• 제목/요약/키워드: Nitric acid

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모의 방사성폐액에서의 개미산 탈질속도 연구 (Denigration Kinetics by Formic Acid in the Simulated Radwaste Solution)

  • 이일희;황두성;김광욱;권선길;유재형
    • 공업화학
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    • 제8권1호
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    • pp.132-139
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    • 1997
  • 본 연구는 Nd, Pd, Ru, Zr, Mo 및 Fe 이 함유된 6성분계의 모의 방사성폐액을 대상으로 개미산 탈질에 의한 질산과 개미산의 분해속도 및 탈질 반응기구(mechanism)의 규명에 주안점을 두었다. 모든 실험은 반응온도 $90^{\circ}C$, 회분식계로 고정하여 수행하였으며, 초기 질산농도 1, 2, 3, 5M 및 $[HCOOH]/[HNO_3]$=1.25, 1,5. 1.75, 2.0에서 각각 탈질 시간을 330분까지 변화시켰다. 질산 및 개미산의 분해속도식은 각각 다음과 같으며, $\frac{d[HNO_3]}{dt}=-4.842{\times}10^{-2}[HNO_3][HCOOH],\;\frac{d[HCOOH]}{dt}=-8.911{\times}10^{-2}[HNO_3][HCOOH]$본 연구에서 제안한 반응기구는 초기 질산농도 2~5M 및 $[HCOOH]/[HNO_3]$=1.25~2.0의 범위에서 비교적 실험치와 이론치가 잘 일치하여, 이의 적용 타당성을 확인할 수 있었으나, 초기 질산농도 1M에서는 본 모델식에서 벗어나 다른 반응기구에 의해 분해됨을 추측할 수 있었다.

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Nitric Oxide and Hydrogen Peroxide Production are Involved in Systemic Drought Tolerance Induced by 2R,3R-Butanediol in Arabidopsis thaliana

  • Cho, Song-Mi;Kim, Yong Hwan;Anderson, Anne J.;Kim, Young Cheol
    • The Plant Pathology Journal
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    • 제29권4호
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    • pp.427-434
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    • 2013
  • 2R,3R-Butanediol, a volatile compound produced by certain rhizobacteria, is involved in induced drought tolerance in Arabidopsis thaliana through mechanisms involving stomatal closure. In this study, we examined the involvement of nitric oxide and hydrogen peroxide in induced drought tolerance, because these are signaling agents in drought stress responses mediated by abscisic acid (ABA). Fluorescence-based assays showed that systemic nitric oxide and hydrogen peroxide production was induced by 2R,3R-butanediol and correlated with expression of genes encoding nitrate reductase and nitric oxide synthase. Co-treatment of 2R,3R-butanediol with an inhibitor of nitrate reductase or an inhibitor of nitric oxide synthase lowered nitric oxide production and lessened induced drought tolerance. Increases in hydrogen peroxide were negated by co-treatment of 2R,3R-butanediol with inhibitors of NADPH oxidase, or peroxidase. These findings support the volatile 2R,3R-butanediol synthesized by certain rhizobacteria is an active player in induction of drought tolerance through mechanisms involving nitric oxide and hydrogen peroxide production.

모의 방사성 폐액에서 아스코르빈산에 의한 Pd의 침전 분리 (Separation of Palladium Precipitate Formed by Ascorbic Acid in a Simulated Radioactive Liquid Waste)

  • 황두성;권선길;이규일;박진호;유재형;박소진
    • 공업화학
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    • 제9권2호
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    • pp.243-248
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    • 1998
  • 본 연구에서는 아스코르빈산을 이용하여 다성분계(Pd, Ru, Rh, Nd, Cs, Sr, Fe, Ni, Zr, Mo)의 모의고준위폐액 내에 있는 Pd의 침전 분리와 침전물의 특성이 조사되었다. 아스코르빈산의 금속이온들에 대한 환원특성을 이용하여 다성분계 모의폐액 내에 함유된 Pd을 선택적으로 침전 분리할 수 있었으며, 질산농도 0.5 M에서는 0.04 M의 아스코르빈산을 첨가함으로써 99.5% 이상의 Pd을 침전 분리시킬 수 있었다. 아스코르빈산에 의한 Pd 이온의 환원 반응은 질산농도가 중요한 역할을 하며, 질산농도가 증가할수록 Pd의 침전율은 감소하였다. 용액의 질산농도가 높고 아스코르빈산의 첨가량이 적은 경우 생성된 Pd 침전물은 평형에 도달하면서 재용해 현상이 나타났다. 생성된 Pd 침전물은 모의용액의 성분계와 관계없이 Pd금속 결정으로 형성되었으며, $1.0{\mu}m$ 이하의 입자가 응집된 형태로 나타났다.

