• Title/Summary/Keyword: 수소양이온

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Acid/Base Buffer Capacity of Clays (점토의 산/염기 완충능)

  • 김건하;김길홍
    • Journal of the Korean Geotechnical Society
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    • v.16 no.6
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    • pp.97-103
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    • 2000
  • 지반내 중금속의 저류와 이동에 대한 가장 중요한 인자는 토양 간극수의 pH이다. 점토의 완충능을 kaolinite, hectorite, attapulgite, Na-bentonite와 같은 4가지 점토에 대하여 연구하였다. 완충능의 크기는 hectoriteattapulgite>kaolinite의 순으로 나타났다. 완충능의 크기는 지반내 탄산염 함량과 양이온 교환능력이 완충능의 크기에 가장 영향을 미치며 유기물 함량과 비표면적의 영향은 적었다. 토양의 완충능을 모델링하기 위하여 수소 이온과 토양표면의 화학반응 기간의 화학반응을 정전흡착 모델을 이용하여 모델링하였다. 또한 탄산염 함량과 양이온 교환능력을 함수로 하는 회귀식을 제안하였다. 모델 검증을 위하혀 모델 예측치와 실험치를 비교하였는데 정전 흡착모델을 이용한 예측치가 실험치와 근사한값을 나타냈다.

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Effects of Bubble Discharge on pH and Oxidation/Reduction Potential Change by Non-Uniform Electric Field (불평등전계에 의한 기포방전이 수소이온농도와 산화환원전위변화에 미치는 영양)

  • 김진규;김광태
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.17 no.6
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    • pp.77-82
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    • 2003
  • In this paper, as the new type of multi-lines electrode which can formulate strong non-uniform electric field was installed in strong electrolytic water generator, shapes of pre-discharge in bubble and effects of bubble discharge on pH and oxidation/reduction potential change were intended to investigate. Consequently, as multi-lines electrode was installed in side of anode, pre-discharges generated from anode electrode could be observed. This pre-discharge was generated from differences of permittivities between bubble and water in strong non-uniform electric field. And ion concentration in electrolytic water generator was increased by dissolving of ions generated from bubble discharge. So, as generated high concentration ions were separated and assembled to each electrode and reaction of oxidation/reduction was increased, it was shown that strong electrolytic water could be generated.

KSTAR 중성입자빔 소송라인 해석

  • 임기학;권경훈;조승연;김진춘
    • Proceedings of the Korean Vacuum Society Conference
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    • 1999.07a
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    • pp.37-37
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    • 1999
  • KSTAR(Korea Superconducting Tokamak Advanced Research) 핵융합 토카막 실험 장치의 플라즈마 가열을 위한 수소 중성입자빔 수송라인 내에 설치되는 collimator에 가해지는 열속 및 플라즈마에 전달되는 빔의 통과율을 해석하였다. 43cm$\times$12cm 크기의 이온원으로부터 방출되는 이온빔의 공간적 분산은 기본적으로는 Gaussian 분산(수직바향으로 1.2$^{\circ}$, 수평방향으로 0.5$^{\circ}$)의 형태를 가지지만 이온 가속 전장의 공간적 불균일로 인해 Gaussian 분산에서 다소 벗어나는 형태를 띠게 되는데, 이의 영향을 고려할 수 있는 수학적 모델을 정립하였다. 해석에 고려된 요소들은 다음과 같다. 이온원을 수많은 점원의 집합으로 가정하여 각각의 점원으로부터 주어진 공간적 분산을 가지는 이온들이 방출되는 것으로 가정하였으며, 방출된 이온은 중성화 과정을 거쳐 40%의 이온만이 중성입자화되며, 중성화되지 않은 60%의 이온들은 bending magnet에서 ion dump로 유도되어 사라지며, 나머지 중성입자들은 직진 운동을 하게 된다. 빔 진행 도중 빔 중앙에서 크게 벗어나는 일부 중성입자들은 여러 겹으로 존재하는 빔 collimator에 의해 단계적으로 제거되며, 일부 중성입자들은 잔류 수소기체에 의한 재이온화 과정을 거치기도 한다. 여기서는 정립된 수학적 모델을 이용하여 이들 collimator에서 제거되는 양 및 재이온화 손실들을 고려하여 최종적으로 플라즈마에 입사되는 중성입자 빔을 계산하였다. 한편, 빔 수송라인 설치시에 발생할 수 있는 설치 오차를 이온원 설치시의 오차와 빔 collimator 설치상의 오차로 구분하여 이들의 의한 영향도 계산하였다. Gaussian 분산을 가정하였을 경우, 이온원에 가장 근접하여 설치되는 collimator에 가해지는 수직성분의 열속은 9.7kW/cm2로 계산되었다. 이 열속을 제어 가능한 수준으로 낮추기 위해서 collimator는 빔 라인과 거의 나란하게 설치될 것이다. 빔의 통과율은 약 33%로서 하나의 이온원에서 방출된 7.8MW 중 2.5 MW만이 플라즈마에 전달되는 것을 알 수 있었다. Non-Gaussian 분산의 경우, 최대 열속은 9.1kW/cm2로 다소 낮아졌으나, 빔통과율은 28%정도로 더욱 낮아졌다. 설치상의 오차에 의한 영향을 살펴보면, 이온원이 1$^{\circ}$ 정도 기울어지게 설치된다면 collimaor에 가해지는 최대 열속 및 빔통과율은 약 15kW/cm2, 16.6% 정도로 나타나 매우 심각한 결과를 초래함을 알 수 있었다. 이에 비해 collimator 설치상의 오차의 영향은 이보다 훨씬 작아 5mm 오차가 발생했을 경우에도 최대 열속은 12kW/cm2까지 증가했으나, 빔 통과율의 변화는 거의 없었다.

