• 제목/요약/키워드: $pCO_2\

검색결과 7,709건 처리시간 0.04초

Effect of pH on the Synthesis of $LiCoO_2$ with Malonic Acid and Its Charge/Discharge Behavior for a Lithium Secondary Battery

  • 김도훈;정유덕;김상필;심운보
    • Bulletin of the Korean Chemical Society
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    • 제21권11호
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    • pp.1125-1132
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    • 2000
  • The pH effect of the precursor solution on the preparation of $LiCoO_2$ by a solution phase reaction containing malonic acid was carried out. Layered $LiCoO_2$ powders were obtained with the precursors prepared at the different pHs (4, 7, and 9) and heat-treated at $700^{\circ}C(LiCoO_2-700)$ or $850^{\circ}C(LiCoO_2-850)$ in air. pHs of the media for precursor synthesis affects the charge/discharge and electrochemical properties of the $LiCoO_2electrodes.$ Upon irrespective of pH of the precursor media, X-ray diffraction spectra recorded for $LiCoO_2-850$ powder showed higher peak intensity ratio of I(003)/I(104) than that of $LiCoO_2-700$, since the better crystallization of the former crystallized better. However, $LiCoO_2$ synthesized at pH 4 displayed an abnormal higher intensity ratio of I(003)/I(104) than those synthesized at pH 7 and 9. The surface morphology of the $LiCoO_2-850$ powders was rougher and more irregular than that of $LiCoO_2-700$ made from the precursor synthesized at pH 7 and 9. The $LiCoO_2electrodes$ prepared with the precursors synthesized at pH 7 and 9 showed a better electrochemical and charge/discharge characteristics. From the AC impedance spectroscopic experiments for the electrode made from the precursor prepared in pH 7, the chemical diffusivity of Li ions (DLi+) in $Li0.58CoO_2determined$ was 2.7 ${\times}$10-8 $cm^2s-1$. A cell composed of the $LiCoO_2-700$ cathode prepared in pH 7 with Lithium metal anode reveals an initial discharge specific capacity of 119.8 mAhg-1 at a current density of 10.0 mAg-1 between 3.5 V and 4.3 V. The full-cell composed with $LiCoO_2-700$ cathode prepared in pH 7 and the Mesocarbon Pitch-based Carbon Fiber (MPCF) anode separated by a Cellgard 2400 membrane showed a good cycleability. In addition, it was operated over 100 charge/discharge cycles and displayed an average reversible capacity of nearly 130 mAhg-1.

Cupriavidus necator를 이용한 Poly(3-hydroxybutyrate) 생산에 이산화탄소의 농도가 미치는 영향 (Production of Poly(3-hydroxybutyrate) by Cupriavidus necator at Various Concentrations of Carbon Dioxide)

  • 박인선;조은혜;남경필
    • 대한환경공학회지
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    • 제35권2호
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    • pp.109-114
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    • 2013
  • Polyhydroxyalkanoates (PHAs)는 다양한 미생물이 세포 내에 저장하는 에너지 저장물질로 생체적합성 플라스틱의 원료 물질이다. 본 연구에서는 Cupriavidus necator를 사용하여 독립영양배양조건으로 poly(3-hydroxybutyrate) (P(3HB))를 생산함에 있어서 $CO_2$ 농도가 미생물의 성장과 P(3HB)의 축적에 미치는 영향을 확인하였다. 첫 번째 질소원을 포함한 배지에서의 6일 간의 배양 단계에서 C. necator의 균체수는 $CO_2$ 농도와 관계없이 증가했지만, 균체 내에 축적된 P(3HB)의 양은 $CO_2$ 농도가 1-20%로 증가함에 따라 감소하였다. 두 번째 질소원이 제거된 배지에서의 4일 간의 배양 단계에서 P(3HB)의 축적량은 3% $CO_2$에서 가장 많았다. 하지만 전체 10일 간의 배양기간 동안 합성된 총 P(3HB)의 양은 1, 3, 10, 20% 순으로 나타났다. 따라서 본 연구에서는 $CO_2$를 사용하여 P(3HB)를 축적할 때 1-20% $CO_2$ 중에서 1% $CO_2$가 가장 효율적임을 확인하였다.

pH가 낮은 탄산수의 CO2 탈기에 따른 용존탄소동위원소 변화 (Changes of carbon-13 Isotope of Dissolved Inorganic Carbon Within Low-pH CO2-rich Water during CO2 Degassing)