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사이클론 연소기를 이용한 탄화왕겨의 제조 (III) (Production of Carbonized Rice Husk by a Cyclone Combustor (III))

  • 김원태;노수영
    • Journal of Biosystems Engineering
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    • 제25권3호
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    • pp.187-194
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    • 2000
  • One of effective utilization technique of rice husk is known to carbonize it for using as the culture materials. A series of study on the production of carbonized rice husk by a cyclone combustor shows that the carbonized rice husk produced have a strong alkalinity. Therefore, carbonized rice husk produced by a cyclone combustor is required to neutralize with proper normality. This work is the third part of a series on the production of carbonized rice husk by a cyclone combustor. In this work, the development of neutralization process was carried out in the range of experimental conditions recommended in the previous study. Those include the preheat temperature of combustion chamber of T1b=1273∼1373K, equivalence ratio =1.68∼2.17, auxiliary gas flow rates Qg=5.15∼6.43$\ell$/min. The injection technique of dilute acid was employed for neutralization. At the lower position of the outside of combustor, a dilute nitric acid selected as neutralization liquid was injected to the carbonized rice husk exhausted from the combustion chamber. The normalities of dilute nitric acid were varied to 0.01, 0.03 and 0.05N, respectively. The injection flow rates of the solution were changes from 1.7∼4$\ell$/min. The required carbonized and neutralized rice husk could be obtained at the dilute nitric acid with normality of 0.3N and flow rate of dilute nitric acid of 2∼3.5$\ell$/min. However, the carbonized and neutralized rice husks of about 10∼20% were destroyed by spray with high injection pressure.

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The Reduction of Np(VI) by Acetohydroxamic Acid in Nitric Acid Solution

  • Chung, Dong-Yong;Lee, Eil-Hee
    • Bulletin of the Korean Chemical Society
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    • 제26권11호
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    • pp.1692-1694
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    • 2005
  • Spent nuclear fuel is reprocessed commercially by the chemical process to recover U and Pu. Recently, new salt-free reagents to separate plutonium and neptunium from uranium suitable for use in a single cycle flowsheet have been developed. Acetohydroxamic acid $(CH_3CONHOH)$ has been taken much interest in as a complexing agent capable of selective stripping of tetravalent actinides from U(VI) when actinides are present in the solvent stream of the advanced PUREX process. Additionally acetohydroxamic acid will rapidly reduce Np(VI) to inextractable Np(V) thus allowing the separation of Np from U. In this study, the rate equation for the reduction of Np(VI) to Np(V) in nitric acid aqueous solution has been determined as: $-[NpO_2^{2+}]$/dt = $k[NpO_2^{2+}]$[AHA] with k = 191.2 ${\pm}$ 11.2 $M^{-1}s^{-1}$ at 25 ${\pm}$ 0.5 ${^{\circ}C}$ and $[HNO_3]$ = 1.0 M. Comparison with other reductants available in the literature, acetohydroxamic acid is a strong one for $NpO_2^{2+}$.

Effects of Aerosol Hygroscopicity on Fine Particle Mass Concentration and Light Extinction Coefficient at Seoul and Gosan in Korea

  • Choi, Eun-Kyung;Kim, Yong-Pyo
    • Asian Journal of Atmospheric Environment
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    • 제4권1호
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    • pp.55-61
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    • 2010
  • The sensitivity of aerosol light extinction coefficient to the aerosol chemical composition change is estimated by (1) calculating the aerosol water content and chemical concentrations by a gas/particle equilibrium model and (2) calculating the aerosol light extinction coefficient by a Mie theory based optical model. The major chemical species are total (gas and particle phase) sulfuric acid, total nitric acid, and total ammonia which are based on the measurement data at Seoul and Gosan. At Seoul, since there were enough ammonia to neutralize both total sulfuric acid and total nitric acid, the dry ionic concentration is most sensitive to the variation of the total nitric acid level, while the total mass concentration (ionic concentration plus water content) and thus, the aerosol light extinction coefficient are primarily determined by the total sulfuric acid. At Gosan, since the concentration of ambient sulfuric acid was the highest among the inorganic species, sulfate salts determined aerosol hygroscopicity. Thus, both ionic and total mass concentration, and resultant aerosol light extinction coefficient are primarily determined by the sulfuric acid level.

