• Title/Summary/Keyword: Porous silica gel

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Phase Equilibria of Ethane and Propane Hydrates in Porous Media (다공성 매질에서 에탄 및 프로판의 가스 하이드레이트 상평형)

  • Lee, Seung-Min;Cha, In-Uk;Lee, Ju-Dong;Seo, Yong-Won
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.182-185
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    • 2008
  • 최근 새로운 천연가스 수송/저장법으로 가스 하이드레이트 형성법이 주목받고 있다.본 연구에서는 천연가스의 저장 매체로 다공성 매질인 실리카 젤을 사용하였다. 다공성 실리카 젤을 사용할 경우 물과 기체의 접촉면적을 극대화 시킬 수 있어 가스하이드레이로의 전환율을 높일 수 있다. 본 연구에서는 천연가스 주성분인 에탄과 프로판 기체를 사용하였으며, 기공의 직경이 각각 6.0 nm, 15.0 nm, 30.0 nm, 100.0 nm의 다공성 실리카 젤을 사용하였다. 에탄은 270 $\sim$ 285 K의 온도범위와 9 $\sim$ 25 bar의 압력범위, 프로판은 260 $\sim$ 280 K의 온도범위와 1.8 $\sim$ 2.8 bar의 압력범위에서 기공 크기의 분포를 고려하여 하이드레이트(H)-물($L_W$)-기상(V)의 3상 평형점을 측정하였다. 측정 결과 기공의 크기가 작아질수록 각각의 벌크 상태의 에탄 및 프로판 하이드레이트에 비해 하이드레이트의 평형조건이 온도는 낮아지고 압력이 높아지는 저해효과가 커짐을 알 수 있었다. 천연가스 수송/저장으로서 응용을 고려할 경우 저해효과가 적은 100.0 nm이상의 다공성 실리카 젤을 사용하는 것이 적절할 것으로 사료된다. 본 연구에서 얻어진 결과는 천연가스 수송/저장뿐만 아니라 심해저 천연가스 개발, 이산화탄소 심해저장 등의 가스 하이드레이트 용용 연구에도 유용한 기초 자료가 될 것이다.

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RED-GINSENG OF GLYCOSIDES (홍삼의 배당체)

  • Matsuura Hiromichi;Kasai Ryoji;Morita Toshinobu;Saruwatari Yuhichiro;Kunihiro Kazuo;Fuwa Tohru;Tanaka Osamu
    • Proceedings of the Ginseng society Conference
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    • 1984.09a
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    • pp.153-158
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    • 1984
  • From water extract of red ginseng, two new-type glucosides, $A:\;C_{12}H_{16}O_8\;and\;B:\;C_9H_{16}\;O_7,$ were isolated by fractionation with highly porous polymer ollowed by chromatography on silica gel in yields of 0.04 and $0.16\%,$ respectivley. The structures of A and B were elucidated by means of NMR and MS. Neither glucosides were detected in the extract of white ginseng and the mechanism of formation of A and B during the process of steaming will be discussed. The isolation and identification of saponins of corms (head of the root) of red ginseng are also reported.

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Synthesis and Characterization of Porous Poly(ε-caprolactone)/Silica Nanocomposites (다공성 폴리(ε-카프로락톤)/실리카 복합체의 제조 및 특성평가)

