• 제목/요약/키워드: Optimal condition for synthesis

검색결과 68건 처리시간 0.029초

화분생장에 미치는 석탄이온의 작용과 그 농도, 산성도 및 온도의 상호관계에 대하여 (On the action of Ca in pollen growth as influenced by interaction of the different Ca concentration, acidity and temperature)

  • 곽병화
    • Journal of Plant Biology
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    • 제8권1_2호
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    • pp.19-23
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    • 1965
  • Interaction occuring among the different Ca concentrations, pH and temperatures in the promotive effect of Ca in pollen growth was studied by using pollen from Crinum asiaticum and Cryptostegia grandiflora. Data for pollen tube elongation were found to be more indicative of representing the promotive action of Ca ion in pollen growth than those for pollen germination, and were served to evaluate the experimental results. The pollen growth increased as the concentration of Ca increase. The optimal pH range for pollen growth shifted from the lower pH to the higher as the concentration of Ca increase. The characteristic Ca effect was disappeared, and no pH effect at various ranges was observed when pollen grains were grown at the low temperature(8$^{\circ}C$). The Ca effect became quite pronounced if temperature were raised. The Ca effect became even mroe striking if the condition was in higher pH ranges (weak alkaline). Higher pH ranges were found to be more favorable for the Ca action, whereas higher temperature was required to bring about more pronounced Ca effect. Thus, the longest pollen tube was obtained with the highest pH, temperature adopted for the medium supplemented with Ca in the present experiment, and the shortest tube with the lowest temperature applied at the highest pH. Pectin synthesis in pollen tube was considered as a metabolic process, whereas Ca binding in pectin of the pollen tube wall as non-metabolic in nature. Disappearance of Ca effect at the low temperature was probably brought about by blocking the metabolic synthesis of pectin, and nonmetabolic Ca binding seems to take place more extensively with higher concentrations of Ca and at higher pH levels than the lower.

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고염/고방사성 폐액 내 Cs 제거를 위한 복합 흡착제 합성 및 특성 연구 (Study of Composite Adsorbent Synthesis and Characterization for the Removal of Cs in the High-salt and High-radioactive Wastewater)

  • 김지민;이근영;김광욱;이일희;정동용;문제권;현재혁
    • 방사성폐기물학회지
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    • 제15권1호
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    • pp.1-14
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    • 2017
  • 본 연구에서는 고염/고방사성 폐액 내 함유된 주요 고방사성핵종인 Cs 제거를 목적으로 고효율의 복합 흡착제(potassium cobalt ferrocyanide (PCFC)-loaded chabazite (CHA)) 합성 및 이의 적용성을 평가하였다. 복합 흡착제는 Cs을 비롯한 다른 입자를 수용할 수 있는 CHA를 지지체로 선정하였으며, $CoCl_2$$K_4Fe(CN)_6$ 용액의 단계적인 함침/침전을 통해 PCFC를 CHA 세공 내에 고정화함으로써 합성하였다. 복합 흡착제의 합성 시 평균 입자크기가 $10{\mu}m$ 이상의 CHA를 지지체로 사용할 경우, PCFC 입자는 안정적인 형태로 고정화되었다. 또한, 합성 시 복합 흡착제의 정제를 증가시키는 세척 방법을 최적화함으로써, 복합 흡착제의 물리적 안정성이 향상되었다. 최적의 합성법을 통해 얻은 복합 흡착제에 의한 Cs 흡착 시, 담수(무염조건) 및 해수(고염 조건)에서 모두 빠른 흡착 속도를 보였으며, 염 농도와 무관하게 비교적 높은 분배계수 값($10^4mL{\cdot}g^{-1}$ 이상)을 나타내었다. 그러므로, 본 연구에서 합성한 복합 흡착제는 CHA 및 PCFC가 각각 가지고 있는 물리적 안정성과 Cs에 높은 선택성 등을 고려하여 촤적화한 소재이며, 고염/고방사성폐액에 함유되어 있는 Cs을 고효율로 신속하게 제거할 수 있음을 알 수 있다.

H$\infty$ 제어를 이용한 가스 및 석유 탐사용 플랫폼의 동위치 제어 (Dynamic Positioning Control System for Gas & Oil Exploration Platforms Using H$\infty$ Control)

  • 유휘룡;노용우;박대진;구성자;박승수;김상봉
    • 한국가스학회지
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    • 제3권2호
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    • pp.62-69
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    • 1999
  • 본 논문에서는 혼합감도문제를 이용하여 강인한 서보계를 구성함으로서 동위치 제어 시스템의 제어계를 설계하는 방법을 제안하였고, LQG를 이용한 다변수 디지털 서보 제어기 및 H$\infty$ 최적 제어기와의 비교실험을 통하여 제안된 제어기의 유용성을 입증하였다.