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Geochemical characteristics of a LILW repository I. Groundwater (중.저준위 방사성 폐기물 처분부지의 지구화학 특성 I. 지하수)

  • Choi, Byoung-Young;Kim, Geon-Young;Koh, Yong-Kwon;Shin, Seon-Ho;Yoo, Si-Won;Kim, Doo-Haeng
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.6 no.4
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    • pp.297-306
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    • 2008
  • This study was carried out to identify the characteristics of hydrochemistry controlling groundwater chemical condition in a repository site of Gyeongju. For this study, 12 bore holes of all monitoring bore holes in the study area were selected and total 46 groundwater samples were collected with depth. In addition, 3 surfacewater samples and 1 seawater sample were collected. For water samples, cations and anions were analyzed. The environmental isotopes(${\delta}^{18}O-{\delta}D$, Tritium, ${\delta}^{13}C,\;{\cdot}{\delta}^{34}S$) were also analyzed to trace the origin of water and solutes. The result of ${\delta}^{18}O\;and\;{\delta}D$ analysis showed that surface water and groundwater were originated from precipitation. Tritium concentrations of groundwater decreased with depth but high concentrations of tritium indicated that groundwater was recharged recently. The results of ion and correlation analysis showed that groundwater types of the study area were represented by Ca-Na-$HCO_3$ and Na-Cl-$SO_4$, which was caused by sea spray and water-rock interaction. Especially, high ratio of Na content in groundwater resulted from ion exchange. For redox condition of groundwater, the values of DO and Eh decreased with depth, which indicated that reducing condition was formed in deeper groundwater. In addtion, high concentration of Fe and Mn showed that redox condition of groundwater was controlled by the reduction of Fe and Mn oxides.

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Combustion Characteristics and the Modeling of Ionized Methane for Battery Fires (배터리화재를 모사한 이온화 메탄의 연소특성 및 모델링)

  • Ko, Hyuk-Ju;Lee, Eui-Ju
    • Fire Science and Engineering
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    • v.33 no.1
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    • pp.23-29
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    • 2019
  • Rechargeable battery such as lithium-ion battery has been noticed as a kinds of the energy storage system in the recent energy utilization and widely used actually in various small electronic equipment and electric vehicles. However, many thermal runaway caused battery accidents occurred recently, which still is obstacle for advanced application of lithium ion battery. One of the main differences to general fires is the existence of ionized electrolyte with electron during combustion. Therefore, we simply simulated the ion addition effects of battery fires by introducing an ionized fuel in jet diffusion flames. When the ionized methane through a corona discharge was used as fuel, the overall flame stability and shape such as flame length showed no significant difference from normal methane flame, but NOx and CO emissions measured at the post flame region decreased. The ion addition effect of methane oxidation was also numerically simulated with the modeling of hydrogen addition in the mixture. It was confirmed that the hydrogen addition at a fixed temperature had a similar effects on ionization of methane and hence could be modeled successfully.

