• Title/Summary/Keyword: 분리층

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MEIS를 이용한 Cu3Au(100)의 Surface Induced disorder 직접관찰

  • 오두환;강희재;채근화;김현경;문대원
    • Proceedings of the Korean Vacuum Society Conference
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    • 1999.07a
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    • pp.179-179
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    • 1999
  • Cu3AU(100) 단결정은 fcc 구조를 가지고 있으며 (100)면은 Cu와 Au가 1:1로 존재하고 가운데(200)면은 Cu만 존재한다. 따라서 Au 층은 (100)면에서만 존재하여 각 Au층은 서로 0.5nm 떨어져 있다. 이와 같은 Cu3Au(100) 단결정을 MEIS(Medium Energy Ion Scattering Spectroscopy) 실험 장비를 사용하여 0.35nm 떨어져 있는 Single unit cell의 윗면과 아래면, 즉 첫 층의 Au와 셋째층의 Au의 층분리를 통해서, 온도 변화에 따른 Cu3Au(100) 단결정의 표면 물리적 현상인 surface induced disorder을 밝혀내고자 한다. 우선 두 Au층의 분리 시도는 수소이온을 이용한 실험 조건에서는 extremely glancing exit angle 등 극한의 산란조거에서도 성공하지 못하였다. 깊이 분해능을 정해주는 electronic energy loss를 극대화하기 위해 수소이온이 아닌 질소 이온을 사용하여 energy spectra를 측정해 본 결과 아래 그림에서와 같이 표면 Au 층과 표면 셋째 Au층을 구분할 수 있었다. <110>으로 align된 조건에서는 셋째층의 Au 원자들이 완전히 shadow cone 내부에 존재하여 관측되지 않지만 9.75$^{\circ}$ tilt 한 경우 셋째층의 Au 원자들이 shadow cone 바깥으로 나오게 되어 그림에서와 같이 첫째 층과 셋째 층이 확실히 분리되어 측정되었다. 이를 바탕을 Cu3Au(100)의 온도변화에 다른 order disorder and segregation 현상을 측정하였다. ordered Cu3Au(100)은 28$0^{\circ}C$ 근처에서 surface층이 먼저 disordered상으로 바뀌는 surface induced disorder 현상이 일어나고 bulk transition 온도 39$0^{\circ}C$ 이하에서 R.T으로 온도를 낮추면 본래의 ordered 구조로 되돌아간다. 하지만 bulk transition 온도를 지나면 order-disorder transition이 비가역적이고 segregation 현상이 일어난다.

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Experimental Study on Segregated Layers of Materials and Compressive Strength of Concrete for Pretensioned Spun High Strength Concrete Pile (PHC 파일의 압축강도와 재료분리층에 대한 실험연구)

  • 이성로;강성수;유성원
    • Journal of the Korea Concrete Institute
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    • v.13 no.1
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    • pp.16-22
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    • 2001
  • Pretensioned spun high strength concrete (PHC) pile has to be quality-controlled and provided an adequate concrete cover to assure high load carrying capacity, impact resistance, economy, and durability. During spun pre-casting, the pile section is divided into several segregated layers such as laitance, paste, mortar, and concrete layers. Greater the thickness of segregated layers, more difficult it is to guarantee the capacity and the durability of PHC pile. The experimental study was performed to investigate the effects of centrifugal condition on the segregated layers of materials and the compressive strength of concrete for PHC pile. The considering factors in the test were centrifugal time and magnitude of centrifugal force. These factors have been found to have greater influence on the segregation than the concrete strength. The moderate centrifugal condition has to be considered to maintain quality assurance in the production of PHC pile, especially to provide the adequate concrete cover over its tendons.