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Co-Doped Willemite 파란색 안료의 합성과 생성기구 (Synthesis and Formation Mechanism of Cobalt Doped Willemite Blue Pigments)

  • 황동하;한경섭;이병하
    • 한국세라믹학회지
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    • 제47권6호
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    • pp.603-607
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    • 2010
  • Turquoise blue pigment of Vanadium-zircon blue (DCMA number 14-42-2), which was already commercialized, was stable to be reproduced but insufficient to give strong blue. However, it possible to obtain more intense blue by partially substituting cobalt ions into the willemite($Zn_2SiO_4$) lattice classified into DCMA number 7-10-2 for blue ceramic pigment. By the composition of willemite $Co_xZn_{2-x}SiO_4$(X=0.01, 0.03, 0.05, 0.07, 0.09 mole), this study used reagent grade zinc oxide, cobalt oxide and silicon dioxide as starting materials, carrying out the synthesis with solid reaction method by adding $H_3BO_3$ as a mineralizer. The firing temperature was between $1200^{\circ}C$ and $1400^{\circ}C$. The characteristics of synthesized pigment were analyzed by X-ray diffraction, Raman spectroscopy and SEM and the characteristics of color tones were analyzed by UV-Vis spectroscopy and CIE-$L^*a^*b^*$ measurement. As a result, the optimal composition was $Zn_{1.95}Co_{0.05}$ with 1wt% of $H_3BO_3$ as a mineralizer and firing condition was $1350^{\circ}C$/3 h. $L^*a^*b^*$ value was 29.25, 41.03, -59.93 for on glaze pigment and 37.03, 36.41, -60.03 for under glaze pigment.

Synthesis of Renewable Jet Fuel Precursors from C-C Bond Condensation of Furfural and Ethyl Levulinate in Water

  • Cai, Chiliu;Liu, Qiying;Tan, Jin;Wang, Tiejun;Zhang, Qi;Ma, Longlong
    • Korean Chemical Engineering Research
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    • 제54권4호
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    • pp.519-526
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    • 2016
  • Biomass derived jet fuel is proven as a potential alternative for the currently used fossil oriented energy. The efficient production of jet fuel precursor with special molecular structure is prerequisite in producing biomass derived jet fuel. We synthesized a new jet fuel precursor containing branched $C_{15}$ framework by aldol condensation of furfural (FA) and ethyl levulinate (EL), where the latter of two could be easily produced from lignocellulose by acid catalyzed processes. The highest yield of 56% for target jet fuel precursor could be obtained at the optimal reaction condition (molar ratio of FA/EL of 2, 323 K, 50 min) by using KOH as catalyst. The chemical structure of $C_{15}$ precursor was specified as (3E, 5E)-6-(furan-2-yl)-3-(furan-2-ylmethylene)-4-oxohex-5-enoic acid ($F_2E$). For stabilization, this yellowish solid precursor was hydrogenated at low temperature to obtain C=C bonds saturated product, and the chemical structure was proposed as 4-oxo-6-(tetrahydrofuran-2-yl)-3-(tetrahydrofuran-2-yl)-methyl hexanoic acid ($H-F_2E$). The successful synthesis of the new jet fuel precursors showed the significance that branched jet fuel could be potentially produced from biomass derived FA and EL via fewer steps.

NAA와 BA가 hybrid poplar(p. nigra var. betulifolla X P.trichocarpa)의 극성 분화에 미치는 영향 (The Effect of NAA and BA on Polar-Regeneration of Shoot in Hybrid Poplar)

  • 김용재;김명원강영희
    • KSBB Journal
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    • 제7권2호
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    • pp.85-91
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    • 1992
  • Hybrid Poplar(Poplar nigra var. betulifollia X Poplar trichorcarpa)의 잎절편을 목본실물 배양배지에서 배양하면서 기관분화를 위한 배양조건과 분화과정 중 부정아의 분화와 auxib(NAA)과 cytokinin(BA)과의 상호관계에 대해서 연구하여 다음고 같은 결과를 얻었다. 1. Poplar잎절편으로부터 부정아의 분화는 식물호르몬의 조성이 NAA $0.01mg/\ell$, BA$0.2mg/\ell$일 때 배양후 13일정도에서 기부 절단면으로부터 부정아가 효과적으로 유도되었다. 2. RNA와 단백질의 함량은 단부가 기부보다 높았으며 기부가 4일에서 10일까지의 상대적이 수치에서는 단부보다 높았다. 3. RNA와 단백질의 함량은 식물호르몬의 조성이 NAA,$0.01mg/\ell$;BA,$0.2mg/\ell$일 때 배양후 7일정도에서 가장 높았다. 4. 표준 WPM에 조직 절편을 배양하였을 때 기부에서 배양시기가 경과함에 따라 특이한 단백질이 형성 되었다.