Isolation of Constituents with Nitric Oxide Synthase Inhibition Activity from Phryma leptostachya var. asiatica

  • Kim, Donghwa;Lee, Sang Kook;Park, Kyoung-Sik;Kwon, Na-Yun;Park, Hee-Juhn
    • Natural Product Sciences
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    • 제25권1호
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    • pp.34-37
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    • 2019
  • Phytochemical studies were performed to identify the active principles of Phryma leptostachya var. asiatica (Phyrymaceae) for anti-inflammation. The anti-inflammatory activity was assessed by measuring the inhibition rate on nitric oxide (NO) formation in lipopolysaccharide (LPS)-activated macrophage 264.7 cells. Of the five compounds including ursolic acid, phrymarolin I, harpagide, haedoxancoside A, and acteoside isolated from this plant, ursolic acid showed the most prominent inhibition of NO formation. Therefore, ursolic acid may be the anti-inflammatory principle of Phryma leptostachya var. asiatica.

염료감응형 태양전지용 질산 전처리된 $TiO_2$ 광전극의 전기화학적 특성 (Electrochemical Properties of HNO3 Pre-treated $TiO_2$ Photoelectrode for Dye-SEnsitized Solar Cells)

  • 박경희;김은미;구할본
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 하계학술대회 논문집
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    • pp.441-441
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    • 2009
  • Dye-sensitized solar cells (DSSCs) have been widely investigated as a next-generation solar cell because of their simple fabrication process and low coats. The cells use a porous nanocrystalline TiO2 matrix coated with a sensitizer dye that acts as the light-harvesting element. The photo-exited dye injects electrons into the $TiO_2$ particles, and the oxide dye reacts with I- in the electrolyte in regenerative cycle that is completed by the reduction of $I_3^-$ at a platinum-coated counter electrode. Since $TiO_2$ porous film plays a key role in the enhancement of photoelectric conversion efficiency of DSSC, many scientists focus their researches on it. Especially, a high light-to-electricity conversion efficiency results from particle size and crystallographic phase, film porosity, surface structure, charge and surface area to volume ratio of porous $TiO_2$ electrodes, on which the dye can be sufficiently adsorbed. Effective treatment of the photoanode is important to improve DSSC performance. In this paper, to obtain properties of surface and dispersion as nitric acid treated $TiO_2$ photoelectrode was investigate. The photovoltaic characteristics of DSSCs based the electrode fabricated by nitric acid pre-treatment $TiO_2$ materials gave better performances on both of short circuit current density and open circuit voltage. We compare dispersion of $TiO_2$ nanoparticles before and after nitric acid treatment and measured Ti oxidized state from XPS. Low charge transfer resistance was obtained in nitric acid treated sample than that of untreated sample. The dye-sensitized solar cell based on the nitric acid treatment had open-circuit voltage of 0.71 V, a short-circuit current of 15.2 mAcm-2 and an energy conversion efficiency of 6.6 % under light intensity of $100\;mWcm^{-2}$. About 14 % increases in efficiency obtained when the $TiO_2$ electrode was treated by nitric acid.

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질산중의 우라늄(VI) 환원에 대한 하이드라이진 형태와 티타늄 전극상태의 영향연구 (Study of the Effect of Hydrazine Form and Titanium Electrode Condition on Reduction of Uranium(VI) n Nitric Acid)

  • Kim, K.W.;Lee, E.H.;Y.J. Shin;J.H. Yoo;Park, H.S.;Kim, Jong-Duk
    • Nuclear Engineering and Technology
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    • 제26권3호
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    • pp.425-432
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    • 1994
  • 질산 용액중의 우라늄(VI) 환원에 대한 하이드라이진형태 및 티타늄 전극상태 영향을 알기위하여, 질산 및 하이드라이진($N_2$H$_4$) /하이드라이진 양이온($N_2$H$_{5}$$^{+}$) 용액중의 전기화학적 미-처리 /처리 티타늄 전극에서 우라늄환원에 대한 voltammogram 해석을 수행하였다. 질산 및 하이드라이진 양이온 계를 사용한 전기화학적 미처리 티타늄 전극에서의 우라늄 환원은 그 전극에 존재하는 산화막에 의해 높은 활성화 과전압을 보이며, 하이드라이진에 기인한 질산용액중 수소이온의 소모에 의해 용액전도도의 감소 및 iR 저항의 증가 때문에 하이드라이진의 절대 농도보다는 하이드라이진/질산 농도 비에 의해 영향을 더 받았다. 질산 및 하이드라이진 양이온 계를 사용한 전기화학적 처리 티타늄 전극에서의 우라늄환원 전류는 같은 전위에서 전기화학적 미처리 티타늄전극에 비해 속도론을 해석하기에 충분히 분명하며, 높은 피크를 보였으며 질산에 의해 크게영향을 받았다. 용액중에 하이드라이진 양이온의 존재는 생성된 우라늄(IV)의 재산화 방지를 위해 중요하지만 그 농도는 우라늄 이온의 환원에는 영향을 미치지 않았다.다.

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