• 제목/요약/키워드: fuel impurity

검색결과 39건 처리시간 0.022초

Thermophysical Properties of $UO_2$ Fuel Materials

  • Lee, Hung-Joo;Kim, Chul-Whan
    • Nuclear Engineering and Technology
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    • 제8권2호
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    • pp.81-88
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    • 1976
  • Flash Method로서 열에 관련된 물리적인 성질(밀도, 정압비열 또는 열확산 계수등)을 측정할 수 있는데 이 방법을 이용하여 핵연료의 열화산 계수를 상온(300k)으로부터 고온(1400 K)까지 측정하였으며 정압비열은 시차열용량법 (Differential Scanning Calorimeter)에 의하여 상온에서부터 500k까지 측정하였고 열전도 계수는 열확산 계수, 정압비열 그리고 핵연료의 밀도로부터 계산하였다. 본 연구의 결과는 낮은 온도(500k 이하)에서는 불순물의 정도(Impurity Level)에 따라서 열전도 계수가 크게 달라지기 때문에 중요시되지만 높은 온도(1000k 이상)에서는 불순물의 정도에 따른 열전도 계수의 변화가 근소함으로 그의 존재유무가 비교적 중요시되지 않는 Dielectric Material의 보편적인 경향과 완전히 일치하였다. Gd$_2$O$_3$를 첨가한 다수의 $UO_2$ Sample들에 대한 열확산 계수를 상온에서 측정하여 비교함으로써 이것을 재확인하였다.

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고분자전해질 연료전지 연료극의 일산화탄소 및 황화수소 농도에 따른 불순물영향에 관한 연구 (A Study on Hydrogen Impurity Effect in Anode of Proton Exchange Membrane Fuel Cell on Various Concentration of CO and H2S)

  • 이은경;백재훈;이정운;이승국;이연재
    • 한국수소및신에너지학회논문집
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    • 제27권6호
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    • pp.670-676
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    • 2016
  • Hydrogen town in Republic of Korea was established in 2013. Hydrogen as a byproduct produced by various processes of factories is used in hydrogen town facilities. As cell performance is affected by contaminations in fuel gas, various standards about impurities of fuel have been determined by many countries. This study shows performance degradation of single cell with impurities concentrations. Traces of carbon monoxide (CO) and hydrogen sulfide ($H_2S$)can cause considerable cell performance losses. For comparing the performances by poisoning of CO, acceleration test, I-V curve, constant current are performed. Both the CO and $H_2S$ poisoning rate are a function of their concentration. With the higher concentrations the higher poisoning rates are observed. And, it was confirmed that, oxidation behavior and side reaction generation are not affected. Under the lower $H_2S$ concentration condition, the poisoning rate is much higher than that of CO because of its different adsorption intensity. It can be possible that the result of this study can be used for enacting regulation as a baseline data.

연료중의 이산화탄소 불순물에 의한 고분자전해질연료전지의 성능변화 연구 (Effect of Carbon Dioxide in Fuel on the Performance of PEMFC)

  • 서중근;권준택;김준범
    • 전기화학회지
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    • 제11권1호
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    • pp.42-46
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    • 2008
  • 연료전지는 수소를 직접 사용하는 것이 가장 효율이 높지만 가정이나 사무실에서는 수소 저장탱크를 사용하기보다는 도시가스(메탄가스)를 연료 source로 하여 수소를 생산하는 것이 유리하다. 연료전지에 사용하는 수소는 천연가스나 바이오가스, 탄화수소계열의 연료를 개질하여 생산하며 개질반응과정에서 필연적으로 여러 성분의 불순물이 포함되어 있다. CO, $CO_2$, $H_2S$, $NH_3$, $CH_4$등의 불순물이 포함된 수소연료가 PEM fuel cell에 공급되면 연료전지 성능에 영향을 준다고 보고되어 있다. 이러한 영향에는 전극 촉매의 피독에 의한 kinetic losses, 전해질막과 촉매이온층의 양이온 전도성 감소에 의한 ohmic losses 그리고 촉매층의 구조나 소수성 감소에 의한 mass transport losses가 있다. 개질기에서 생산된 수소연료는 약 73%의 $H_2$와 20% 이하의 $CO_2$, 5.8% 이하의 $N_2$, 2% 이하의 $CH_4$, 10ppm 이하의 CO로 최종 공급된다. 본 연구에서는 연료 중에 $CO_2$가 고분자전해질 연료전지 anode측 성능에 미치는 영향을 조사하였다. 실험은 연료전지에 공급되는 연료중에 $CO_2$농도를 10%, 20%, 30%로 전류와 전압의 성능곡선과 장시간(10시간)실험 그리고 임피던스를 측정하였다. 또한 가스크로마토그래피를 이용하여 순수한 수소와 $CO_2$가 함유된 수소의 혼합을 통해 나온 연료전지 inlet에서의 불순물의 농도를 검증하였다.

