• 제목/요약/키워드: morphology controlling

검색결과 181건 처리시간 0.026초

작은 풀화재에서의 연기 특성 (Smoke Characteristics of a Small Scale Pool Eire)

  • 이의주;안찬솔;신현준;오광철;이은도
    • 한국화재소방학회논문지
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    • 제19권3호
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    • pp.58-63
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    • 2005
  • 등유 풀화재의 화염과 연소에 의해 생성되는 연기의 특성에 대해서 조사하였다. 다양한 발열량을 위해 직경을 변하게 할 수 있는 팬버너를 제작하였다. 풀화재를 조사하기 위해 화염 높이와 떨림 주파수를 분석하였다. 실험적으로 풀화염 높이는 이론적 상관관계 증가율과 잘 일치하지만, 정량적으로는 등유의 연소율에 기인하여 과대 평가된 값을 보인다. 연기의 특성을 조사하기 위해 세 가지의 실험방법을 사용하였다. 먼저 가스분석기를 이용하여 연소시 발생되는 주요 가스 농도를 측정하였는데 이산화탄소의 생성과 산소의 소모율은 풀화염의 열방출율에 비례하지만, 일산화탄소의 발생에 대한 경향성은 발견할 수 없었다. 연기의 매연입자를 광감쇄법과 TEM 이미지를 이용하여 특성을 조사하였다 연기밀도는 발열량의 증가에 따라 매우 급격히 증가하였고, 등유 풀화염에서 발생한 매연입자들은 자연적인 연소조건임에도 불구하고 역확산 제트화염에서 생성된 매연과 유사한 형태와 탄화정도를 보임이 관찰되었다.

Cyclic Voltammetry를 이용한 CuInSe2 박막의 전기화학적 전착 연구 (Cyclic Voltammetry Study on Electrodeposition of CuInSe2 Thin Films)

  • 홍순현;이현주;김양도
    • 한국재료학회지
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    • 제23권11호
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    • pp.638-642
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    • 2013
  • Chalcopyrite $CuInSe_2$(CIS) is considered to be an effective light-absorbing material for thin film photovoltaic solar cells. CIS thin films have been electrodeposited onto Mo coated and ITO glass substrates in potentiostatic mode at room temperature. The deposition mechanism of CIS thin films has been studied using the cyclic voltammetry (CV) technique. A cyclic voltammetric study was performed in unitary Cu, In, and Se systems, binary Cu-Se and In-Se systems, and a ternary Cu-In-Se system. The reduction peaks of the ITO substrate were examined in separate $Cu^{2+}$, $In^{3+}$, and $Se^{4+}$ solutions. Electrodeposition experiments were conducted with varying deposition potentials and electrolyte bath conditions. The morphological and compositional properties of the CIS thin films were examined by field emission scanning electron microscopy (FE-SEM) and energy dispersive spectroscopy (EDS). The surface morphology of as-deposited CIS films exhibits spherical and large-sized clusters. The deposition potential has a significant effect on the film morphology and/or grain size, such that the structure tended to grow according to the increase of the deposition potential. A CIS layer deposited at -0.6 V nearly approached the stoichiometric ratio of $CuIn_{0.8}Se_{1.8}$. The growth potential plays an important role in controlling the stoichiometry of CIS films.

지속적인 국소마취를 위한 생분해성 PLGA 미립구의 제조와 생체외 방출 거동 (Preparation of Biodegradable PLGA Microspheres for Sustained Local Anesthesia and Their in vitro Release Behavior)

