• 제목/요약/키워드: Adsorption behavior

검색결과 489건 처리시간 0.029초

수중 특정 이온의 흡착 특성에 따른 입자의 전기적 거동 변화 양상 (Variation of Electrical Behavior of Particles in Aqueous Environment Depending Upon the Adsorption Characteristics of Specific Ions)

  • 김동수
    • 자원리싸이클링
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    • 제14권6호
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    • pp.60-63
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    • 2005
  • 수중에 존재하는 입자의 표면에 대한 특정 이온의 흡착특성을 흡착에 따른 입자의 PZC 와 IEP 의 변화에 근거하여 해석 가능한 것으로 검토되었다. $Cu^{2+}$와 같이 Chalcopyrite 입자표면에 Specific Adsorption을 형성하는 이온이 수중에 존재하는 경우 입자의 PZC는 낮아지는 것으로 관찰되었으며 이는 양이온의 흡착이 OH-이온의 흡착을 초래하여 새로운 PZC를 형성하기 위해 수중 H+농도의 상승이 요구됨으로 인한 결과로 파악되었다. 그러나, 이와는 반대로 IEP는 높아지는 현상이 나타난 바, 이는 양이온의 흡착으로 인해 입자의 Surface Potential 이 양의 방향으로 상승하여 이를 상쇄하기 위한 pH의 증가가 원인인 것으로 고찰되었다. Non-specific Adsorption 의 경우 입자표면의 Surface Potential 의 변화가 초래되지 않음으로 인해 입자의 PZC 및 IEP 는 변화하지 않는 것으로 파악되었다.

탈수 작용에 따른 몬모릴로나이트의 코발트 흡착 특성 변화 (Changes in Cobalt Adsorption Properties of Montmorillonite by Dehydration)

  • 장영준;김영규
    • 광물과 암석
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    • 제36권2호
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    • pp.107-115
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    • 2023
  • 코발트는 합금산업에서 발생되는 산업 폐기물과 산성광산배수로 자연에 유입될 수 있으며 또한 고준위 방사성 폐기물을 구성하는 방사성 핵종(60Co)기도 하다. 스멕타이트는 이들을 흡착 격리하는데 유용하게 사용될 수 있는 광물이다. 본 연구에서는 기존에 특성이 잘 알려진 스멕타이트 중 The Clay Mineral Society (CMS)의 source clay인 Cheto-type montmorillonite (Cheto-MM)를 사용하여 가열에 의한 탈수 전후 광물의 층간수 존재 여부에 따른 흡착 자리가 코발트 흡착에 미치는 영향을 평가하고, 흡착 속도 및 등온흡착식 모델을 적용하여 Cheto-MM의 코발트에 대한 흡착 기작을 연구하였다. 본 연구 결과 탈수 및 이에 따른 층간 수축에 의해 흡착 특성이 달라지는 것을 확인할 수 있었으며, 코발트는 Cheto-MM의 층 모서리 자리에서의 흡착이 약 38%, 층간 내부에서의 흡착이 약 62%를 차지하는 것으로 확인되었고 Cheto-MM의 코발트 흡착은 층간 내부에 의한 영향이 큰 것으로 판단된다. 이러한 흡착에 있어 흡착 속도 모델을 적용한 결과, Cheto-MM의 코발트 흡착 속도는 pseudo-second-order 모델로 설명되며 농도에 따른 흡착은 Langmuir 등온흡착 모델로 가장 잘 설명되었다. 본 연구는 몬모릴로나이트의 흡착 자리에 따른 코발트의 흡착 양상에 대한 기본지식을 제공하고, 추후 고준위 방사성 폐기물 처분장에서의 스멕타이트의 흡착 거동을 예측하는데 유용하게 사용될 수 있을 것으로 생각된다.