  • 채기탁;유순영;김찬영;박진영;방하은;이인혜;고동찬;신영재;오진만
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제24권3호
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    • pp.24-35
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    • 2019
  • It is known that ${\delta}^{13}C_{DIC}$ (carbon-13 isotope of dissolved inorganic carbonate (DIC) ions) of water increases when dissolved $CO_2$ degases. However, ${\delta}^{13}C_{DIC}$ could decrease when the pH of water is lower than 5.5 at the early stage of degassing. Laboratory experiments were performed to observe the changes of ${\delta}^{13}C_{DIC}$ as $CO_2$ degassed from three different artificial $CO_2$-rich waters (ACWs) in which the initial pH was 4.9, 5.4, and 6.4, respectively. The pH, alkalinity and ${\delta}^{13}C_{DIC}$ were measured until 240 hours after degassing began and those data were compared with kinetic isotope fractionation calculations. Furthermore, same experiment was conducted with the natural $CO_2$-rich water (pH 4.9) from Daepyeong, Sejong City. As a result of experiments, we could observe the decrease of DIC and increase of pH as the degassing progressed. ACW with an initial pH of 6.4, ${\delta}^{13}C_{DIC}$ kept increasing but, in cases where the initial pH was lower than 5.5, ${\delta}^{13}C_{DIC}$ decreased until 6 hours. After 6 hours ${\delta}^{13}C_{DIC}$ increased within all cases because the $CO_2$ degassing caused pH increase and subsequently the ratio of $HCO_3{^-}$ in solution. In the early stage of $CO_2$ degassing, the laboratory measurements were well matched with the calculations, but after about 48 hours, the experiment results were deviated from the calculations, probably due to the equilibrium interaction with the atmosphere and precipitation of carbonates. The result of this study may be not applicable to all natural environments because the pressure and $CO_2$ concentration in headspace of reaction vessels was not maintained constant as well as the temperature. Nevertheless, this study provides fundamental knowledge on the ${\delta}^{13}C_{DIC}$ evolution during $CO_2$ degassing, and therefore it can be utilized in the studies about carbonated water with low pH and the monitoring of geologic carbon sequestration.

Effects of elevated CO2 concentration and increased temperature on leaf related-physiological responses of Phytolacca insularis (native species) and Phytolacca americana (invasive species)

  • Kim, Hae-Ran;You, Young-Han
    • Journal of Ecology and Environment
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    • 제33권3호
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    • pp.195-204
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    • 2010
  • In the study, the effects of elevated $CO_2$ and temperature on the photosynthetic characteristics, chlorophyll content, nitrogen content, carbon content, and C/N ratio of Phytolacca insularis and Phytolacca americana were examined under control (ambient $CO_2+$ ambient temperature) and treatment (elevated $CO_2+$ elevated temperature) for 2 years (2008 and 2009). The photosynthetic rate, transpiration rate and water use efficiency of two plant species were higher under the treatment than the under the control. The stomatal conductance of P. insularis was higher under the control, but that of P. americana was not significantly affected by $CO_2$ and temperature under the treatment. The chlorophyll contents of two species were decreased about 72.5% and 20%, respectively, by elevated $CO_2$ and temperature. The nitrogen contents of two species were not significantly altered by increase in $CO_2$ and temperature. The carbon contents of the two species were higher under the treatment than under the control. The C/N ratio of P. insularis was higher under the treatment but that of P. americana was not significantly affected by $CO_2$ and temperature. These results demonstrated that the physiological responses of P. insularis native plants might be more sensitively influenced by a $CO_2$-mediated global warming situation than those of the P. americana invasive plants.

Triclinic Na3.12Co2.44(P2O7)2 as a High Redox Potential Cathode Material for Na-Ion Batteries

  • Ha, Kwang-Ho;Kwon, Mi-Sook;Lee, Kyu Tae
    • Journal of Electrochemical Science and Technology
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    • 제11권2호
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    • pp.187-194
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    • 2020
  • Two types of sodium cobalt pyrophosphates, triclinic Na3.12Co2.44(P2O7)2 and orthorhombic Na2CoP2O7, are compared as high-voltage cathode materials for Na-ion batteries. Na2CoP2O7 shows no electrochemical activity, delivering negligible capacity. In contrast, Na3.12Co2.44(P2O7)2 exhibits good electrochemical performance, such as high redox potential at ca. 4.3 V (vs. Na/Na+) and stable capacity retention over 50 cycles, although Na3.12Co2.44(P2O7)2 delivered approximately 40 mA h g-1. This is attributed to the fact that Na2CoP2O7 (~3.1 Å) has smaller diffusion channel size than Na3.12Co2.44(P2O7)2 (~4.2 Å). Moreover, the electrochemical performance of Na3.12Co2.44(P2O7)2 is examined using Na cells and Li cells. The overpotential of Na cells is smaller than that of Li cells. This is due to the fact that Na3.12Co2.44(P2O7)2 has a smaller charge transfer resistance and higher diffusivity for Na+ ions than Li+ ions. This implies that the large channel size of Na3.12Co2.44(P2O7)2 is more appropriate for Na+ ions than Li+ ions. Therefore, Na3.12Co2.44(P2O7)2 is considered a promising high-voltage cathode material for Na-ion batteries, if new electrolytes, which are stable above 4.5 V vs. Na/Na+, are introduced.

