• 제목/요약/키워드: adsorption resistance

검색결과 194건 처리시간 0.03초

중간주파수에서 위상이동 변화와 Langmuir흡착등온식 사이의 관계 (The Relation between the Phase-Shift Profile for the Intermediate Frequencies and the Langmuir Adsorption Isotherm)

  • 천장호;문경현;조종덕
    • 전기화학회지
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    • 제3권1호
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    • pp.25-30
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    • 2000
  • 다결정 Pt/0.1 M $H_2SO_4$수성 전해질 계면에서 중간주파수 구간의 위상이동 변화와 Langmuir흡착등온식 사이의 관계를 교류임피던스 방법 즉 위상이동 방법을 이용하여 연구 조사하였다. 제안된 계면등가회로는 전해질저항($R_S$), Faraday저항$(R_F)$, 흡착유사용량$(C_\varphi)$의 등가회로 요소($C_P$)의 직렬접속으로 구성된다 지연되는 위상이동$(\varphi)$은 음전위(E) 및 주파수(f)에 따르며, $\varphi=-tan^{-1}[1/2{\pi}f(R_s+R_F)C_p]$이다. 중간주파수(6Hz)에서 위상이동 변화$(\varphi\;vs.\;E)$는 Langmuir흡착등온식$(\theta\;vs.\;E)$의 결정에 적용할 수 있는 실험적인 방법이다. 다결정 $Pt/0.1\;M\;H_2SO_4$ 전해질 계면에서 수소의 흡착평형 상수(K)와 흡착표준자유에너지$({\Delta}G_{ads})$는 각각 $1.8\times10^{-4}$와 21.4kJ/mol이며 과전위 수소흡착(OPD H)에 기인한다.

Immobilization of Thermomyces lanuginosus Xylanase on Aluminum Hydroxide Particles Through Adsorption: Characterization of Immobilized Enzyme

  • Jiang, Ying;Wu, Yue;Li, Huixin
    • Journal of Microbiology and Biotechnology
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    • 제25권12호
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    • pp.2016-2023
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    • 2015
  • Xylanase plays important roles in a broad range of industrial production as a biocatalyst, and its applications commonly require immobilization on supports to enhance its stability. Aluminum hydroxide, a carrier material with high surface area, has the advantages of simple and low-cost preparation and resistance to biodegradation, and can be potentially used as a proper support for xylanase immobilization. In this work, xylanase from Thermomyces lanuginosus was immobilized on two types of aluminum hydroxide particles (gibbsite and amorphous Al(OH)3) through adsorption, and the properties of the adsorbed enzymes were studied. Both particles had considerable adsorptive capacity and affinity for xylanase. Xylanase retained 75% and 64% of the original catalytic activities after adsorption to gibbsite and amorphous Al(OH)3. Both the adsorptions improved pH and thermal stability, lowered activation energy, and extended lifespan of the immobilized enzyme, as compared with the free enzyme. Xylanase adsorbed on gibbsite and amorphous Al(OH)3 retained 71% and 64% of its initial activity, respectively, after being recycled five times. These results indicated that aluminum hydroxides served as good supports for xylanase immobilization. Therefore, the adsorption of xylanase on aluminum hydroxide particles has promising potential for practical production.

Impedance Spectroscopy Studies on Corrosion Inhibition Behavior of Synthesized N,N’-bis(2,4-dihydroxyhydroxybenzaldehyde)-1,3-Propandiimine for API-5L-X65 Steel in HCl Solution

  • Danaee, I.;Bahramipanah, N.;Moradi, S.;Nikmanesh, S.
    • Journal of Electrochemical Science and Technology
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    • 제7권2호
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    • pp.153-160
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    • 2016
  • The inhibition ability of N,N-bis(2,4-dihydroxyhydroxybenzaldehyde)-1,3-Propandiimine (DHBP) as a schiff base against the corrosion of API-5L-X65 steel in 1 M HCl solution was evaluated by electrochemical impedance spectroscopy, potentiodynamic polarization and scanning electron microscopy. Electrochemical impedance studies indicated that DHBP inhibited corrosion by blocking the active corrosion sites. The inhibition efficiency increased with increasing inhibitor concentrations. EIS data was analysed to equivalent circuit model and showed that the charge transfer resistance of steel increased with increasing inhibitor concentration whilst the double layer capacitance decreased. The adsorption of this compound obeyed the Langmuir adsorption isotherm. Gibbs free energy of adsorption was calculated and indicated that adsorption occurred through physical and spontaneous process. The corrosion inhibition mechanism was studied by potential of zero charge. Polarization studies indicated that DHBP retards both the cathodic and anodic reactions through adsorption on steel surface. Scanning electron microscopy was used to study the steel surface with and without inhibitor.

