• 제목/요약/키워드: Microporosity

검색결과 54건 처리시간 0.019초

$H_2O$ 증착법에 의한 알루미나 시멘트 경화체의 기공구조 연구 (A Study on the Pore Structure of Hardened Alumina Cement Pste by Water Vapor Sorption)

  • 임용무;장복기
    • 한국세라믹학회지
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    • 제30권4호
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    • pp.273-278
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    • 1993
  • Using water vapor (de)sorption isotherm, pore structure analyses were performed for hardened cement pastes by a combination of the "MP-method" for the micropores and the "corrected modelless method" for the wide pores. This work was carried out to investigate the pore structure and to understand the microstructural basis of alumina cement developing much higher strength than Portland cement. Alumina cement shows extremely low microporosity and its wide pores are also composed mainlyof pores with very small radii. And the pore structure analysis results are consistent with the high strength property of alumina cement.y of alumina cement.

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활성탄의 기공도와 수소홀착능 사이의 관계 (The Relationships between the Porosity of Activated Carbon and Hydrogen Adsorption Capacity)

  • 진향교
    • 한국수소및신에너지학회논문집
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    • 제14권4호
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    • pp.305-312
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    • 2003
  • A study is presented of the adsorption capacity of a number of different activated carbons for hydrogen at 100 bar aad 298 K. The hydrogen adsorption isotherm was measured by isothermal gravimetric analysis, using a microbalance. The effect of activated carbon's porosity on hydrogen adsorption capacity is surveyed. It is concluded that hydrogen adsorption capacity of activated carbon is lineally increased according to the increase of specific surface area and total pore volume, It seems that microporosity is more contributive than mesoporosity. Most of the adsorbed quantity is due to physical adsorption and chemisorption is negligible, In this work, 0.79 wt.% of hydrogen adsorption capacity is reached.

Adsorption of Ammonia on the Sulfuric Acid Treated ACF

  • Kim, K.H.;Shin, C.S.
    • Carbon letters
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    • 제2권2호
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    • pp.109-112
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    • 2001
  • For the adsorption of ammonia, activated carbon fibers (ACFs) were subjected to sulfuric acid treatment in order to modify the surface functional groups. The surface acid and base value of ACFs were measured using titration and FT-IR spectrometry. SEM was used to investigate the surface morphology. Acid treatments by $H_3PO_4$, $H_2SO_4$, and $HNO_3$ were performed to increase the adsorption capacity of $NH_3$. As a result, Cellulose-based ACF has high adsorption capacity for ammonia. The ammonia removal efficiency of ACF was the maximum which was treated by 15 wt% sulfuric acid at $100^{\circ}C$ for 60 min. The average pore diameter little increased from $19{\AA}$ to $20.8{\AA}$ and the specific surface area of ACF considerably decreased and acid values increased by 15 wt% sulfuric acid treatment. Ammonia reacted with sulfonyl radicals. After adsorption of ammonia, white material was grown on the surface of ACF through the adsorption of ammonia and it was determined to ammonium sulfate.

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Studies on Pyrolysis Behaviour of Banana Stem as Precursor for Porous Carbons

  • Manocha, Satish;Bhagat, Jignesh H.;Manocha, Lalit M.
    • Carbon letters
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    • 제2권2호
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    • pp.91-98
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    • 2001
  • Porous carbons have been prepared from different parts of banana stems using two different routes, viz., by pyrolysing the mass at different temperatures as well as by treating the dried mass with chemicals followed by pyrolysis. The pyrolysis behaviour of all these materials has been studied up to $1000^{\circ}C$. Samples treated with acids exhibit more increase in surface area as compared to those treated with alkalies or salts. Analysis of BET surface area shows that the carbon prepared at low temperature shows mixed porosity, i.e., micro and mesopores. Samples heated to high temperature above $700^{\circ}C$ show decrease in macroporosity and increase in microporosity. Liquid adsorption studies have been made using methylene blue and heavy oil. The activated carbons so prepared exhibit higher oil adsorption mainly in the macro and mesopores.

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$\textrm{CO}_2$ gas를 이용한 탄소섬유의 활성화(ll)-활성탄소섬유의 미세공특성 (Activation of Pitch-based Carbon Fiber on $\textrm{CO}_2$ Gas(ll) -Microporosity of Activated Carbon Fiber)

  • 노재승;서동수
    • 한국재료학회지
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    • 제8권2호
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    • pp.120-125
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    • 1998
  • CO$_{2}$gas중에서 산화된 활성탄소섬유를 77K에서 질소흡착에 의해 흡착등온곡선을 구하였다. 미세공부피와 외부표면적은 t-법으로 구하였으며, 평균기공크기와 기공분포는 Dubinin-Astakhov법으로 구하여 기공발당과정을 고찰하였다. 산화반응 초기(약 40% burn-off까지)에 섬유내부에 발달하는 미세공은 burn-off가 40%를 넘으면 서서히 큰 미세공으로 성장하며, burn-off가 약 60%이상되면 미세기공은 확대 또는 합체되어 점차 중기공으로 성장하는 것으로 관찰되었다. 또한 고온산화반응으로 발달한 기공은 저온에서 생성된 기공보다 크다.

