• 제목/요약/키워드: Ni-V(Nickel vanadium)

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High alloyed new stainless steel shielding material for gamma and fast neutron radiation

  • Aygun, Bunyamin
    • Nuclear Engineering and Technology
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    • 제52권3호
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    • pp.647-653
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    • 2020
  • Stainless steel is used commonly in nuclear applications for shielding radiation, so in this study, three different types of new stainless steel samples were designed and developed. New stainless steel compound ratios were determined by using Monte Carlo Simulation program Geant 4 code. In the sample production, iron (Fe), nickel (Ni), chromium (Cr), silicium (Si), sulphur (S), carbon (C), molybdenum (Mo), manganese (Mn), wolfram (W), rhenium (Re), titanium (Ti) and vanadium (V), powder materials were used with powder metallurgy method. Total macroscopic cross sections, mean free path and transmission number were calculated for the fast neutron radiation shielding by using (Geant 4) code. In addition to neutron shielding, the gamma absorption parameters such as mass attenuation coefficients (MACs) and half value layer (HVL) were calculated using Win-XCOM software. Sulfuric acid abrasion and compressive strength tests were carried out and all samples showed good resistance to acid wear and pressure force. The neutron equivalent dose was measured using an average 4.5 MeV energy fast neutron source. Results were compared to 316LN type stainless steel, which commonly used in shielding radiation. New stainless steel samples were found to absorb neutron better than 316LN stainless steel at both low and high temperatures.

GD-MS 분석 장비를 활용한 극미량 무기물 질량 분석을 위한 표준RSF 구축 및 응용 (Establishment and application of standard-RSF for trace inorganic matter mass analysis using GD-MS)

  • 장민경;양재열;이종현;윤재식
    • 분석과학
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    • 제31권6호
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    • pp.240-246
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    • 2018
  • 본 연구에서는 GD-MS를 활용하여 원소 별 함량이 다른 세 종류의 알루미늄 매질의 표준 시료를 분석하였다. 13 종의 원소(Mg, Si, Ti, V, Cr, Mn, Fe, Ni, Cu, Zn, Ga, Sn, Pb)에 대해 검량 곡선을 작성하고 그 기울기를 RSF(Relative sensitivity reference)로 확립하였다. 검량 곡선은 X축을 IBR(Ion beam ratio)로, Y축을 표준 시료의 인증 값으로 작성하였다. 검량 곡선의 정밀도와 직선성을 평가하기 위해 RSD(Relative standard deviation)와 결정 계수를 계산하였다. 그 결과 모든 원소의 RSD는 10 %이내로 높은 정밀도를 나타냈다. 바나듐, 니켈 그리고 갈륨 원소를 제외한 대부분의 원소들은 결정 계수가 0.99 이상으로 1에 가까운 값을 얻어 직선성이 우수했다. 바나듐, 니켈 그리고 갈륨 원소는 결정 계수가 0.90~0.95 범위로 비교적 낮은 직선성을 나타냈으며, 이는 좁은 농도 범위로 인한 오차로 판단된다. 바나듐, 니켈 그리고 갈륨 원소는 결정 계수는 낮지만 각각의 표준 시료 RSF와 기울기로 확립한 표준RSF(Standard-RSF)가 비슷하여 정량 분석을 위한 RSF로 활용 가능할 것으로 판단된다. 다른 매질의 시료에 표준RSF(Al matrix)를 적용 가능 여부와 실제 표준 값에 대한 오차를 확인하기 위해서 철 매질(Fe matrix)의 표준 시료를 분석하여 검증하였다. 구리 원소를 제외한 6 종(Al, Si, V, Cr, Mn, Ni) 원소의 오차율은 약 30 %로 나타났으며, 구리 원소는 측정을 방해하는 불순물 화합물의 영향으로 오차율이 크게 나타난 것으로 판단된다. 일반적으로 동위원소$^{63}Cu$$^{54}Fe^{2+}-^{36}Ar$ 간섭을 받고 $^{65}Cu$$^{56}Fe-Al^{3+}$간섭을 받는다. 이를 분해하기 위해서는 8000 이상의 분해능이 필요하다. 하지만, 높은 분해능은 이온의 투과도를 낮추기 때문에 미량원소 분석에 어려움이 있다. 구리 원소를 제외한 알루미늄 외 5종의 원소에 대해서는 비교적 적은 오차로 정량 분석이 가능한 것으로 확인되었다.