  • 조진철;강길선;최학수;이종문;이해방
    • 폴리머
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    • 제24권5호
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    • pp.728-735
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    • 2000
  • 지속적인 국소 마취의 가능성을 연구하기 위하여 펜타닐이 함유된 생분해성 poly(L-lactide-glycolide) (75 : 25 락타이드와 글리콜라이드의 몰 비, PLGA) 미립구를 제조하였다. 펜타닐 베이스가 함유된 PLGA 미립구는 일반적인 O/W 용매 증발법으로 제조하였으며 미립구의 크기는 10에서 150 $\mu\textrm{m}$의 범위에 있었다. 미립구의 표면과 단면 형태를 전자현미경으로 관찰하였고 생체외 펜타닐 베이스 방출량은 HPLC로 분석하였다. 젤라틴 유화제의 사용으로 가장 낮은 다공성 단면의 형태와 가장 높은 포접율을 가질 수 있었다. 펜타닐의 방출 패턴은 유화제의 종류, PLGA의 분자량 및 농도, 초기 약물 loading양 등과 같은 제조 조건들의 영향이 미치는 것으로 관찰되었다. 생체외에서 펜타닐 베이스의 방출은 제조 조건을 조절함으로써 거의 zero-order 형태로 25일 이상으로 지속적이었다. 또한 XRD와 DSC로 펜타닐이 함유된 PLGA 미립구의 물리화학적인 성질을 조사하였다.

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The Effect of Plasma Gas Composition on the Nanostructures and Optical Properties of TiO2 Films Prepared by Helicon-PECVD

  • Li, D.;Dai, S.;Goullet, A.;Granier, A.
    • Nano
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    • 제13권10호
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    • pp.1850124.1-1850124.12
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    • 2018
  • $TiO_2$ films were deposited from oxygen/titanium tetraisopropoxide (TTIP) plasmas at low temperature by Helicon-PECVD at floating potential ($V_f$) or substrate self-bias of -50 V. The influence of titanium precursor partial pressure on the morphology, nanostructure and optical properties was investigated. Low titanium partial pressure ([TTIP] < 0.013 Pa) was applied by controlling the TTIP flow rate which is introduced by its own vapor pressure, whereas higher titanium partial pressure was formed through increasing the flow rate by using a carrier gas (CG). Then the precursor partial pressures [TTIP+CG] = 0:027 Pa and 0.093 Pa were obtained. At $V_f$, all the films exhibit a columnar structure, but the degree of inhomogeneity is decreased with the precursor partial pressure. Phase transformation from anatase ([TTIP] < 0.013 Pa) to amorphous ([TTIP+CG] = 0:093 Pa) has been evidenced since the $O^+_2$ ion to neutral flux ratio in the plasma was decreased and more carbon contained in the film. However, in the case of -50 V, the related growth rate for different precursor partial pressures is slightly (~15%) decreased. The columnar morphology at [TTIP] < 0.013 Pa has been changed into a granular structure, but still homogeneous columns are observed for [TTIP+CG] = 0:027 Pa and 0.093 Pa. Rutile phase has been generated at [TTIP] < 0:013 Pa. Ellipsometry measurements were performed on the films deposited at -50 V; results show that the precursor addition from low to high levels leads to a decrease in refractive index.

탄산염 침전 전구체의 결정 이방성 제어를 통한 고 비표면적 flower-like CeO2 분말의 제조 및 고온 안정성 평가 (Fabrication and thermal stability of flower-like CeO2 with high surface area via anisotropic crystallization of carbonate precipitation)

  • 김한빛;신태호
    • 한국결정성장학회지
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    • 제29권4호
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    • pp.160-166
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    • 2019
  • 산화세륨($CeO_2$)는 고체산화물연료전지, 자동차 삼원 촉매, 산소 캐패시터 소재 등의 고온환경에서 구동되는 촉매 응용분야에 널리 활용되고 있으며 중요한 희토류 산화물 중에 하나이다. 고온 환경에서 $CeO_2$의 우수한 촉매 활성을 유지하기 위하여 초기 합성단계에서 높은 비표면적을 갖는 미세구조제어 연구와 나노 미세구조가 고온 열 사이클과 산화-환원 사이클 변화에서 안정하도록 하는 연구가 필요하여 많은 연구가 진행되고 있다. 따라서 본 연구에서는 탄산염 침전법의 전구체 결정화 단계에서의 이방성을 정밀 제어하여 고 비표면적의 flower-like $CeO_2$를 성공적으로 합성할 수 있었다. 또한, 서로 다른 탄산염이온 침전제의 침전 반응 경로 제어를 통한 침전 수화물 전구체의 이방적 결정 특성으로부터 최종 고 비표면적 $CeO_2$ 산화물의 미세구조 제어와 고온 안정 제어를 확인하고 특성을 평가하였다.