Effect of octadecylamine concentration on adsorption on carbon steel surface

  • Liu, Canshuai;Lin, Genxian;Sun, Yun;Lu, Jundong;Fang, Jun;Yu, Chun;Chi, Lisheng;Sun, Ke
    • Nuclear Engineering and Technology
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    • 제52권10호
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    • pp.2394-2401
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    • 2020
  • Octadecylamine is an effective film-forming amine that protects carbon steel from corrosion. In the present study, the effect of octadecylamine concentration on adsorption on a carbon steel surface was investigated in anaerobic alkaline solution by using SEM/EDS, TEM and the Materials Studio simulation techniques. TEM morphology observation and EDS elemental detection determine the thicknesses of octadecylamine film on a carbon steel surface, which are confirmed by the in-situ electrochemical impedance spectroscopy measurement and resistance calculation. The Materials Studio simulation reveals the number of octadecylamine film layers at different concentrations. Results obtained in this study indicate that adsorption of octadecylamine film on carbon steel proceeds with the multi-layer adsorption mechanism.

MWCNT 가스센서의 전극 간극 변화에 따른 NOx 가스 검출 특성 (NOx Gas Detection Characteristics of MWCNT Gas Sensor by Electrode Spacing Variation)

  • 김현수;장경욱
    • 한국전기전자재료학회논문지
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    • 제27권10호
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    • pp.668-672
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    • 2014
  • Carbon nanotubes(CNT) has chemical stability and great sensitivity characteristics. In particular, the gas sensor required characteristics such as rapid, selectivity and sensitivity sensor. Therefore, CNT are ideal materials to gas sensor. So, we fabricated the NOx gas sensors of MOS-FET type using the MWCNT (multi-walled carbon nanotube). The fabricated sensor was used to detect the NOx gas for the variation of $V_{gs}$(gate-source voltage) and electrode changed electrode spacing=30, 60, 90[${\mu}m$]. The gas sensor absorbed with the NOx gas molecules showed the decrease of resistance, and the sensitivity of sensor was increased by magnification of electrode spacing. Furthermore, when the voltage($V_{gs}$) was applied to the gas sensor, the decrease in resistance was increased. On the other hand, the sensor sensitivity for the injection of NOx gas was the highest value at the electrode spacing $90[{\mu}m]$. We also obtained the adsorption energy($U_a$) using the Arrhenius plots by the reduction of resistance due to the voltage variations. As a result, we obtained that the adsorption energy was increased with the increment of the applied voltages.

합성수산화인회석과 법랑질에 대한 불화물의 도포효과에 관한 비교연구 (Effect of Topical Fluoride Agents on Synthetic Hydroxyapatite and Enamel)

  • Sang-Dae Lee;Suk-Jin Hong;Woo-Cheon Kee
    • Journal of Oral Medicine and Pain
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    • 제21권1호
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    • pp.115-122
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    • 1996
  • This study was performed to compare the anticarious effect of the different fluoride adsorbed(Naf, $NH_4F, Na_2PO_3F, SnF_2, TiF_4$) on synthetic hydroxyapatite and enamel. The amount of fluoride adsorbed in synthetic hydroxyapatite under various concentrations and pH of these fluoride solutions was measured by specific electrode. Enamel samples treated with 5 kinds of 1,000ppm fluoride solutions for 10 minutes were evaluated for fluoride uptake and enamel soubility. The results were as follows. 1. The adsorption of fluoride on synthetic hydroxyapatite increased gradually by the concentration of the fluoride solution, In 1,000ppm fluoride solution, the adsorption of fluoride on synthetic hydroxyapatite treated with NH4F and NaF solutions at pH 4.0 was relatively higher than that of other fluoride solutions. In NH4F and NaF solutions, the adsorption of fluoride on powdered enamel was higher at pH 4.0 solution than at pH 7.0 solution. 2. Fluoride uptake from NH4F solution was relatively high. But that from $Na_2PO_3F$ solution was lower than those from other fluoride solutions. 3. Fluoride solutions were significantly effective on enhancing acid resistance. $NH_4F$ solution was relatively more effective than others on enhancing acid resistance. 4. $SnF_2 and TiF_4$ solutions had the same effect on fluoride adsorption, fluoride uptake, and enamel solubility.

