• Title/Summary/Keyword: 화학평형상태

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The Solubility of Synthetic Schwertmannite (합성 슈워트마나이트의 용해도)

  • 박미선;유재영
    • Journal of the Mineralogical Society of Korea
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    • v.14 no.1
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    • pp.21-30
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    • 2001
  • 투석을 이용한 투석법과 투석을 이용하지 않은 평형 실험을 통해 슈워트마나이트를 합성하였다. 이 합성실험 동안 일정시간 간격을 두고 합성 용액 시료와 합성괸 침전물 시료를 채취하였으며, 이러한 시료들에 대해 X-선 회절 분석(XRD), 시차열분석(DTA), 원자흡수분광분석(AA), 유도결합 플라즈마 원자방출분광분석(ICP-AES), 이온크로마토그래피(IC)분석 등을 실시하였다. 컴퓨터 프로그램 MINTEQA2를 이용하여 분석된 합성용액의 화학조성으로부터 침전물과 공존하는 용액 내 각 화학조성으로부터 침전물과 공존하는 용액 내 각 화학종의 분포와 활동도를 계산하였다. 연구 결과 투석법을 이용하여 합성을 하면 비평형 상태를 유지하게 되므로 순수한 슈워트마나이트의 용해도를 얻고자 할 때는 투석을 이용하지 않은 합성법을 수행하여야 하는 것이 밝혀졌다. 투석을 이용하지 않은 합성 실험 결과 슈워트마나이트 침전후 72시간이 경과한 후에 평형상태에 도달함이 확인되었다. 평형상태일 때 순수하게 합성된 슈워트마나이트의 용해도 상수 pKs는 $-6.11\pm$1.16의 값을 갖는 것으로 나타났다. 순사한 슈원트마나이트의 분석된 화학조성으로 계산된 화학식은 $Fe_{8}$ /O sub 8/ (OH)$_{4.16}$ ($SO_4$)$_{1.92}$ .$6.74H_2$O, $Fe_{8}$ /O$_{8}$ (OH)$_{4.18}$ ($SO_4$)$_{ 1.91}$.$6.89H_2$O이다.

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The Correlation between Concepts on Chemical Reaction Rates and Concepts on Chemical Equilibrium in High School Students (고등학생들의 화학반응속도 개념과 화학평형 개념간의 상관관계)

  • Park, Guk-Tae;Kim, Gyeong-Su;Park, Gwang-Seo;Kim, Eun-Suk;Kim, Dong-Jin
    • Journal of the Korean Chemical Society
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    • v.50 no.3
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    • pp.247-255
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    • 2006
  • The purpose of this study was to investigate the correlation between concepts on chemical reaction rates and concepts on chemical equilibrium in high school students. The subjects of the investigation consisted of 120 third grade students attending high school in K city of Kyunggi province. For this study, questionnaire relevant to the subject of chemical reaction rates and chemical equilibrium was developed and the answers were analyzed. As a result of the study, a large percentage of high school students answered questions on reaction rates correctly, but only a small percentage of the students could give explanations. Many high school students answered questions on the rates of forward reactions correctly, but not the questions on the rates of reverse reactions. For the concepts on chemical equilibrium, many high school students gave correct answers when faced with equilibrium questions that only required the understanding of one side of the reaction. But the students could not answer the questions requiring understanding of both forward and reverse reactions as well. Overall, there was a little high correlation between concepts on chemical reaction rates and concepts on chemical equilibrium in high school students. Especially, high school students with little understanding of reverse reaction rates did not understand that chemical equilibrium is a dynamic equilibrium. Also, high school students with little understanding of the collision mechanism regarding chemical reaction rates did not understand the effect of concentration and catalyst factors on chemical equilibrium. And the correlation between concepts on chemical reaction rates and concepts on chemical equilibrium related to concentration and catalyst factors was low. In conclusion, the formation of scientific concepts on chemical reactions rates can decrease misconceptions on chemical equilibrium. Also the teaching-learning method limited to one side of a reaction can cause difficulty in forming the concepts on chemical dynamic equilibrium. Therefore, the development of a teaching-learning method which covers both the forward and reverse reactions can be effective in helping students form the concepts on chemical equilibrium.