라인파이프 강재의 수소유기균열에 미치는 열간압연 공정변수의 영향 (Effect of Non-Metallic Inclusions and Hot Rolling Process Parameters on Hydrogen Induced Cracking of Linepipe Steels)

  • 고성웅;정환교;강기봉
    • 대한금속재료학회지
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    • 제46권4호
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    • pp.257-266
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    • 2008
  • AHydrogen induced cracking (HIC) was phenomenologically studied in terms of the effect of nonmetallic inclusions and hot rolling process parameters. By comparing the level of non-metallic inclusions in two different kinds of commercial grade steels having different HIC resistance, the role of non-metallic inclusions in HIC occurrence was investigated. Change in inclusion morphology and distribution during hot rolling was also studied throughout slab, rolling at austenite recrystallization region (roughing mill; RM) and rolling at austenite non-recrystallization region (finish mill; FM). In addition, the contribution of RM and FM parameters to HIC was investigated from the standpoint of change in inclusion morphology during hot rolling processes. As a result, HIC was closely related to the separation of large complex inclusion during hot rolling process. Large complex inclusions originated from the improper Ca treatment, after which equilibrium composition of slag should have resulted in eutectoid composition. By controlling the equilibrium slag composition equivalent to eutectoid one, HIC resistance could be improved due to the reduced size of inclusions. In addition, change in reduction/pass in RM had an effect on HIC resistance of steels while that in FM did not. Increase in the reduction/pass in the latter stage of RM improved HIC resistance of steels by enhancing the void enclosure around inclusions.

애기장대의 세포 크기와 세포 수를 조절하는 LANCEOLATA1 유전자 (Regulation of cell size and cell number by LANCEOLATA1 gene in Arabidopsis)

  • 조규형;전상은;정순재;이영병;김경태
    • 생명과학회지
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    • 제17권1호
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    • pp.1-5
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    • 2007
  • 쌍자엽 식물에 있어서 잎의 발달에 관한 과정은 매우 복잡하게 얽혀있지만, 이를 조절하는 메커니즘에 대해서는 아직 잘 알려져 있지 않다. 모델식물인 애기장대의 잎의 발달의 기초과정을 해명하기 위하여 잎의 형태이상 돌연변이체를 이용한 접근방법을 시도하였다. 본 연구에서 잎이 작고 가는 lanceolata1 돌연변이체를 선별하였고, 이원인유전자의 기능을 밝히기 위하여 유전학적 및 해부학적인 연구를 실시하였다. lan1-7 돌연변이체는 잎 뿐만아니라 줄기도 가늘어지는 표현형을 나타내었고, 이는 세포수준에서 세포크기와 세포수의 감소에 의한 조절되고 있음이 밝혀졌다. 이 결과는 LAN1 유전자가 잎의 발달과정에서 세포분열과 세포신장을 제어하고 있다는 사실을 시사하고 있다. lan1-7 돌연변이체와 35S-AG 형질전환체와의 F1 세대의 표현형 분석을 통하여, AG 유전자가 잎이 가늘고 위로 말리는 모양을 제어하고 있다는 사실이 판명되었다. 이 결과로 MADS-box유전자가 LAN1 유전자에 의해서 제어되고 잎의 발달과정에 관여하고 있다는 사실이 판명되었다.

Impacts of wave and tidal forcing on 3D nearshore processes on natural beaches. Part II: Sediment transport