  • Son, Siwon;Choi, Ji-Eun;Cho, Hun;Kang, DaeJun;Lee, Deuk Yong;Kim, Jin-Tae;Jang, Ju-Woong
    • Polymer(Korea)
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    • v.39 no.2
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    • pp.323-328
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    • 2015
  • Poly(${\varepsilon}$-caprolactone) (PCL) nanofibers and PCL/silica membranes were synthesized by sol-gel derived electrospinning and casting, respectively. Smooth PCL nanofibers were obtained from the precursor containing N,N-dimethylformamide (DMF). PCL/silica membranes were prepared by varying the tetraethyl orthosilicate (TEOS) contents from 0 to 40 vol% to investigate the effect of silica addition on mechanical properties and cytotoxicity of the membranes. Although the strength of the membranes decreased from 12 to 8 MPa with increasing the silica content, the strength remained almost constant 7 weeks after dipping in phosphate buffered saline solution (PBS). The strength reduction was attributed to the presence of a patterned surface pores and micro-pores present in the walls between pores. The crystal structure of the membranes was orthorhombic and the crystallite size decreased from 57 to 18 nm with increasing the silica content. From the agar overlay test, the PCL/silica membranes exhibited neither deformation and discoloration nor lysis of L-929 fibroblast cells.

Synthesis of Polyimide Crosslinked Silica-based Aerogel with Enhanced Mechanical Properties and Its Physico-chemical Properties (폴리이미드 가교로 기계적 강도가 향상된 실리카 기반 에어로겔의 합성 및 물리화학적 특성 분석)

  • Kim, Jiseung;Choi, Haryeong;Kim, Taehee;Lee, Wonjun;Lee, Hong-Sub
    • Journal of the Microelectronics and Packaging Society
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    • v.29 no.4
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    • pp.9-14
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    • 2022
  • Silica aerogel is a porous material with a very low density and high specific surface area. Still, its application is limited due to its weak mechanical properties due to structural features. To solve this problem, a method of complexing it with various polymers has been proposed. We synthesized polyimide cross-linked silica aerogel by the sol-gel process to obtain high mechanical properties. Tetraethyl orthosilicate (TEOS) was used as a precursor to make silica aerogel, and 3- aminopropyltriethoxysilane (APTES) was used as a coupling agent for cross-linking polyimide. Polyimide was synthesized using pyromellitic dianhydride and 3,5-diaminobenzoic acid, and mechanical properties were improved by crosslinking polyimide with 10 repeating units in the polyimide chain using the reaction formula ${\frac{n_1}{n_2}}={\frac{n}{n+1}}$ To realize silica aerogel, polyimide having various weight ratios was added before gelation, resulting in a 19-fold or greater increase in maximum compressive strength compared to pure silica aerogel. From this study, an enhancement of silica aerogel could be enhanced through polymer cross-linking bonds.

Stability of PS Opals in Supercritical Carbon Dioxide and Synthesis of Silica Inverse Opals

  • Yu, Hye-Min;Kim, Ah-Ram;Moon, Jun-Hyuk;Lim, Jong-Sung;Choi, Kyu-Yong
    • Bulletin of the Korean Chemical Society
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    • v.32 no.7
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    • pp.2178-2182
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    • 2011
  • Recently, the synthesis of ordered macroporous materials has received much attention due to its potential use as photonic band gap materials.$^1$ In this study, we have used the three-dimensional (3D) latex array template impregnated with benzenesulfonic acid (BSA), which is capable of catalyzing the reaction using tetraethyl orthosilicate (TEOS) as a precursor and distilled water. The polystyrene (PS) templates were reacted with TEOS in $scCO_2$ at 40 $^{\circ}C$ and at 80 bar. In the reactor, TEOS was filtrated into the PS particle lattice. After the reaction, porous silica materials were obtained by calcinations of the template. The stability test of the PS template in pure $CO_2$ was conducted before the main experiment. Scanning electron microscopy (SEM) images showed that the reaction in $scCO_2$ takes place only on the particle surface. This new method using $scCO_2$ has advantages over conventional sol-gel processes in its capability to control the fluid properties such as viscosity and interfacial tension. It has been found that the reaction in $scCO_2$ occurs only on the particle surface, making the proposed technique as more rapid and sustainable method of synthesizing inverse opal materials than conventional coating processes in the liquid phase and in the vapor phase.