Distribution of potential risky species on phytoplankton at ports in Korea (항만 환경에서 식물플랑크톤 잠재적 위해종의 분포)

  • Kwon, Oh Youn;Kang, Jung-Hoon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.14 no.1
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    • pp.506-510
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    • 2013
  • This study aimed to understand relationship between potential risky species and environmental factors at ports in Korea. During the study periods, 25 potential risky species (red tide and toxic species) representing 20 red-tide species, 5 toxic species were observed in the all ports. Skeletonema costatum (red-tide species) was predominated in all study area. This species showed positive correlation with pH, while negative correlation with dissolved oxygen (p<0.05) at Busan port. Also, this species showed positive correlation with total suspended solids and pH (p<0.05) at Ulsan port. However, Sk. costatum showed positive correlation with nitrate at Incheon port (p<0.01). Pseudo-nitzschia spp. producing amnesic shellfish poison (domoic acid) showed positive correlation with nitrate and silicate in all study areas (p<0.05). Alexandrium spp. (paralytic shellfish poison) and Dinophysis acuminata (diarrhetic shellfish poison) were affected by chemical oxygen demand (p<0.01). Our results indicated that red-tide species were affected by physical factors, while chemical factors affected toxic species.

Ion Compositional Existence Forms of PM10 in Seoul Area (서울지역 미세먼지(PM10) 중 이온성분의 존재형태 추정)

  • Lee, Kyoung-Bin;Kim, Shin-Do;Kim, Dong-Sool
    • Journal of Korean Society of Environmental Engineers
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    • v.37 no.4
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    • pp.197-203
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    • 2015
  • Particulate matter (PM) has emitted in many regions of the world and is causing many health-related problems. Thus reasonable politics and solutions are needed to reduce PM in Seoul. Further it is required to clearly explain the major portions of chemical components contained in $PM_{10}$ to figure out the characteristics of $PM_{10}$, and to develop effective reduction measures in order to decrease the adverse effects of $PM_{10}$. $PM_{10}$ samples were collected in Seoul and analyzed their ions to examine the physical and chemical characteristics of ionic species. Since hydrogen ion ($H^+$) and carbonate ion (${CO_3}^{2-}$)) cannot be analyzed by Ion chromatography (IC), concentrations of $H^+$ and ${CO_3}^{2-}$ were initially estimated by pH and equivalent differences between anions and cations in this study. Starting from the study findings, good combination results for compositional patterns between anions and cations were obtained by applying a mathematical modelling technique that was based on the mass balance principle. The ions in $PM_{10}$ were combined with $H^+$, ${CO_3}^{2-}$, and supplement for $NO_3{^-}$, $Cl^-$ formed such compounds $NH_4Cl$, $NH_4NO_3$, $CaSO_4$, $(NH_4)_2SO_4$, $NaNO_3$, NaCl, $Na_2CO_3$, and $(NH_4)_2CO_3$ in the study area.

Separation of Light Rare Earth Elements by Solvent Extraction with a Mixture of Cationic and Tertiary Amine (양이온 추출제와 아민의 혼합추출제에 의한 경희토류금속의 분리)

  • Lee, Man-Seung;Son, Seong Ho
    • Resources Recycling
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    • v.26 no.2
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    • pp.3-10
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    • 2017
  • Rare earth elements with high purity are demanded for the manufacture of advanced materials. Light rare earth elements are contained in domestic monazite and Ni-MH batteries. In this paper, solvent extraction to separate the light rare earth elements from hydrochloric acid leaching solutions of these resources was discussed. A mixture of cationic and tertiary amine shows synergistic effect on the extraction of LREEs and the extent of pH decrease during extraction is reduced. The effect of solution pH on the extraction and synergism was reviewed. Acquisition of the operation data with mixer-settler on the separation of LREEs by this mixture is necessary to develop a process.

사중극 질량 분석기[QMS]를 이용한 미세 농도의 수소기체 분석

  • Im, Han-Na;Kim, Jin-Tae;Jeong, Su-Hwan;Gang, Sang-U;Yun, Ju-Yeong;Sin, Yong-Hyeon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.331-331
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    • 2010
  • 반도체 제조, 디스플레이 산업 등의 진공공정에서 잔류기체의 종류와 양에 대한 관심이 높아지면서 사용이 쉽고 높은 정확도를 가지는 사중극 질량 분석기(QMS)가 널리 쓰이고 있다. 특히 고진공으로 내려가면서 리크디텍션(leak detection)과 미세량의 잔류기체 감지가 더욱더 요구된다. 그중에서도 진공공정에서의 수소 가스를 감지하는 것은 매우 중요하므로 $H_2$/Ar 혼합가스를 이용하여 미세농도의 수소를 측정하였다. 측정하려는 가스를 부피확장 방법으로 가스챔버로 희석하여 이동시키고 핀홀에서 가스유량을 더 줄여서 QMS가 기체를 감지하는 압력범위를 유지하면서 측정하였다. 미세량의 수소기체를 감지하기 위해 이온소스의 emission current, Ion ref. voltage, cathode voltage의 변수를 조절하여 QMS를 최적화 하였으며, 그 결과 수십 ppm 농도까지 측정이 가능하다.

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