Improvement of Pervaporative Water Flux of Mordenite Zeolite Membrane by Controlling Membrane Thickness (분리막 두께 조절에 의한 모데나이트 제올라이트 분리막의 투과증발 물 투과유속 증진 연구)

  • Yoon, Byung-jin;Kim, Young-mu;Lee, Du-Hyoung;Cho, Churl-Hee
    • Membrane Journal
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    • v.29 no.5
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    • pp.263-275
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    • 2019
  • In the present study, thickness of MOR zeolite membranes was controlled by changing seed size, seeding amount, and aging time of hydrothermal solution, and then effect of membrane thickness on pervaporative ethanol dehydration for 90 wt.% ethanol-water mixture was investigated. First, nanosize MOR zeolite seeds with a diameter of 20 to 30 nm was successfully prepared by planetary milling a laboratory synthesized MOR zeolites and the coating amount was controlled by seed concentration and infiltration volume of coating solution during vacuum-assisted seeding. As seeding amount decreased, membrane thickness was reduced up to around $4{\mu}m$. The MOR zeolite membrane having a thickness of $4{\mu}m$ showed a water/ethanol separation factor of 760 and water flux of $1.0kg/m^2h$. The excellent water flux was due to the reduced membrane thickness which was derived from the nanosize seed. Therefore, it could be concluded that membrane thickness control by using nanosize seed can be a crucial factor to improve pervaporative water flux of MOR zeolite membrane.

Effect of the pH Value of Seed Coating Solution on Microstructure of Silicalite-1 Zeolite Separation Layer Grown on α-Alumina Support (종결정 코팅용액 pH 값이 α-알루미나 지지체 표면에 성장하는 Silicalite-1 제올라이트 분리층의 미세구조에 미치는 영향)

  • Hu, Sigui;Kim, Min-Zy;Lee, Du-Hyoung;Sharma, Pankaj;Han, Moon-Hee;Cho, Churl-Hee
    • Membrane Journal
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    • v.25 no.5
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    • pp.422-430
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    • 2015
  • The present study announces that the pH value of seed coating solution makes a significant effect on the microstructure of silicalite-1 zeolite layer formed on ${\alpha}$-alumina support. Seed with an average diameter of 75 nm was dispersed in ethanol to prepare three kinds of seed coating solutions with different pH values, and dip-coated on the support. The pH value was controlled to be 2.2, 7.0, and 9.3, respectively. In the secondary growth process, pH 7 seed solution resulted an uniform, 3 to $4{\mu}m$ thick, completely covered, and 100 nm grained silicalite-1 zeolite separation layer. The uniformity and completeness were explained by a uniform, closely packed, multi-layered, and completely covered seed coating in the pH 7 condition. In the condition, ${\alpha}$-alumina support and seed are oppositely charged: support is positively charged (8.4 mV) and seed, negatively (-1.7 mV). The opposite charging induced a strong electrostatic attraction between seed and support, which made the good seed coating state. On the other hand, pH 2.2 and pH 9.3 seed solutions resulted non-uniform, partially covered, and around $1{\mu}m$ grained zeolite separation layer, since seed and support are the same sign charged in the conditions. The same sign charging induced a strong electrostatic repulsion between seed and support which caused a low coverage of seed. It could be concluded that the pH value of seed coating solution is a key parameter to determine the microstructure of silicalite-1 zeolite separation layer.

Applying Aqueous Two Phase Systems to Multi-layer Cosmetics (다중 층 화장료에서 수성 이상계의 응용)

  • Hong, Junki;You, Jaewon;Yoo, Jangyung;Nam, Seungok;Lee, Sanggil;Pyo, Hyeongbae
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.39 no.2
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    • pp.83-88
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    • 2013
  • The aqueous two phase system has biocompatibility, because it is physically separated into an immiscible liquid multi-layer induced by incompatibility among hydrophilic components dissolved in the water phase. we have applied this principle to aqueous multi-layer liquid cosmetics and select two representative systems. What it was experimentally obtained was the phase diagrams including a binodal curve, a critical point, tie lines of concentration and tie curves of phase separating volume ratio and phase separating time. From the phase diagrams, we were able to observe existence of the optimum condition to prepare the aqueous multi-layer cosmetics for the systems.