Fabrication of Anorthite for Low-Firing Ceramic Substrate by PVA Steric-Entrapment Route (폴리머 고착공정을 통한 저온소성기판용 Anorthite의 제조)

  • Kim, Gwang-Seok;Lee, Chung-Hyo;Lee, Sang-Jin
    • Korean Journal of Materials Research
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    • v.12 no.8
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    • pp.595-599
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    • 2002
  • A homogeneous and stable, amorphous-type, anorthite (CaO $Al_2$$O_3$ $2SiO_2$)powder was synthesized by an organic-inorganic steric entrapment route. Polyvinyl alcohol ( PVA) was used as an organic carrier for the precursor ceramic gel. The PVA content, its degree of polymerization and type of silica sol had a significant influence on the calcination and crystallization behavior of the precursors. For densifiction and crystallization at low temperature, porous and soft, amorphous-type anorthite powder was planetary milled for 20h. The milled powder crystallized to stable anorthite phase and densified to a relative density of 94% below $1000^{\circ}C$. In the development of crystalline phases of the planetary milled powder, omisteinbergite phase was unusually observed at $900^{\circ}C$, and then anorthite was observed at $950^{\circ}C$. The sintered anorthite had a thermal expansion coefficient of $4.6$\times$10^{-6}$ /$^{\circ}C$ and a dielectric constant of 7.5 at 1 MHz. Finally, the anorthite synthesized by the new process is expected to be an useful material for low-firing ceramic substrate.

Preparation of porous silica gel powders from sodium silicates

  • 장감용;전영관;임광일;이광희
    • Proceedings of the Korea Association of Crystal Growth Conference
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    • 1996.06b
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    • pp.29-53
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    • 1996
  • 다공성 실리카 게 분말은 저밀도, 고비표면적의 특성을 가지며 물리적, 화학적 성질이 우수하여 필름의 점착방지제, 페인트의 소광제, 맥주의 흡착제, 촉매의 담지체등 산업전반에 걸쳐 여러용도로 사용되고 있다. 이러한 다공성 실리카 겔 분말은 고상법, 기상법, 액상법등으로 제조할 수 있으며, 이 중에서 sodium silicate를 원료로 하는 액상공정은 다공성의 제어가 용이하고, 공정이 간단하며, 고순도의 균질한 실리카를 얻을 수 있는 방법으로 많이 사용되고 있다. 본 연구에서는 액상법(sol-gel method)를 사용하여 점착방지제, 소광제 등으로 사용되는 다공성 실리카 겔 미분말의 개발에 초점을 두어 연구하였다. 그리고, 겔 분말의 다공성 제어를 위하여 공정 각 단계에서의 겔 내부의 구조의 변화에 대한 연구와 함께 수화겔의 숙성이 기공특성에 미치는 영향, 건조조건의 기공특성에 대한 영향 등을 살펴보았다. 다공성 실리카 겔 미분말은 다음과 같은 공정에 의해 제조되었다. sodium silicate를 황산과 반응시켜 겔화하고 추가의 황산을 투입하여 미반응분의 Na를 제거한 후 pH 7이상의 알카리 영역에서 숙성하여 다공성을 지닌 실리카 수화겔을 제조하였다. 수화겔의 탈수, 세척, 건조 공정을 거쳐 건조겔을 제조하고, 1-20$\mu\textrm{m}$의 크기로 분쇄하여 최종 제품을 얻을 수 있었다. 최종 다공성 실리카 겔 분말은 비표면적 200-700$m^2$/g, 기공부피 0.5-2.5cc/g, 평균 입경 3-5$\mu\textrm{m}$, 백색도 95% 이상의 물성을 보였다. sodium silicate와 황산의 겔화 반응에 의해 생성된 수화겔은 수 nm크기의 일차입자들의 연속적인 network로이루어져 있으며, 일차입자크기가 너무 작기 때문에 내부의 기공들은 별로 존재하지 않는 상태이다. 2차 주가황산 투입에 의해 미반응의 알카리 이온들을 중화, 제거시킬 수 있으며, 겔의 다공성을 좌우하는 숙성단계에서 숙성 pH, 온도, 시간등의 인자에 의해 수화겔의 기공특성을 제어할 수 있다. pH 7이상에서 실리카의 용해도가 크고, 용해도의 입자크기 의존성이 크므로, 일자입자는 Ostwald-ripening에 의해 계속 성장할 수 있으며, 이때, 입자의 성장은 숙성 온도와 시간에 의존한다. 탈수, 세척공정에 의해 가용성 염인 Na2SO4를 제거하고, 건조조건을 변화시킴으로써 기공부피를 증가시키는 것이 가능하였으며, Fast drying을 사용하여 점착방지제에 적합한 기공부피를 갖는 실리카 건조겔을 제조할 수 있었다.