과일폐기물을 이용한 DEFC용 바이오에탄올 제조 및 특성에 관한 연구 (A Study on Characteristic of the Bio-ethanol Produced on Fruit Wastes for Direct Ethanol Fuel Cell (DEFC))

  • 이남진;김현수;차인수;최정식
    • 한국수소및신에너지학회논문집
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    • 제22권2호
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    • pp.257-264
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    • 2011
  • This study discribes performance of DEFC (Direct Ethanol Fuel Cell) utilized bio-ethanol based on fruit wastes. To produce the bio-ethanol, fruit wastes were treated at temperature $120^{\circ}C$ and 90minutes in acid pre-treatment. After pre-treatment was done, alcohol fermentation process was running. Initial alcohol concentration was 5%. Using the multi coloumn distillation system, more than 95% ethanol was distilled and each component of bio-ethanol was analyzed. In DEFC performance test, it was revealed that cell performance was much higher than that of ethanol. Comparing ethanol with mixed fuel (bio-ethanol (10%) + ethanol (90%)), the performance of ethanol was higher than that of mixed fuel. Even though the bio-ethanol from the fruit wastes is corresponded with transport ethanol standards, it thought that organic matter in bio-ethanol could be negative effect on fuel cell.

공기에 포함된 불순물에 의한 PEMFC 운전 성능 변화 (The Effect of Air Impurities on the PEMFC Performances)

  • 장종현;김이영;한종희;이상엽;조은애;김형준;임태훈
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2008년도 춘계학술대회 논문집
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    • pp.526-529
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    • 2008
  • The effect of air impurities on PEMFC performances were studied using electrochemical analysis, such as OCV monitoring, polarization, constant current operation, and electrochemical impedance spectroscopy. The nitrogen dioxide in air lowered the operation voltage at 1 A/$cm^2$ by 160 mV (10 ppm) and 227 mV (100 ppm), while the carbon monoxide effect was relatively not significant (30 mV at 100 ppm). For both nitrogen dioxide and carbon monoxide, the performances were largely recovered when pure air was provided again. Further study for additional air impurities and simulated air are under progress to provide fundamental data for the design of fuel cell vehicles.

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The Analysis on the Activation Procedure of Polymer Electrolyte Fuel Cells

  • Jang, Jong-Mun;Park, Gu-Gon;Sohn, Young-Jun;Yim, Sung-Dae;Kim, Chang-Soo;Yang, Tae-Hyun
    • Journal of Electrochemical Science and Technology
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    • 제2권3호
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    • pp.131-135
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    • 2011
  • It is, in general, believed that during the activation process, the proton conductivity increases due to wetting effect and the electrochemical resistance reduction, resulting in an increase in the fuel cell performance with time. However, until now, very scant information is available on the understanding of activation processes. In this study, dominant variables that effect on the performance increase of membrane electrode assemblies (MEAs) during the activation process were investigated. Wetting, pore restructuring and active metal utilization were analyzed systematically. Unexpectedly, the changes for both ohmic and reaction resistance characterized by the electrochemical impedance spectroscopy (EIS) after initial wetting process were much smaller when considering the degree of cell performance increases. However, the EIS spectra represents that the pore opening of electrode turns into gas transportable structure more easily. The increase in the performance with activation cycles was also investigated in a view of active metals. Though the particle size was grown, the number of effective active sites might be exposed more. The impurity removal and catalytic activity enhancement measured by cyclic voltammetry (CV) could be a strong evident. The results and analysis revealed that, not merely wetting of membrane but also restructuring of electrodeand catalytic activity increase are important factors for the fast and efficient activation of the polymer electrolyte fuel cells.