팔라듐 합금 수소 분리막의 전처리에 관한 연구

  • Gang, Seung-Min;An, Hyo-Seon;Sin, Yong-Geon;Im, Seul-Gi;Kim, Dong-Won
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.197-197
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    • 2011
  • 고온 스퍼터 공정과 구리 리플로우 공정을 통해 다공성 니켈 지지체에 팔라듐-구리-니켈 삼원계 합금 수소 분리막을 제조하였다. 그러나 스퍼터와 같은 물리적 증착법은 주로 주상정 형태로 증착되기 때문에 다공성 니켈 지지체 표면의 수마이크론 내외의 기공이 존재할 경우 다공성 니켈 지지체에 기인한 많은 기공들 때문에 스퍼터 증착에 영향을 주어 수소 분리막 표면에 기공들이 존재하게 된다. 이를 방지하고 균일한 증착이 이루어지도록 다공성 지지체 표면의 전처리 공정이 필요하다. 본 연구에서는 스퍼터 코팅에 의한 균일한 팔라듐 금속층 형성하고 표면에 미세기공이 없는 수소 분리막을 제조하기 위해 다공성 니켈 지지체를 니켈도금, 알루미나 분말 주입 및 미세연마 전처리 공정을 통하여 다공성 니켈 지지체의 표면기공들을 매립하여 치밀한 팔라듐 합금 층을 형성하였다. 전처리를 하지 않은 다공성 니켈 지지체는 팔라듐 및 구리의 고온 스퍼터 증착 및 구리 리플로우 공정에 의해 표면 기공을 막을 수가 없었고 수소분리기능이 없어 수소 분리막으로 역할을 하지 못했다. Al2O3 분말 주입 전처리 공정을 한 다공성 니켈 지지체에 팔라듐 및 구리 고온 스퍼터 증착과 구리 리플로우 공정을 이용하여 제조된 수소 분리막은 다공성 니켈 지지체에 기인한 기공을 메우기 위해서 팔라듐 합금 층이 두꺼워지는 어려움이 있었다. 니켈도금 전처리 공정을 한 다공성 니켈 지지체에 형성한 수소 분리막은 우수한 선택도를 가졌으나 도금 전처리에 사용된 $2{\mu}m$ 두께의 니켈층이 수소의 확산을 방해하는 저항막 역할을 하여 수소 투과도가 3.96 $ml{\cdot}cm-2{\cdot}min-1{\cdot}atm-1$으로 낮게 나타났다. 미세연마 전처리 공정을 한 다공성 니켈 지지체에 형성한 수소 분리막 역시 우수한 수소 선택도를 가졌으며, 수소의 확산을 방해하는 저항막이 존재하지 않아 13.2 $ml{\cdot}cm-2{\cdot}min-1{\cdot}atm-1$의 우수한 수소 투과도를 나타내었다.

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상전이법에 의한 Carboxylated poly(phenylene oxide) 역삼투 분리막의 제조 및 투과 특성

  • 김제영;이제흔;김성철
    • Proceedings of the Membrane Society of Korea Conference
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    • 1994.10a
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    • pp.64-65
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    • 1994
  • 근래 환경 문제의 중요성이 크게 대두되면서 여러 제조 공정에서 방출되는 폐수등을 처리하는데 필요한 내구성이나, 내미생물성, 내약품성이 우수한 분리막 재료에 대한 연구가 진행되고 있다. 내구성이 우수한 역삼투막 재료를 얻기 위한 방법의 하나로 엔지니어링 플라스틱을 친수화시키는 방법이 개발되어 왔다. 특히 PPO (poly(2-6-dimethyl-1,4-phenylene oxide))로 만들어진 분리막은 내산화성이 우수하고 내구성이 뛰어나다고 알려져왔고 본 연구에서는 PPO에 carboxyl기를 도입하여 친수성을 부여하고, 상전이법을 이용하여 얇은 표피층이 선택성을 높이고 다공성 구조가 표피층을 지지하도록 만든 비대칭성 구조의 분리막을 제조하고 그 투과특성을 살펴보았다.

