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해체 콘크리트 폐기물에 포함된 $^{55}Fe$와 $^{63}Ni$ 방사능 분석
강문자,정근호,홍상범,최근식,이창우,Kang, Mun-Ja,Chung, Kun-Ho,Hong, Sang-Bum,Choi, Geun-Sik,Lee, Chang-Woo 한국방사성폐기물학회 2007 방사성폐기물학회지 Vol.5 No.1
Combined method of extraction chromatography and liquid scintillation analysis was established for determinating $^{55}Fe\;and\;^{63}Ni$ radioactivity in solid samples. Activated concrete wastes generated from dismantling KRR-2 were analysed. The sequential separation including precipitation and extraction chromatography resulted in the above 90% chemical recoveries of Fe. Above 62% recoveries of Ni were obtained by this procedure exception to 43.6 and 46.5% recoveries. The seperation and counting procedure was also confirmed with spiked samples of known quantity. The measured and spiked quantity were agreed with the 3.7% and 0.7% variations in the $^{55}Fe\;and\;^{63}Ni$ experiments, respectively. The radioactivities of $^{55}Fe$ in the dismantled concretes are shown from below MDA to maximum 362 Bq/g. The radioactivities of $^{63}Ni$ in all concrete samples are below MDA. The $^{63}Ni$ doesn't exist in dismantled concretes from KRR-2. The radioactivity of $^{55}Fe$ is decreased rapidly as the sampling depth is increased from the concrete surface.
층상이중수산화물(Mg-Al-$CO_3$ 체계)의 물리 · 화학적 특성규명 및 소성된 시료의 크롬산이온 수용액에서 재수화반응
이석우,강문자,문희정,Rhee, Seog Woo,Kang, Mun-Ja,Moon, Hichung 대한화학회 1995 대한화학회지 Vol.39 No.8
Layered double hydroxides ($Mg-Al-CO_3$ systems, LDH), which are hydrotalcite-like anionic clay minerals, having different $Mg^{2+}\;to\;Al^{3+}$ ratio were synthesized by coprecipitation method. The subsequent products were characterized by the following methods; elemental analysis, X-ray powder diffraction, thermal analysis (DSC and TGA), FT-IR and $^{27}$Al-MAS NMR. X-ray powder patterns showed that the products formed were layered structure materials. Two heat absorption peaks were observed around 20 ∼280$^{\circ}C$ (surface water and interlayer water) and 280∼500$^{\circ}C$ (water from lattice hydroxide and carbon dioxide from interlayer carbonate) in DSC diagrams, and they were quantitatively analyzed by TGA diagrams (in case LDH4 16.2% and 28.6% respectively). FT-IR spectra indicate that the interlayer carbonate ions occupied symmetrical sites between two adjacent layers in a parallel direction. $^{27}$Al-MAS NMR spectra show only single resonance (8.6 ppm) of the octahedrally coordinated aluminum similar magnesium. When LDH4 was calcined at 560$^{\circ}C$ for 3 hours in air, its layered structure was destroyed giving a mixed metal oxide. However it readily became rehydrated in aqueous chromate solution to its original structure. 하이드로탈시이트류 음이온성 점토광물로 잘 알려진 증상이중수산화물($Mg-Al-CO_3$ 체계)을 마그네슘과 알루미늄의 비를 달리하면서 공침전법으로 합성하였다. 얻어진 생성물들의 특성을 원소조성분석, 분말 X-선회절분석, 열분석(시차주사열량분석과 열무게분석), FT-IR분광분석 및 $^{27}$/Al-MAS NMR분석등으로 규명하였다. 분말 X-선회절분석으로 생성물들이 층상구조를 이루고 있음을 확인하였다. 시차주사열량분석결과에서는 20-280$^{\circ}C$ 영역에서 표면수 및 층간수의 이탈로 인한 흡열피크가 관찰되며, 280-500$^{\circ}C$ 영역에서격자수 및 이산화탄소의 이탈로 일어나는 화학변화에 의한 강한 흡혈피크가 관찰되었다. 열무게분석결과에서는 두 영역의 질량감소량을 측정할 수 있었다(LDH4의 경우 각각 16.2%와 28.6%). FT-IR 분광분석결과층간의 탄산이온은 층과 평행하게 $D_{3h}$ 대칭구조로 존재하며, $^{27}$/Al-MAS NMR분석결과 층안의 알루미늄은 마그네슘과 마찬가지로 수산화이온에 의해 6배위환경으로 존재하였다. 공기분위기하의 560$^{\circ}C$에서 3시간 소성되어진 시료는 본래의 층상구조가 파괴된 균일한 혼합금속산화물로 변화하며, 이 물질은 크롬산이온 수용액에서 빠르게 재수화반응을 일으켜 본래의 층상구조를 회복하였다.