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Study of Adhesion Phenomena of Alkoxysilane-type Consolidants on Fresh Granites (알콕시 실란계 석재 강화제의 화강암 점착 특성 연구)

  • Kim, Eun-Kyung;Son, Seung-Hwan;Won, Jong-Ok;Kim, Jeong-Jin;Kim, Sa-Dug
    • Journal of Conservation Science
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    • v.23
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    • pp.1-10
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    • 2008
  • Consolidants based on tetraethoxysilane (TEOS) such as alkoxysilanes have been widely used for the consolidation of decaying stone heritages. Low-viscosity alkoxysilanes penetrate inside the decaying stone and polymerize within the porous structure of the decaying stone, significantly increasing the cohesion of the material. However, TEOS-based consolidants suffer from practical drawbacks, such as crack formation of the gel during the drying phase due to the developed capillary force, which is typical for TEOS-based consolidants. We prepared new consolidants TEOS-based consolidants containing flexible (3-glycidoxypropyl)trimethoxysilane (GPTMS) and silica nanoparticles (or polyhedral oligomeric silsesquioxanes (POSS)) in order to reduce capillary force development during gel drying. Since the consolidants should have a good interaction with the component of the stone in order to connect the isolate grains of decaying stone, the adhesion interaction of the developed consolidants on the surface of the granite was macroscopically investigated by the ISO 2409 cross cutting test. The adhesion interaction decreased with the addition of silica nanoparticle and POSS while it increased with the addition of GPTMS in TEOS solution.

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3-Dimensional ${\mu}m$-Scale Pore Structures of Porous Earth Materials: NMR Micro-imaging Study (지구물질의 마이크로미터 단위의 삼차원 공극 구조 규명: 핵자기공명 현미영상 연구)

  • Lee, Bum-Han;Lee, Sung-Keun
    • Journal of the Mineralogical Society of Korea
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    • v.22 no.4
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    • pp.313-324
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    • 2009
  • We explore the effect of particle shape and size on 3-dimensional (3D) network and pore structure of porous earth materials composed of glass beads and silica gel using NMR micro-imaging in order to gain better insights into relationship between structure and the corresponding hydrologic and seismological properties. The 3D micro-imaging data for the model porous networks show that the specific surface area, porosity, and permeability range from 2.5 to $9.6\;mm^2/mm^3$, from 0.21 to 0.38, and from 11.6 to 892.3 D (Darcy), respectively, which are typical values for unconsolidated sands. The relationships among specific surface area, porosity, and permeability of the porous media are relatively well explained with the Kozeny equation. Cube counting fractal dimension analysis shows that fractal dimension increases from ~2.5-2.6 to 3.0 with increasing specific surface area from 2.5 to $9.6\;mm^2/mm^3$, with the data also suggesting the effect of porosity. Specific surface area, porosity, permeability, and cube counting fractal dimension for the natural mongolian sandstone are $0.33\;mm^2/mm^3$, 0.017, 30.9 mD, and 1.59, respectively. The current results highlight that NMR micro-imaging, together with detailed statistical analyses can be useful to characterize 3D pore structures of various porous earth materials and be potentially effective in accounting for transport properties and seismic wave velocity and attenuation of diverse porous media in earth crust and interiors.