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Development of Solid Separator for Selective Solid Circulation in Two-interconnected Fluidized Beds System (2탑 유동층 시스템에서 선택적 고체순환을 위한 고체분리기 개발)

  • Ryu, Ho-Jung;Park, Young Cheol;Lee, Seung-Yong;Kim, Hong-Ki
    • Korean Chemical Engineering Research
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    • v.47 no.2
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    • pp.195-202
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    • 2009
  • As a basic research of developing two-interconnected fluidized beds system for selective solid circulation, a solid separator was developed to separate fine and coarse particles by means of particle size difference with particle size separation system equipped with metal screen. The effects of gas velocity, height of solid separator, and separation area on the solid separation rate were investigated as well. The solid separation rate increased as the gas velocity, height of solid separator, and separation area increased. As the gas velocity and height of the solid separator increased, the variation of the solid separation rate was consistent with that of bubble size. Consequently, coarse($212{\sim}300{\mu}m$) and fine($63{\sim}106{\mu}m$) particles were separated using the solid separator and the solid separation rate was ranged from 4.4 to 127 g/min. We also proposed two interconnenced fluidized beds system for sorption enhanced water-gas shift process equipped with the developed solid separator.

Electron Microscopical Observation of Transglutaminase-treated Ultra High Temperature Milk Sedimiment (Transglutaminase로 처리한 초고온 살균유 침전물의 전자현미경적 관찰)

  • Moon, Jeong-Han;Hong, Youn-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.33 no.8
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    • pp.1359-1366
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    • 2004
  • Ultra high temperature treated (UHT) skim milk and colloidal calcium phosphate-free skim milk were treated with microbial transglutaminase (TGase), ultracentrifuged at various rates, lyophilized, and observed for morphological properties with a scanning electron microscope (SEM). UHT skim milk showed small holes of associated micelles at lower centrifugal rates, and became thick and irregular, and fine particles were associated regularly at higher centrifugal rates. When UHT skim milk with TGase was incubated for 1 hour, casein micelles aggregated and broadened as centrifugation rate increased. When UHT skim milk with TGase was incubated for 8 hours, casein micelles were associated irregularly to large aggregates and widened. Colloidal calcium phosphate-free skim milk with TGase incubated for 1 hour and separated by two-step centrifugation showed aggregated lump, while the milk incubated for 8 hours with TGase was associated with broadened, compact, and regular layers as the centrifugation rate increased. Such phenomena were caused by heat treatment, protein crosslinking reaction catalyzed by TGase and conformational changes of casein molecules, and could be dependent on reaction time, temperature and ultracentrifugation rate.

The Effect of LSC/GDC (50 : 50 vol%) Active Layers on Oxygen Transport Properties of LSCF/GDC (20 : 80 vol%) Dual-phase Membrane (LSC/GDC (50 : 50 vol%) 활성층이 LSCF/GDC (20 : 80 vol%) 복합 분리막의 산소투과 거동에 미치는 영향)

  • Cha, Da-Som;Yoo, Chung-Yul;Joo, Jong Hoon;Yu, Ji Haeng;Han, Moon-Hee;Cho, Churl-Hee
    • Membrane Journal
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    • v.24 no.5
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    • pp.367-374
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    • 2014
  • In the present study, disc-type LSCF/GDC (20 : 80 vol%) dual-phase membranes having porous LSC/GDC (50 : 50 vol%) active layers were prepared and effect of active layers on oxygen ion transport behavior was investigated. Introduction of active layers improved drastically oxygen flux due to enhanced electron conductivity and oxygen surface exchange activity. As firing temperature of active layer increased from $900^{\circ}C$ to $1000^{\circ}C$, oxygen flux increased due to improved contact between membrane and active layer or between grains of active layer. The enhanced contact would improve oxygen ion and electron transports from active layer to membrane. Also, as thickness of active layer increased from 10 to $20{\mu}m$, oxygen flux decreased since thick active layer rather prevented oxygen molecules diffusing through the pores. And, STF infiltration improved oxygen flux due to enhanced oxygen reduction reaction rate. The experimental data announces that coating and property control of active layer is an effective method to improve oxygen flux of dual-phase oxygen transport membrane.