활성슬러지 구성 미생물에 의한 폴리오바이러스의 감소 효과 (Poliovirus Decrease Effect by Activated Sludge Microbes)

  • 김태동;최동혁
    • 한국환경보건학회지
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    • 제32권4호
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    • pp.336-341
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    • 2006
  • The biological wastewater treatment system is known to have an important role in reducing the quantify of enteric virus in water environments. To clarify the roles of activated sludge microbes in decreasing the virus infectivity, the behavior of the virus in bacteria, protozoa, and metazoa was examined by pure or mixed culture system using poliovirus type 1(Lsc, 2ab strain). In the bacterial culture systems, the virus infectivity in the liquid phase decreased by a reversible adsorption of the virus to the bacteria or bacterial flocs. On the other hand, in the protozoa and the metazoa culture systems using T. pyriformis and P. erythrophthalma, respectively, with a variety of bacterial strains as prey, the main virus decrease mechanism of reversible adsorption in early stage was changed to irreversible predation, which was not eluted in this study. The virus decrease was more effective in the P. erythrophthalma culture system, which had high predation and floc forming abilities. However, in the mixed culture system of Z. ramigera and P. erythrophthalma, the more rapid reversible adsorption of virus to Z. ramigera flocs preceded the irreversible predation of P. erythrophthalma.

Magnetic and Temperature-Sensitive Composite Polymer Particles and Adsorption Behavior of Emulsifiers and Trypsin

  • Ahmad, Hasan;Rahman, M.Abdur;Miah, M.A. Jalil;Tauer, Klaus
    • Macromolecular Research
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    • 제16권7호
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    • pp.637-643
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    • 2008
  • A combination of magnetic and temperature-responsive properties in the same polymer composites is expected to increase their potential applications in the biomedical field. Accordingly, micron-sized magnetite/polystyrene/poly(2-dimethylaminoethyl methacrylate-ethyleneglycol dimethacrylate), which are abbreviated as $Fe_3O_4$/PS/P (DM-EGDM) composite polymer particles, were prepared by the seeded copolymerization of DM and EGDM in the presence of magnetite/polystyrene ($Fe_3O_4$/PS) particles. $Fe_3O_4$/PS/P(DM-EGDM) composite particles with magnetic properties showed a temperature-sensitive phase transition at approximately $31^{\circ}C$. The adsorption behavior of the low molecular weight emulsifiers and trypsin (TR) as biomolecules were examined on $Fe_3O_4$/PS/P(DM-EGDM) composite polymer particles at different temperatures. The native conformation of TR was followed by measuring the specific activity under various adsorption conditions. The activity of the adsorbed TR on composite polymer particles was higher than those of the tree TR and TR adsorbed on $Fe_3O_4$/PS particles.

Dyeing Behavior of Silk Dyed with Indigo Leaf Powder Using Reduction and Nonreduction Dyeing and Its Relationship with the Amount of Indigotin and Indirubin Adsorbed in Silk

  • Yoo, Wansong;Ahn, Cheunsoon
    • 한국의류학회지
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    • 제43권5호
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    • pp.753-767
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    • 2019
  • Dyeing behavior of indigo leaf powder was examined in regards to the effect of the amount of pigments on color and dye adsorption for silk dyed by reduction and nonreduction dyeing. The amount of indigotin and indirubin pigments adsorbed in dyed silk was examined by HPLC-DAD analysis. The color of dyed silk showed 7.7BG - 2.7B hue when silk was dyed at $50^{\circ}C$, and 3.5G - 4.9BG when dyed at $70^{\circ}C$. Blue ($b^*$) and green ($a^*$) color decreased as the pH of dyebath increased. When silk was dyed using nonreduction, R (red) and RP (red purple) hue and R hue was more apparent in samples dyed at $90^{\circ}C$. In reduction dyeing, amount of indigotin detected from silk exceeded the amount that was initially contained in the input dye. The amount of indirubin was lower than indirubin that was initially in the powder. In nonreduction dyeing, silk showed a higher amount of indirubin adsorption compared to silk dyed by reduction. The amount of indigotin adsorbed in silk was lower than the amount initially contained in the input dye. The amount of indigotin and indirubin adsorption was primarily dependent upon the dyeing method-reduction or nonreduction along with dyeing temperature and the pH of dyebath.