연구로 2호기 수조 콘크리트의 $^3H$ 및 $^{14}C$ 공간분포
홍상범,김희령,정근호,강문자,정경환,정운수,박진호,Hong, Sang-Bum,Kim, Hee-Reyoung,Chung, Kun-Ho,Kang, Mun-Ja,Jeong, Gyeong-Hwan,Chung, Un-Soo,Park, Jin-Ho 한국방사성폐기물학회 2006 방사성폐기물학회지 Vol.4 No.4
The depth distributions of total $^3H$ and $^{14}C$ activities were characterized for the activated shielding concrete from a decommissioning of KRR-2 using the commercially available tube furnace and a liquid scintillation counter. The correlation of measurement results between $^3H,\;^{14}C$ and gammer emitter was evaluated to apply for estimating radionuclide inventory of the concrete waste generated from decommissioning KRR-2. The detection limits for $^3H$ and $^{14}C$ are 0.048 and 0.028 Bq/g respectively. The specific activities of the $^3H$ and $^{14}C$ tend to decrease exponentially as the depth of the concrete becomes deeper from the surface. In addition, the $^3H$ and $^{14}C$ activities were in good correlation with the $^{60}CO$ activities analysed for the shielding concrete of KRR-2.
환경방사선감시기의 NaI(Tl) 검출기를 이용한 조사선량률 결정방법
지영용,이완로,최상도,정근호,강문자,최근식,Ji, Young-Yong,Lee, Wanno,Choi, Sang-Do,Chung, Kun Ho,Kang, Mun Ja,Choi, Geun-Sik 한국방사성폐기물학회 2013 방사성폐기물학회지 Vol.11 No.3
The energy band and the G-factor method were compared to determine the exposure rate from the measured spectrum using a NaI(Tl) scintillation detector. First, G-factors of a 3"${\Phi}X3$" NaI(Tl) detector mounted to a EFRD 3300, which means the environmental radiation monitor, in Korea Atomic Energy Research Institute (KAERI) were calculated for several directions of incident photons through the MCNP modeling, and the optimum G-factor applicable to that monitor was then determined by comparing the results both the energy band method and the G-factor method. The results for these spectrometric determinations were also compared with the dose rate from a HPIC radiation monitor around a EFRD 3300. The measured value at the EFRD 3300 based on a 3"${\Phi}X3$" NaI(Tl) detector was $7.7{\mu}R/h$ and its difference was shown about $3{\mu}R/h$, when compared with the results from a HPIC radiation moditor. Since a HPIC is known to be able to measure cosmic rays with the relatively high energy, the difference between them was caused by cosmic rays which were not detected in a 3"${\Phi}X3$" NaI(Tl) detector.
원자력 시설 해체 폐기물 내 <sup>55</sup>Fe 와 <sup>63</sup>Ni 방사능 분석을 위한 전처리 방법 비교 연구
이훈,임종명,지영용,정근호,강문자,최근식,이진홍,Lee, Hoon,Lim, Jong-Myoung,Ji, Young-Yong,Jung, Kun-Ho,Kang, Mun-Ja,Choi, Geun-Sik,Lee, Jin-Hong 한국방사성폐기물학회 2015 방사성폐기물학회지 Vol.13 No.2
원자로의 해체 과정에서 발생되는 방사성 폐기물 내 존재하는 <sup>55</sup>Fe, <sup>63</sup>Ni은 폐기물의 처리방법을 결정하는 데 있어 기초적인 지표로 활용되는 중요한 핵종이다. 하지만 두 핵종은 낮은 방사선량으로 인해 다른 핵종들과의 분리가 필수적이며 또한 시료 매질에서 완전히 추출할 수 있는 전처리가 선행되어야 한다. 따라서 본 연구는 다양한 매질의 원자로 해체 폐기물에 대한 전처리방법의 적용성을 평가하기 위해 NIST SRM 5종 (1646a, 1944, 8704, 2709a, 1633c)에 대하여 왕수, 불산, 과염소산을 각각 이용하는 습식산화법과 alkali-fusion 전처리법에 따른 Iron와 Nickel의 회수율을 비교하였다. 