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Low Temperature Adsorption of Hydrogen on Nanoporous Materials

  • Jhung, Sung-Hwa;Yoon, Ji-Woong;Kim, Hye-Kyung;Chang, Jong-San
    • Bulletin of the Korean Chemical Society
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    • 제26권7호
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    • pp.1075-1078
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    • 2005
  • Hydrogen adsorption on various porous materials have been studied with a volumetric method at low temperature in the pressure of 0-760 torr. Their hydrogen uptakes depend at least partly on microporosity rather than total porosity. However, it is also necessary to consider other parameters such as pore size and pore architecture to explain the adsorption capacity. The heat of adsorption and adsorption-desorption-readsorption experiments show that the hydrogen adsorption over the porous materials are composed of physisorption with negligible contribution of chemisorption. Among the porous materials studied in this work, SAPO-34 has the highest adsorption capacity of 160 mL/g at 77 K and 1 atm probably due to high micropore surface area, micropore volume and narrow pore diameter.

Conducting Properties of Polypyrrole Coated Imogolite

  • Lee, Yun-Ha;Kim, Bum-Joong;Yi, Whi-kun;Takahara, Atsushi;Sohn, Dae-Won
    • Bulletin of the Korean Chemical Society
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    • 제27권11호
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    • pp.1815-1818
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    • 2006
  • Imogolite which has chemical composition, $(HO)_3Al_2O_3SiOH$, was synthesized with orthosilicate acid and aluminium chloride at low pH solution. It has extremely large aspect ratio with an external diameter of 2nm and the length of a few micrometers. The high aspect ratio of the imogolite could make the material as the filler for the high strength fiber and as the wire for the electronic applications. Here, Imogolite that derives considerable microporosity from a nanometer-sized tubular structure has been modified with a conducting polymer, polypyrrole. Its bonding and wiring structure were confirmed by IR and TEM. The measured conductivity after modification with polypyrrole increased with polypyrrole thickness at various voltage conditions.

Porosity Development on Activation of Char from Dry and Wet Babbool Wood

  • Manocha, Satish;Chauhan, Vanraj B.;Manocha, L.M.
    • Carbon letters
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    • 제3권3호
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    • pp.133-141
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    • 2002
  • It is well known that the porosity and adsorption capacity in a carbon depends on the nature of precursor, pyrolysis and activation conditions and the ash content. The studies on carbon prepared from the dry and wet babbool wood were under taken to ascertain the effect of initial state of precursor on the development of porosity in the resulting activated carbon. The characterization and adsorption studies carried out shows the presence of mainly mesoporosity in the carbon prepared from dry wood while more of microporosity was observed in the activated carbon prepared from wet wood. The results on porosity in both the cases have been compared and correlated with their processing conditions.

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Coating Immobilization Using Soy Protein Polymers: Technical Concepts and Importance to Quality

  • Hiscock, Donald F.;Merrifield, Thomas B.
    • 펄프종이기술
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    • 제32권5호
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    • pp.60-66
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    • 2000
  • Coating immobilization is the process by which the wet coating applied to paper or paperboard reaches the final form. A coating immobilization point is defined as the solids content reached during drying where no further redistribution of coating materials occurs. Good control of coating immobilization is important in producing coated paper and paperboard with consistent high quality. This paper discusses the technical concepts of how coatings immobilize, and describes the importance of good immobilization control on coating holdout and coating structure. The use of soy protein polymers to modify the coating immobilization point is discussed. Soy proteins, because of their interaction with coating pigments, make a significant contribution to the immobilization characteristics of coastings. This technology gives the formulator options for changing the immobilization point to improve the performance of the coating. The importance of immobilization on casting uniformity, microporosity and sheet qualities is discussed, including binder migration, mottle, gluing, and print quality.

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Al-xSi 합금의 인장특성에 미치는 공정 Si 입자의 파단과 미소기공율의 영향 (Effects of Damage Evolution of Eutectic Si Particle and Microporosity to Tensile Property of Al-xSi Alloys)

  • 이충도
    • 한국주조공학회지
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    • 제41권5호
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    • pp.434-444
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    • 2021
  • 본 연구에서는 미소기공과 Si석출상의 파단으로 구성되는 유효기공 면적분율에 대한 인장특성의 결함민감도 관점에서 Al-Si합금의 인장특성을 공정 Si입자의 분포양상 변화에 대하여 평가하고자 하였다. Al-xSi(x=2,5,8,11)합금의 주방상태 미세조직인 망상구조의 공정 Si입자는 T4처리를 통하여 과립형태로 변형시켰으며, CT분석과 주사전자현미경 관찰을 통하여 미소기공의 분포와 크기를 평가하였다. CT분석과 주사전자현미경의 비교분석을 통하여 인장변형과정에서의 균열성장이 최대 기공율을 포함하는 국부영역에서 발생함을 확인할 수 있었다. 그럼에도 불구하고 이들 분석방법에는 미소기공 인접영역에서의 소성변형집중과 미소기공의 분포양상에 의해 파생되는 실제적인 차이를 포함하기 때문에 정확히 일치된 결과를 얻을 수 없었다. 유효기공 면적분율의 변화에 대한 인장강도와 연신율의 변화는 과립형태보다 망상구조 정출상의 분율변화에 더욱 민감한 의존도를 가진다.