Sensing Characterization of Metal Oxide Semiconductor-Based Sensor Arrays for Gas Mixtures in Air

  • Jung-Sik Kim
    • 한국재료학회지
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    • 제33권5호
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    • pp.195-204
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    • 2023
  • Micro-electronic gas sensor devices were developed for the detection of carbon monoxide (CO), nitrogen oxides (NOx), ammonia (NH3), and formaldehyde (HCHO), as well as binary mixed-gas systems. Four gas sensing materials for different target gases, Pd-SnO2 for CO, In2O3 for NOx, Ru-WO3 for NH3, and SnO2-ZnO for HCHO, were synthesized using a sol-gel method, and sensor devices were then fabricated using a micro sensor platform. The gas sensing behavior and sensor response to the gas mixture were examined for six mixed gas systems using the experimental data in MEMS gas sensor arrays in sole gases and their mixtures. The gas sensing behavior with the mixed gas system suggests that specific adsorption and selective activation of the adsorption sites might occur in gas mixtures, and allow selectivity for the adsorption of a particular gas. The careful pattern recognition of sensing data obtained by the sensor array made it possible to distinguish a gas species from a gas mixture and to measure its concentration.

Membrane behavior of bentonite-amended compacted clay towards Zn(II) and Pb(II)

  • Tang, Qiang;Katsumi, Takeshi;Inui, Toru;Li, Zhenze
    • Membrane and Water Treatment
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    • 제6권5호
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    • pp.393-409
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    • 2015
  • Zinc and lead pollution are public environmental issues that have attracted lots of attention for a long time. Landfill leachate contains heavy metals, such as Zn(II) and Pb(II), which are usually related to the pollution of groundwater, especially in developing countries. Bentonite has been proven to be effective in enhancing the membrane property of clay, by which landfill liners can have better barrier performance towards the migration of contaminants. In this study, 5% sodium bentonite amended with locally available Fukakusa clay was utilized to evaluate the membrane behavior towards the heavy metals zinc and lead. The chemico-osmotic efficiency coefficient, ${\omega}$, was obtained through Zn(II) and Pb(II) solutions with different concentrations of 0.5, 1, 5, 10, and 50 mM. According to the results, ${\omega}$ continually decreased as the Zn(II) and Pb(II) concentrations increased, which is consistent with the Gouy-Chapman theory. Compared to normal inorganic ions, the membrane behavior towards heavy metal ions was lower. The migration of heavy metal ions was not observed based on experimental results, which can be attributed to the adsorption or ion exchange reaction. The mechanisms of the membrane performance change were discussed with the assistance of XRD patterns, free swelling results, XRF results, and SEM images.

Dissociative adsorption structure of guanine on Ge(100)

  • Youn, Young-Sang;Kim, Do Hwan;Lee, Hye Jin;Kim, Sehun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.109.1-109.1
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    • 2015
  • Understanding the reaction mechanisms and structures underlying the adsorption of biomolecules on semiconductors is important for functionalizing semiconductor surfaces for various bioapplications. Herein, we describe the characteristic behavior of a primary nucleobase adsorbed on the semiconductor Ge(100). The adsorption configuration of guanine, a primary nucleobase found in DNA and RNA, on the semiconductor Ge(100) at an atomic level was investigated using scanning tunneling microscopy (STM) and density functional theory (DFT) calculations. When adsorbed on Ge(100) at room temperature, guanine appears dark in STM images, indicating that the adsorption of guanine on Ge(100) occurs through N-H dissociation. In addition, DFT calculations revealed that "N(1)-H dissociation through an O dative bonded structure" is the most favorable adsorption configuration of all the possible ones. We anticipate that the characterization of guanine adsorbed on Ge(100) will contribute to the development of semiconductor-based biodevices.

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