Science High School Students' Understandings on Chemical Cells : In Relation to Chemical Equilibrium from the Microscopic Viewpoint at Molecular Level (과학고등학교 학생의 화학 전지에 대한 이해 분석: 분자적 수준의 미시적 관점에서 화학 평형과 연계하여)

  • Kim, Hyun-Jung;Hong, Hun-Gi
    • Journal of the Korean Chemical Society
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    • v.56 no.6
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    • pp.731-738
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    • 2012
  • The purpose of this study is to analyze the understandings of science high school students on the conception of chemical cell in relation to chemical equilibrium from the microscopic viewpoint at molecular level through questionnaires and follow-up interviews. The results show that they have high understandings on the chemical equilibrium states in the electrochemical cell and on the redox reaction taking place simultaneously when a metal electrode is immersed in the metal ion solution. However, they do not fully comprehend the development of electrical potential difference, electron movement, electrode potential measurement in the half-cells, and calculation of the net cell voltage between anode and cathode in the chemical cell because of difficulties in the microscopic understanding the interaction on the interface at the electrode and the electrolyte solution.

Equilibria between Low-spin State ($D_{4h}$) and High-spin State ($O_h$) of the Ni(II)-$N_4$ Complex Ion ($N_4$ : 2,12-dimethyl-3,7,11,17-tetraazabicyclo-11,3,1-heptadeca-1(17),2,11,13,15-pentaene) (Ni(II)-$N_4$ 착이온의 낮은 스핀상태 ($D_{4h}$)와 높은 스핀상태 ($O_h$)간의 평형 ($N_4$ : 2,12-dimethyl-3,7,11,17-tetraazabicyclo-11,3,1-heptadeca-1(17),2,11,13,15-pentaene))

  • Yu-Chul Park;Jong-Chul Byun;Mahn-Su Yu
    • Journal of the Korean Chemical Society
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    • v.33 no.6
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    • pp.607-613
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    • 1989
  • The chemical equilibria of Ni(II)-tetraamine (tetraamine = 2,12-dimethyl-3,7,11,17-tetraazabicyclo-11,3,1-heptadeca-1(17),2,11,13,15-pentaene) complex ion in water, acetonitrile, acetone and nitromethane were investigated using spectrophotometric method, respectively. The equilibria between low-spin ($D_{4h}$) and high-spin ($O_h$) structures of Ni-tetraamine complex ion were presented in water, acetonitrile and acetone, but not in nitromethane. The eqilibrium constants, the reaction enthalpies and the reaction entropies were determined from analysis of the temperature dependence of the electronic spectra. The formation of the triplet species ($O_h$) was found to be exothermic. The solvent and electrolyte effects on the equilibrium constants could be explained by the dielectric constants of solvents and the reaction entropies.

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Numerical Study of Chemical Reaction for Liquid Rocket Propellant Using Equilibrium Constant (평형상수를 이용한 액체로켓 추진제의 화학반응 수치연구)

  • Jang, Yo Han;Lee, Kyun Ho
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.44 no.4
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    • pp.333-342
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    • 2016
  • Liquid rocket propulsion is a system that produces required thrust for satellites and space launch vehicles by using chemical reactions of a liquid fuel and a liquid oxidizer. Monomethylhydrazine/dinitrogen tetroxide, liquid hydrogen/liquid oxygen and RP-1/liquid oxygen are typical combinations of liquid propellants commonly used for the liquid rocket propulsion system. The objective of the present study is to investigate useful design and performance data of liquid rocket engine by conducting a numerical analysis of thermochemical reactions of liquid rocket propellants. For this, final products and chemical compositions of three liquid propellant combinations are calculated using equilibrium constants of major elementary equilibrium reactions when reactants remain in chemical equilibrium state after combustion process. In addition, flame temperature and specific impulse are estimated.

A study on the Gasifier Modeling using a Chemical Equilibrium (화학평형을 이용한 가스화기 모델링에 관한 연구)

  • 정근모;임태훈;오인환;박명호
    • Journal of Energy Engineering
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    • v.2 no.3
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    • pp.276-284
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    • 1993
  • This study is to obtain some basic data which are prerequisite for the conceptual design of gasification process based on entrained-bed type gasifier. The Gibbs free energy minimization method is used to analyze the chemical equilibrium in the gasifier. The modeling results which consider the conventional mass balance and heat balance are compared with the experimental data published by Electric Power Research Institute. The analysis shows that the reaction in a entrained-bed gasifier is influenced mainly by the amount of oxidant, by the temperature of gasifier and by the type of coals.