불화물계 용융염을 이용한 지르코늄 스크랩의 다중전극 전해정련 거동 (Electrorefining Behavior of Zirconium Scrap with Multiple Cathode in Fluoride-Based Molten Salt)

  • 박동재;김승현;박경태;문종한;이혁희;이종현
    • 방사성폐기물학회지
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    • 제13권1호
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    • pp.11-19
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    • 2015
  • 원자력발전소 증설에 따라 핵연료 피복관의 생산량이 증가 할 것으로 예상되며, 튜브 제조 시 발생되는 지르코늄(Zr) 스크랩 역시 증가 할 것으로 판단된다. 지르코늄(Zr) 정련기 대용량화와 회수율 향상을 위한 사전 연구로서 LiF-KF-ZrF4 불화물의 염에서 다전극을 이용하여 전해정련실험을 실시하였다. LiF-KF-ZrF4염에서는 -0.8 V(vs.Ni)에서 환원전위가 관찰되었으며, 분극 거동 관찰 결과 전극의 개수가 증가할수록 셀의 저항이 낮아져 인가전류량이 증가하였다. 6개의 다 전극을 이용하여 정련 실험을 한 결과 가장 낮은 전류밀도인 25.64 mA/cm2조건에서 98%의 회수율로 가장 높은 회수율은 보였다. XRD 및 TG 분석 결과 순수한 Zr이 회수되었으며, ICP 분석결과 양극재의 기본 불순물 함량을 포함한 순도 97.8% 보다 낮은 불순물의 함량을 포함한 순도 99.92%의 Zr을 나타내었다. 폭 20 mm 높이 65 mm의 전극 6개를 사용시 전력소모율은 7.15 kWh/Kg으로 크롤 공정대비 39.7% 전력을 소모하게 된다. 다 전극 사용 시 단일 전극 사용에 비해 인가전류와 셀 효율 및 회수율 증대로 대용량화를 위한 효율적인 기술로 판단된다.

양자교환막을 이용하여 생산된 수소의 불순물 분석 (Hydrogen Impurities Analysis From Proton Exchange Membrane Hydrogen Production)

  • 이택홍;김태완;박태성;최운선;김홍열;이홍기
    • 한국수소및신에너지학회논문집
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    • 제24권4호
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    • pp.288-294
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    • 2013
  • This gas analysis data come from the hydrogen which is produced by proton exchange membrane. Main impurities of hydrogen are methane, oxygen, nitrogen, carbon monoxide, and carbon dioxide. The concentration of impurities is ranged between 0.0191 to $315{\mu}mol/mol$ for each impurity. Methane contamination is believed from the electrode reaction between carbon doped electrode and produced hydrogen. Nitrogen contamination should take place the sampling process error, not from PEM hydrogen Production system.

Verification of Graphite Isotope Ratio Method Combined With Polynomial Regression for the Estimation of Cumulative Plutonium Production in a Graphite-Moderated Reactor

  • Kim, Kyeongwon;Han, Jinseok;Lee, Hyun Chul;Jang, Junkyung;Lee, Deokjung
    • 방사성폐기물학회지
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    • 제19권4호
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    • pp.447-457
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    • 2021
  • Graphite Isotope Ratio Method (GIRM) can be used to estimate plutonium production in a graphite-moderated reactor. This study presents verification results for the GIRM combined with a 3-D polynomial regression function to estimate cumulative plutonium production in a graphite-moderated reactor. Using the 3-D Monte-Carlo method, verification was done by comparing the cumulative plutonium production with the GIRM. The GIRM can estimate plutonium production for specific sampling points using a function that is based on an isotope ratio of impurity elements. In this study, the 10B/11B isotope ratio was chosen and calculated for sampling points. Then, 3-D polynomial regression was used to derive a function that represents a whole core cumulative plutonium production map. To verify the accuracy of the GIRM with polynomial regression, the reference value of plutonium production was calculated using a Monte-Carlo code, MCS, up to 4250 days of depletion. Moreover, the amount of plutonium produced in certain axial layers and fuel pins at 1250, 2250, and 3250 days of depletion was obtained and used for additional verification. As a result, the difference in the total cumulative plutonium production based on the MCS and GIRM results was found below 3.1% with regard to the root mean square (RMS) error.