Stable isotope and water quality analysis of coal bed methane produced water in the southern Qinshui Basin, China

  • Pan, Jienan;Zhang, Xiaomin;Ju, Yiwen;Zhao, Yanqing;Bai, Heling
    • Membrane and Water Treatment
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    • 제4권4호
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    • pp.265-275
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    • 2013
  • China is one of the countries with the highest reserves of coal bed methane (CBM) in the world. Likewise, the CBM industry is significantly growing in China. However, activities related to CBM development have led to more environmental problems, which include serious environmental damage and pollution caused by CBM-produced water. In this paper, the detailed characteristics of CBM-produced water in the southern Qinshui Basin were investigated and analyzed and compared with local surface water and coal mine drainage. Most of CBM-produced water samples are contaminated by higher concentration of total dissolved solids (TDS), K (Potassium), Na (Sodium) and $NH_4$. The alkalinity of the water from coalmines and CBM production was higher than that of the local surface water. The concentrations of some trace elements such as P (Phosphorus), Ti (Titanium), V (Vanadium), Cr (Chromium), Ni (Nickel), Zn (Zinc), Ge (Germanium), As (Arsenic), Rb (Rubidium), and Pd (Palladium) in water from the coalmines and CBM production are higher than the acceptable standard limits. The ${\delta}D$ and ${\delta}^{18}O$ values of the CBM-produced water are lower than those of the surface water. Similarly, the ${\delta}D$ values of the CBM-produced water decreased with increasing drainage time.

고(高)망간강(鋼) 판재(板材) 제조(製造)에 대한 연구(硏究) (On the Manufacture of High Manganese Steel Plate)

  • 최주;신명철
    • Applied Microscopy
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    • 제7권1호
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    • pp.45-49
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    • 1977
  • 용탕의 온도는 탄소의 비율을 높이기 위하여 $1500^{\circ}C$ 이하로 해야 하며, 주입온도는 $1460^{\circ}C$ 내외가 적당하다. 주조상태에서 소지의 침상석출물은 orthorhombic $(Fe,\;Mn)_3C$로 판명되었다. 냉간압연비는 클수록 결정이 미세화되고 또한 경도도 증가하였다. 표면탈탄이 얼어 나면 표면층에 martensite가 형성되어 성형하기가 어려우므로 argon 분위기를 쓰는 것이 좋았다. 두께 1 mm 판재의 경우 수인처리 온도가 $950^{\circ}C$ 이하일 때 탄화물 stringer 가 나타났고, $1020^{\circ}C$ 에서 30 분간 가열했을 때 탄화물이 의 소지에 고용되었다. C 함량이 클수록 인장강도와 연신률이 증가하였다. Ni, Cr 및 V 을 미량 첨가했을 때 인장강도 및 연신률이 커졌으며 또한 굽힘성도 좋았다.

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Elemental Composition of the Soils using LIBS Laser Induced Breakdown Spectroscopy

  • Muhammad Aslam Khoso;Seher Saleem;Altaf H. Nizamani;Hussain Saleem;Abdul Majid Soomro;Waseem Ahmed Bhutto;Saifullah Jamali;Nek Muhammad Shaikh
    • International Journal of Computer Science & Network Security
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    • 제24권6호
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    • pp.200-206
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    • 2024
  • Laser induced breakdown spectroscopy (LIBS) technique has been used for the elemental composition of the soils. In this technique, a high energy laser pulse is focused on a sample to produce plasma. From the spectroscopic analysis of such plasma plume, we have determined the different elements present in the soil. This technique is effective and rapid for the qualitative and quantitative analysis of all type of samples. In this work a Q-switched Nd: YAG laser operating with its fundamental mode (1064 nm laser wavelength), 5 nanosecond pulse width, and 10 Hz repetition rate was focused on soil samples using 10 cm quartz lens. The emission spectra of soil consist of Iron (Fe), Calcium (Ca), Titanium (Ti), Silicon (Si), Aluminum (Al), Magnesium (Mg), Manganese (Mn), Potassium (K), Nickel (Ni), Chromium (Cr), Copper (Cu), Mercury (Hg), Barium (Ba), Vanadium (V), Lead (Pb), Nitrogen (N), Scandium (Sc), Hydrogen (H), Strontium (Sr), and Lithium (Li) with different finger-prints of the transition lines. The maximum intensity of the transition lines was observed close to the surface of the sample and it was decreased along the axial direction of the plasma expansion due to the thermalization and the recombination process. We have also determined the plasma parameters such as electron temperature and the electron number density of the plasma using Boltzmann's plot method as well as the Stark broadening of the transition lines respectively. The electron temperature is estimated at 14611 °K, whereas the electron number density i.e. 4.1 × 1016 cm-3 lies close to the surface.