과 Th의 분석한계를 각각 0.1 ng/g, 0.01 ng/g까지 낮출 수 있었다. It has been established that soft error of high precision electronic circuits can be induced by alpha particles emitted from the naturally occurring radioactive impurities such as U, and Th. As the electronic circuits have recently become lower dimension and higher density, these alpha-particle emitting radioactive impurities have to be strictly controlled. The aim of this study is to develop of NAA (Neutron Activation Analysis) and gamma-spectrometry to improve the analytical sensitivity and precision of U and Th. A new NAA method has been established using the HTS (Hydrulic transfer system) irradiation facility which has been used to produce radioisotopes for industries and medicines instead of the PTS (pneumatic transfer system) irradiation facility which has been used in general NAA. When the ultratrace impurities have to be analyzed by NAA, background gamma-ray spectra induced from $^{222}Rn$ and its progenies in air is serious problem. This unstable background has been eliminated or stabilized by the use of a nitrogen purging system. Ultra trace amounts of U (0.1 ng/g) and Th (0.01 ng/g) in high purity silica used for EMC could be analyzed by the use of HTS-NAA and low background gamma-spectrometry.
폐암조직에서 중성자 방사화 분석법을 이용한 미량 원소 분석
임상무(Sang Moo Lim),조재일(Jae Il Zo),심영목(Young Mog Shim),정영주(Young Ju Chung),조승연(Seung Yeon Cho),정용삼(Yong Sam Chung) 대한핵의학회 1993 핵의학 분자영상 Vol.27 No.1
N/A Trace elements are important components in the biological system, as a structural material and metabolic controller. Neutron activation analysis (NAA) with high neutron flux and high energy resolution Ge (Li) detector coupled to multichannel analyzer (MCA) has been one of the most accurate method for the determination of ultra-trace level components, and is applicable to biological material. In human body, the NAA can be used for quantitation of trace elements in various organs and tissue with endocrinological and metabolic disease and industrial metal poisoning. In this study, Triga Mark III nuclear reactor in Korea Atomic Research Institute was used for quantitation of trace element in human lung cancer tissues by neutron activation analysis. In the squamous cell carcinoma tissues, Br, Hg, La, Sb, Sc, C1, Fe and I content were lower than normal lung tissues, and K, Rb and Se content were higher. In the adenocarcinoma tissues, Fe, Au, La, Sc and Zn content were lower than normal lung tissues, and Rb, Co and Se content were higher. Rb content was higher in the adenocarcinoma tissues than in the squamous cell carcinoma tissues. Fe and Na content were higher in the squamous cell carcinoma tissues than in the adenocarcinoma tissues.