대기 $CO_2$ 상승시 인산공급이 식물체의 광합성 및 질소고정에 미치는 영향 (Effect of Phosphorus Stress on Photosynthesis and Nitrogen Fixation of Soybean Plant under $CO_2$ Enrichment)

  • 사동민
    • Applied Biological Chemistry
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    • 제40권2호
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    • pp.134-138
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    • 1997
  • 대기 $CO_2$ 상승시 인산공급이 대두식물체의 광합성 및 질소고정에 미치는 영향을 살펴보고저 Bradyrhizobium japonicum MN110을 접종한 대두 식물체를 인산결핍구(0.05 m-P) 및 대조구(1.0 mM-P)를 처리하여 정상 $CO_2(400\;{\mu}l/L)$와 상승 $CO_2(800\;{\mu}l/L)$의 조건인 phytotron에서 35일 동안 재배하였다. 인산결핍은 건물량을 정상 $CO_2$ 처리시 51%, 상승 $CO_2$ 처리시 64%를 감소시켰고 총 엽면적도 유의성있게 감소시켰으나 specific leaf weight는 증가시켰다. 광합성 속도 및 잎내부의 $CO_2$농도는 인산결집구에서 감소하였고 그 정도는 $CO_2$ 상승처리시 더욱 컸으며 질소고정능과 근류생체량도 인산결핍시 감소하였으나 잎의 질소농도는 인산대조구가 30% 감소하였다. 이러한 결과는 $CO_2$ 상승조건에서도 인산이 결핍될 경우 식물생육을 촉진시키지 못하며 인산은 정상 $CO_2$ 농도시 보다 $CO_2$ 상승조건에서 근류의 성장과 작용에 더욱 중요한 역할을 하는것으로 유추된다.

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DDI DRAM에서의 Column 불량 특성에 관한 연구 (A Study on Characteristics of column fails in DDI DRAM)

  • 장성근;김윤장
    • 한국산학기술학회논문지
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    • 제9권6호
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    • pp.1581-1584
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    • 2008
  • 버팅 콘택을 가진 쌍극 폴리사이드 게이트 구조에서 폴리실리콘 내의 순 도핑(net doping) 농도는 $n^+/p^+$ 중첩 및 실리사이드/폴리실리콘 층에서 도펀트의 수평 확산에 기인하여 감소하였다. 버팅 콘택 영역에서의 쇼트키 다이오드 형성은 $CoSi_2$의 열적 응집 현상에 의한 $CoSi_2$ 손실과 폴리실리콘 내의 농도 저하에 기인된다. DDI DRAM에서 기생 쇼트키 다이오드는 감지 증폭기의 노이즈 마진을 감소시켜 column성 불량을 일으킨다. Column성 불량은 $n^+/p^+$ 폴리실리콘 접합 부분을 물리적으로 분리시키거나, $CoSi_2$ 형성 전 질소 이온을 $p^+$ 영역에 주입 시켜 $CoSi_2$의 응집현상을 억제함으로써 줄일 수 있다.

연탄이 연소할 때에 생성되는 일산화탄소에 대한 연구 (A Study of the Formation of Carbon Monoxide in the Combustion of Anthracite Holed Briquettes)

  • 한동진
    • 대한화학회지
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    • 제11권4호
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    • pp.150-158
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    • 1967
  • 연탄이 연소할 때 배기기체에 포함된 일산화탄소의 mole백분율(CO%)은 그 초기에 있어서 대략 다음 식으로 표시된다. (CO%)=$\frac{2{\alpha}}{1+{\alpha}}(CO_2%)$ exp $[-\vec{k}(No_2-Nc)^{1/2}{\tau}]$위식에서 ${\alpha}=\frac{-0.395K_p+\sqrt{0.156K^2_p+(0.83+0.21K_p)K_p}}{0.83+0.21K_p}$그리고 $logK_p =-\frac{8593}{T} + 2.45logT -1.08{\times}10^{-3}T + 1.12{\times}10^{-7}T^2+2.77\vec{k},\;No_2$$N_c$$CO+\frac{1}{2}O_2{\to}CO_2$의 반응속도상수, 그리고 1mole의 배기기체에 포함된 산소 및 탄소의 산화물의 mole수이다. 본 실험에서는 연소된 전 탄소의 값에 대해서 일산화탄소를 전환된 백분율 및 연소로 속에 들어가는 공기의 유량속은 다음과 같았다. 1.76%와 0.53l/sec (뚜껑이 있을 때) 및 12.35%와 2.4l/sec (뚜껑이 없을 때)