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위상이동 방법에 의한 다결정 $Ir/H_2SO_4$ 수성 전해질 계면에서 과전위 수소흡착에 관한 해석 (An Analysis on the Over-Potentially Deposited Hydrogen at the Polycrystalline $Ir/H_2SO_4$ Aqueous Electrolyte Interface Using the Phase-Shift Method)

  • 천장호;문경현
    • 전기화학회지
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    • 제3권2호
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    • pp.109-114
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    • 2000
  • 다결정 $Ir/H_2SO_4$수성 전해질 계면에서 중간주파수 구간의 위상이동 변화와 Langmuir흡착등온식 사이의 관계를 교류임피던스 방법 즉 위상이동 방법을 이용하여 연구 조사하였다. 간소화된 계면 등가회로는 전해질저항(Rs), Faraday저항$(R_F)$, 흡착유사용량$(C_\phi)$ 등가회로 요소$(C_P)$의 직렬접속으로 구성된다. 음전위(E)에 대한 위상이동$(-\phi)$과 표면피복율$(\theta)$ 변화율$[\Delta(-\phi)/{\Delta}E,\;{\Delta}{\theta}/{\Delta}E]$을 비교 및 제시하였다. 지연되는 위상이동$(-\phi)$은 음전위(E) 및 주파수(f)에 따르며, $\phi=tan^{-1}[1/2{\pi}f(R_s+R_F)C_P]$이다. 중간주파수(1 Hz)에서 위상이동 변화$(-\phi\;vs.\;E)$는 Langmuir흡착등온식 $(\theta\;vs.\;E)$의 결정에 적용할 수 있는 실험적인 방법이다. 다결정 Ir/0.1 M $H_2SO_4$ 전해질 계면에서 수소의 흡착평형상수(K)와 흡착표준자유에너지 $({\Delta}G_{ads})$는 각각 $2.0\times10^{-4}$와 21.1kJ/mol이며 과전위 수소흡착(OPD H)에 기인한다.

고정화제와 고정화된 해조류에 의한 납의 제거 특성 (Removal Characteristics of Lead by Immobilizing Agents and Immobilized Seaweed)

  • 이학성;서정호;서근학
    • 한국환경보건학회지
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    • 제27권1호
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    • pp.83-87
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    • 2001
  • In this study, the characteristics of lead removal by PVA and alginate bead which used widely as immobilizing agents were investigated, and the difference of removal amounts between pure PVA/alginate bead and Sargassum thunbergii immobilized bead was studied. All PVA beads, pure and S. thunbergii immobilized, reached an equilibrium state in about 1 hour, and S. thunbergii immobilized bead adsorbed more lead than pure one. But in the case of alginate beads, they needed much time, about 5 hours, to reach an equilibrium state, and adsorbed lead four times higher than PVA beads. Therefore, it was considered that alginate beads had more mass transfer resistance and function groups which adsorb lead such as hydroxyl, carboxyl and etc. than PVA bead. To examine the continuous usage of alginate beads, the process of adsorption/desorption of lead was conducted repeatedly. As the process proceeded, the amounts of lead adsorption decrease, so it was indicated that the non-desorbed lead from alginate bead at first adsorption/desorption process remained constantly.

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질소흡착법을 사용한 고온 가열 시멘트의 세공구조 측정 (Measurement of the construction structure of hot-heated cement using nitrogen adsorption method)

  • 김민혁;이건철
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 봄 학술논문 발표대회
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    • pp.140-141
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    • 2020
  • Concrete has a lower thermal conductivity or thermal diffusion coefficient compared to other building materials, so it is widely used as fireproof compartment material or refractory material for structures. However, in the event of thermal damage such as fire, cement curing agents and aggregates act differently, resulting in heat generation or deterioration of tissue due to dehydration, resulting in deterioration of physical properties and fire resistance. Therefore, in this study, the processing structure of cement paste is measured through nitrogen absorption method. The test specimen is a cement paste of 40% W/C and is set at 1000 ℃ under heating temperature conditions. As the temperature rose, the micro-pore mass below was reduced based on about 0.01 감소m, but the air gap above that was increased.Thus, in the range of pores measured in nitrogen adsorption, the air mass tended to decrease under high temperature conditions.

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