  • Bakhtyar, R.;Dastgheib, A.;Roelvink, D.;Barry, D.A.
    • Ocean Systems Engineering
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    • 제6권1호
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    • pp.61-97
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    • 2016
  • This is the second of two papers on the 3D numerical modeling of nearshore hydro- and morphodynamics. In Part I, the focus was on surf and swash zone hydrodynamics in the cross-shore and longshore directions. Here, we consider nearshore processes with an emphasis on the effects of oceanic forcing and beach characteristics on sediment transport in the cross- and longshore directions, as well as on foreshore bathymetry changes. The Delft3D and XBeach models were used with four turbulence closures (viz., ${\kappa}-{\varepsilon}$, ${\kappa}-L$, ATM and H-LES) to solve the 3D Navier-Stokes equations for incompressible flow as well as the beach morphology. The sediment transport module simulates both bed load and suspended load transport of non-cohesive sediments. Twenty sets of numerical experiments combining nine control parameters under a range of bed characteristics and incident wave and tidal conditions were simulated. For each case, the general morphological response in shore-normal and shore-parallel directions was presented. Numerical results showed that the ${\kappa}-{\varepsilon}$ and H-LES closure models yield similar results that are in better agreement with existing morphodynamic observations than the results of the other turbulence models. The simulations showed that wave forcing drives a sediment circulation pattern that results in bar and berm formation. However, together with wave forcing, tides modulate the predicted nearshore sediment dynamics. The combination of tides and wave action has a notable effect on longshore suspended sediment transport fluxes, relative to wave action alone. The model's ability to predict sediment transport under propagation of obliquely incident wave conditions underscores its potential for understanding the evolution of beach morphology at field scale. For example, the results of the model confirmed that the wave characteristics have a considerable effect on the cumulative erosion/deposition, cross-shore distribution of longshore sediment transport and transport rate across and along the beach face. In addition, for the same type of oceanic forcing, the beach morphology exhibits different erosive characteristics depending on grain size (e.g., foreshore profile evolution is erosive or accretive on fine or coarse sand beaches, respectively). Decreasing wave height increases the proportion of onshore to offshore fluxes, almost reaching a neutral net balance. The sediment movement increases with wave height, which is the dominant factor controlling the beach face shape.

A Novel Approach to Controlling CaCO3 Crystalline Assembly by Changing the Concentration of Poly(aspartic acid)

  • Zhou, Hongjian;Gao, Yanmin;Hwang, Sun-Gu;Lee, Dong-Yun;Park, Jung-Youn;Lee, Jae-Beom
    • Bulletin of the Korean Chemical Society
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    • 제32권11호
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    • pp.4027-4034
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    • 2011
  • $CaCO_3$ crystalline structures having novel assemblies were in situ fabricated as analogs of naturally occurring proteins and polysaccharides for biomineralization. The calcite crystal was mineralized in a poly(vinyl alcohol)-$Ca^{2+}$ complex film immersed in a $Na_2CO_3$ solution containing poly(aspartic acid). The morphology and size of the $CaCO_3$ crystals were tuned by varying the concentration of poly(aspartic acid). The mechanisms of their nucleation orientation and formation were investigated experimentally and through molecular dynamics (MD) simulations in order to obtain a better understanding of the interactions between the polymers and the crystal at the molecular level. Both the MD results and experimental results indicate that the interaction between PVA and calcite mainly depends on the concentration of the polymer. The novel approach proposed herein for the fabrication of inorganic crystalline assembly structures can be used to fabricate precise crystalline structures.

Ni-MH 2차전지용 다상의 Zr계 수소저장합금 전극의 활성화 특성에 관한 연구 (A study on the activation characteristics of multi-phase Zr-based hydrogen storage alloy for Ni-MH rechargeable battery)

  • 이호;장국진;이재영
    • 한국수소및신에너지학회논문집
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    • 제8권4호
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    • pp.161-171
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    • 1997
  • $AB_2$ type Zr-based Laves phase alloys have been studied for potential application as negative electrode in Ni/MH batteries. However, They have a serious disadvantage of poor activation behavior in KOH solution. In this work, a new method of alloy design method was tried for improving Zr-based alloy activation. this method has focused on phase controlling to make multi-phase microstructure. In the case of multi-phase Zr-V-Mn-Ni shows good performance in activation, but activation mechanism has not been known. So, we were in search of elucidating this mechanism, Using morphological and electrochemical analysis, we could find that surface morphology and electocatalytic activity of the alloy change during immersion in KOH solution. V-rich second phases are selectively corroded and dissolved and then become Ni-rich phases. Resulting from these surface reaction in KOH solution, self-hydrogen charging occurs through Ni-rich phase. However, the alloy has poor cyclic durability because of such a corrosion mechanism. Therefore, finally we developed durable alloys by substitution of other alloying element.

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