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갈조류 감태(Ecklonia cava)의 포자체와 배우체 생장에 영향을 주는 수온과 pCO2 농도의 상호작용 (Interactive Effects of Increased Temperature and pCO2 Concentration on the Growth of a Brown Algae Ecklonia cava in the Sporophyte and Gametophyte Stages)

  • 오지철;유옥환;최한길
    • Ocean and Polar Research
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    • 제37권3호
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    • pp.201-209
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    • 2015
  • To examine the effects of increased $CO_2$ concentration and seawater temperature on the photosynthesis and growth of forest forming Ecklonia cava (Laminariales, Phaeophyta), sporophytic discs and gametophytes were cultured under three $pCO_2$ concentrations (380, 750, 1000 ppm), four temperatures (5, 10, 15, $20^{\circ}C$ for sporophytes; 10, 15, 20, $25^{\circ}C$ for gametophytes), and two irradiance levels (40, $80{\mu}mol$ photons $m^{-2}s^{-1}$) for 5 days. Photosynthetic parameter values ($ETR_{max}$, $E_k$, and ${\alpha}$) were generally higher as sporophytic discs were grown under low temperature and increased $CO_2$ concentration at 750 ppm. However, photosynthesis of Ecklonia sporophytes was severely inhibited under a combination of high temperature ($20^{\circ}C$) and 1000 ppm $CO_2$ concentration at the two photon irradiance levels. The growth of gametophytes was maximal at the combination of 380 ppm (present seawater $CO_2$ concentration) and $25^{\circ}C$. Minimal growth of gametophytes occurred at enriched $pCO_2$ concentration levels (750, 1000 ppm) and high temperature of $25^{\circ}C$. The present results imply that climate change which is increasing seawater temperature and $pCO_2$ concentration might diminish Ecklonia cava kelp beds because of a reduction in recruitments caused by the growth inhibition of gametophytes at high $pCO_2$ concentration. In addition, the effects of increased temperature and $pCO_2$ concentration were different between generations - revealing an enhancement in the photosynthesis of sporophytes and a reduction in the growth of gametophytes.

Co(II)-CyDTA와 Fe(III)-CN 착이온간의 전자이동반응에서 활성화파라미터 $({\Delta}H^{\neq},\;{\Delta}S^{\neq}$${\Delta}V^{\neq})$ 와 반응메카니즘 (Mechanism and Activation Parameters $({\Delta}H^{\neq},\;{\Delta}S^{\neq}$ and ${\Delta}V^{\neq})$ of Electron Transfer Reaction Between $Co^{II}CyDTA\;and\;Fe^{III}$CN Complex Ions)

  • 박유철;김성수
    • 대한화학회지
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    • 제33권3호
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    • pp.273-280
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    • 1989
  • Co(II)-CyDTA 착물의 흡수스펙트럼을 pH = $6.0{\sim}13.2$의 수용액에서 측정하였다. 흡수에너지는 pH가 증가할수록 낮은 에너지로 이동하였고, 이 현상은 $CoCyDTA^{2-}$$CoCyDTA(OH)^{3-}$간의 평형상수 $K_{OH} = [CoCyDTA(OH)^{3-}]/[CoCyDTA^{2-}][OH^-]$로 설명할 수 있었고, 그 값은 $40^{\circ}C$에서 $75M^{-1}$이었다. Co(II)-CyDTA와 Fe(III)-CN 착이온간의 전자이동반응은 $K_{OH}$ 측정과 같은 용액조건에서 분광광도법을 이용하여 고찰하였다. 측정한 $k_{obs}$는 pH = 10.8까지는 거의 일정하였으나 pH > 10.8에서는 pH의 증가에 따라 증가하였다. pH = $6.0{\sim}13.0$에서 적용할 수 있는 속도법칙은 $k_{obs} = (k_3[CoCyDTA^{2-}] + k_4[CoCyDTA(OH)^{3-}])/(1+K_1[CoCyDTA^{2-}])$이었다. 반응 (3a)와 (3b)의 속도상수 $k_3$$k_4$$40^{\circ}C$에서 각각 $0.529M^{-1}sec^{-1}$$4.500M^{-1}sec^{-1}$이었다. 활성화엔트로피(147{\pm}1.1JK^{-1} mol^{-1}, pH = 10.8)$와 활성화체적$(6.25cm^3mol^{-1}, pH = 10.8)$은 pH가 증가할수록 증가하였지만, 활성화엔탈피$(12.44{\pm}0.20 kcal mol^{-1})$는 pH의 영향을 받지 않았다. 속도상수, 활성화엔트로피, 활성화체적에 대한 pH의 영향을 각각이용하여 Co(II)-Fe(III)의 전자이동 반응메카니즘을 논의하였다.

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