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Analysis on Variation Mechanism of the Plasma Process Using OES (광진단을 통한 플라즈마 공정 상태 변동 메커니즘 분석)

  • Park, Seol-Hye;Kim, Gon-Ho
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.31-31
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    • 2011
  • 식각, 증착 등의 플라즈마 활용 공정에서 공정 결과들이 예상치 못한 편차를 보이거나 시간에 따른 공정 결과의 드리프트가 발생하는 등의 문제는 공정 수율 향상 뿐 아니라 공정 결과 생산하게 되는 제품의 성능을 결정짓는다는 점에서 중요하다. 그 결과 공정의 이상이 발생 되는 것을 감지하기 위한 다양한 장치 및 알고리즘들이 등장하고 있으나, 현재 공정 상태 변화를 진단하는 것은 공정 장치에서 발생된 신호 변동을 통계적으로 처리하는 수준에 머무르거나 플라즈마 인자들의 값 자체를 진단하는 정도에 그치고 있다. 본 연구에서는, 향후 물리적 해석을 기반으로 한 공정 진단을 위한 알고리즘을 세우는 것을 목표로 하여 공정 결과에 민감하게 영향을 주는 플라즈마 내부 전자의 열평형 상태의 미세한 변동을 감지하고 이를 통하여 공정 결과에 영향을 주게 되는 장치 내 물리적, 화학적 반응들의 변동 메커니즘을 이해하고자 하였다. 외부에서 감지하기 힘들기 때문에 장치 상태에 변동이 없는 것으로 보이지만 실제로는 변동하고 있는 플라즈마의 미세한 상태 변화를 보여줄 수 있는 물리 인자로는 잦은 충돌로 인하여 빠르게 변동에 대응할 수 있는 전자들의 열평형 특성을 살펴보는 것이 적합하다고 판단하여 광신호를 통해 전자 에너지 분포함수를 진단할 수 있는 모델을 수립하였다. 이 모델의 적용 결과를 활용하면 전자들의 열평형이 주변 가스 종의 반응율 변동에 주게 되는 영향을 해석할 수 있다. 실제로 ICP-Oxide Etcher 장치에서 장치 내벽 오염물질 유입 및 공정 부산물의 장치 내 잔여로 인하여 식각율로 표현되는 공정 결과에 최대 6%의 편차가 발생하게 되는 메커니즘을 해석할 수 있었다.

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Acid-Catalyzed Hydrolysis Reaction of Poly(vinyl acetate) (폴리(비닐 아세테이트)의 산촉매 가수분해 반응)

  • Park, Sang-Soo;Yoon, Hi-Sook
    • Polymer(Korea)
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    • v.29 no.3
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    • pp.304-307
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    • 2005
  • The acid-catalyzed hydrolysis reaction of poly(vinyl acetate) (PVAc) in water/acetic acid solution at $35^{circ}C$ was studied at two different solvent compositions. The mole fractions of vinyl acetate (Vac) and vinyl alcohol (VA) during the course of the reaction were determined by NMR, and the equilibrium constant $K_{eq}$ of the reaction was determined using the molar ratio of VAc to VA at the chemical equilibrium. $K_{eq}$ was 0.75 (${\pm}0.01$) when the VAc mole faction at the equilibrium was 0.78 (${\pm}0.01$) and it was 0.69 (${\pm}0.01$) when the VAc mole fraction was 0.57 (${\pm}$0.02). The reaction was found to be a pseudo 1-st order reaction with the rate coefficient at $3.4{\times}10^{-6}/sec$.

펨토초 적외선 분광법

  • 김성흔;임만호
    • Optical Science and Technology
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    • v.8 no.3
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    • pp.18-25
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    • 2004
  • 왜 펨토초 적외선 분광법인가\ulcorner 분광학이란 빛과 물질의 상호작용을 이용하여 물질에 대한 정보를 얻어내는 학문이다. 평형상태에 있는 물질을 구성하는 분자의 성질을 얻어내기 위해서는 보통의 분광학이 이용되지만 변화하거나 움직이고 있는 분자의 특성을 밝혀내기 위해서는 시분해 분광법이 주로 사용된다. 분자의 변화를 수반하는 화학적 변화는 거시세계에서는 상상을 초월할 정도로 매우 빨리 일어난다. (중략)

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