실험 결과 alkali-fusion 방법은 다양한 매질의 인증표준물질에 대해 Iron 95.3∼98.3%, Nickle 86.6∼88.1%의 분석 정확도와 2% 이하의 정밀도를 나타냄으로서 해체폐기물 중 <sup>55</sup>Fe, <sup>63</sup>Ni, 분석에 가장 최적화된 전처리법으로 판단된다. <sup>55</sup>Fe and <sup>63</sup>Ni are key factors in deciding the proper handling of the decommissioning of radioactive waste from nuclear facilities. For determining beta emitting radionuclides, the dismantled waste samples should be completely decomposed and separated from the sample matrix. This study reports the comparison results of the recovering efficiencies of Iron and Nickel with wet digestion methods that use various acids and alkali-fusion methods. Various matrices of NIST SRMs (1646a, 1944, 8704, 2709a, and 1633c), the recovering efficiencies of using alkali-fusion methods ranged from 95.3 to 98.3% for Iron, and from 86.6 to 88.1% for Nickel within about 2% of relative standard deviation. On the other hand, those using one of the three wet digestion methods ranged from 77.9 to 105.3% for Iron and from 40.1 to 78.5% for Nickel with over 10% of relative standard deviation. Therefore, one may draw the conclusion that the analytical results derived from Iron and Nickel using alkali-fusion methods are fairly reliable due to the recovering efficiencies observed.
감마분광분석을 이용한 <sup>226</sup>Ra의 직접 측정방법에 대한 적용성 평가
지영용,정근호,임종명,김창종,장미,강문자,박상태,우주희,구본철,서보균,Ji, Young-Yong,Chung, Kun Ho,Lim, Jong-Myoung,Kim, Change-Jong,Jang, Mee,Kang, Mun Ja,Park, Sang Tae,Woo, Zuhee,Koo, Boncheol,Seo, Bokyun 한국방사성폐기물학회 2014 방사성폐기물학회지 Vol.12 No.2
HPGe 감마선 검출기를 이용하여 $^{226}Ra$의 방사능을 직접 측정방법의 경우, $^{226}Ra$의 186.21 keV 감마선이 $^{235}U$에서 방출되는 185.7 keV 감마선에 의한 간섭을 받기 때문에 피크면적의 계산에서 반드시 보정이 필요하다. 비록 분해능이 아주 우수한 HPGe 검출기를 사용한다 하더라도 그리고 분광시스템의 채널수를 최대로 늘린다고 할지라도 약 0.5 keV 차이의 두 감마선 피크를 분리해 내기란 현실적으로 어려운 일이다. 본 연구에서는 감마분광분석을 이용한 $^{226}Ra$의 직접 측정방법에 대한 적용성을 평가하기 위하여, 여러 가지 간섭피크 보정들을 이용한 직접 측정방법을 조사하였다. 이를 원료물질 및 공정부산물 시료들에 적용함으로써 직접 측정방법들에서 그 측정 불확도, 직선성 및 적용범위 등을 평가하였다. 최종적으로 방사평형 관계를 이용하여 $^{226}Ra$의 방사능을 측정하는 간접 측정방법으로부터 얻은 $^{214}Pb$ 및 $^{214}Bi$의 결과를 직접 측정방법의 결과와 비교함으로써 최적의 측정방법을 유도하였다. In the case of the direct measurement of $^{226}Ra$ using a HPGe gamma-ray spectrometer, the interference between gammarays with 186.21 keV of $^{226}Ra$ and 185.7 keV of $^{235}U$ should be corrected to calculate the net peak area in the energy spectrum. In general, it is very difficult to conduct peaks stripping with difference of about 0.5 keV, although a HPGe with the superior resolution is applied and the maximum channels is applied to the spectrometer. In this study, several interference correction techniques in the direct measurement were surveyed to evaluate the feasibility for the measurement of $^{226}Ra$ using the gamma-ray spectrometery. Applying the interference corrections to the analysis of raw materials and by-products, the method validation for the direct measurement of $^{226}Ra$ was conducted by evaluating the measurement uncertainty, linearity, and range. As a result, the optimum method of the interference correction was selected by comparing with the indirect measurement of which progenies of $^{226}Ra$, such as $^{214}Pb$ and $^{214}Bi$, were analyzed in the secular equilibrium state.