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Characterization of SiC nanowire synthesize by Thermal CVD

  • 정민욱;김민국;송우석;정대성;최원철;박종윤
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.74-74
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    • 2010
  • One-dimensional nanosturctures such as nanowires and nanotube have been mainly proposed as important components of nano-electronic devices and are expected to play an integral part in design and construction of these devices. Silicon carbide(SiC) is one of a promising wide bandgap semiconductor that exhibits extraordinary properties, such as higher thermal conductivity, mechanical and chemical stability than silicon. Therefore, the synthesis of SiC-based nanowires(NWs) open a possibility for developing a potential application in nano-electronic devices which have to work under harsh environment. In this study, one-dimensional nanowires(NWs) of cubic phase silicon carbide($\beta$-SiC) were efficiently produced by thermal chemical vapor deposition(T-CVD) synthesis of mixtures containing Si powders and hydrocarbon in a alumina boat about $T\;=\;1400^{\circ}C$ SEM images are shown that the temperature below $1300^{\circ}C$ is not enough to synthesis the SiC NWs due to insufficient thermal energy for melting of Si Powder and decomposition of methane gas. However, the SiC NWs are produced over $1300^{\circ}C$ and the most efficient temperature for growth of SiC NWs is about $1400^{\circ}C$ with an average diameter range between 50 ~ 150 nm. Raman spectra revealed the crystal form of the synthesized SiC NWs is a cubic phase. Two distinct peaks at 795 and $970\;cm^{-1}$ over $1400^{\circ}C$ represent the TO and LO mode of the bulk $\beta$-SiC, respectively. In XRD spectra, this result was also verified with the strongest (111) peaks at $2{\theta}=35.7^{\circ}$, which is very close to (111) plane peak position of 3C-SiC over $1400 ^{\circ}C$ TEM images are represented to two typical $\beta$-SiC NWs structures. One is shown the defect-free $\beta$-SiC nanowire with a (111) interplane distance with 0.25 nm, and the other is the stacking-faulted $\beta$-SiC nanowire. Two SiC nanowires are covered with $SiO_2$ layer with a thickness of less 2 nm. Moreover, by changing the flow rate of methane gas, the 300 sccm is the optimal condition for synthesis of a large amount of $\beta$-SiC NWs.

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Fly ash의 NaOH 용융처리에 의한 고순도 Na-P1 Zeolite의 합성 (Synthesis of Highly Pure Na-P1 Zeolite by NaOH Fusion Treatment of Fly Ash)

  • 최충렬;이동훈;이인중;신동현;김장억;박만
    • 한국환경농학회지
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    • 제24권3호
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    • pp.232-237
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    • 2005
  • This study was conducted to elucidate the effects of NaOH fusion treatment on Na-P1 zeolite synthesis from fly ash and to evaluate its optimal condition. NaOH fusion treatment of fly ash led to Na-P1 zeolite with shorter reaction time and higher quality compared that of simple hydrothermal method. Mixed zeolite phases of Na-P1 and hydroxy sodalite were formed by the fusion treatment below $450^{\circ}C$, whereas only Na-P1 zeolite was formed above $550^{\circ}C$. Ratio of NaOH/fly ash, reaction times, fusion temperature and solid/liquid ratio strongly affected the kind and crystallinity of the zeolite formed. The CEC of Na-P1 zeolite formed at the optimum reaction conditions of NaOH/fly ash ratio 0.9 and solid/liquid ratio $1/5.0{\sim}1/7.5$ after NaOH fusion treatment at $550^{\circ}C$ for 2 hours was about $398cmol^+kg^{-1}$ which was 40% higher than those of control products. Therefore, it is clear that NaOH fusion treatment of fly ash in open system could lead to Na-P1 zeolite with high purity.

부채꼴방전 플라즈마 개질을 이용한 프로판으로부터의 합성가스 생산 (SynGas Production from Propane using GlidArc Plasma Reforming)

  • 송형운;전영남
    • 대한환경공학회지
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    • 제28권3호
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    • pp.323-328
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    • 2006
  • 본 논문의 목적은 부채꼴방전(GlidArc) 플라즈마 개질을 이용하여 프로판으로부터 카본블랙의 형성이 없는 합성가스 생산을 위한 개질특성과 최적 운전조건을 연구하였다. 또한 수소 생산 및 프로판 전환율을 항상시키기 위해 반응기 내의 촉매반응 영역에 13 wt%의 니켈촉매를 충진하여 수증기 몰 비, 이산화탄소 몰 비, 입력 전력, 주입 유량 변화의 변수별 연구를 수행하였다. 그 결과, 수증기 몰 비, 이산화탄소 몰 비, 입력 전력, 주입 유량이 각각 1.86, 0.48, 1.37 kW, 14 L/min일 때 프로판 전환율이 62.6%로 최적이었다. 위의 조건에서 합성가스의 건가스 기준에 농도는 $H_2\;44.4%,\;CO\;18.2%,\;CH_4\;11.2%,\;C_2H_2\;2.0%,\;C_3H_6\;1.6%,\;C_2H_4\;0.6%,\;C_3H_4$ 0.4%이며, 이산화탄소 전환율은 29.2%, 합성가스 내의 $H_2/CO$ 농도 비는 2.4이다.

최적의 프로필렌/프로판 흡착 분리 성능을 가지는 흡착제의 개발 전략들 (Design Strategies for Adsorbents with Optimal Propylene/propane Adsorptive Separation Performances)

  • 김태훈;이승준;김서율;김아름;배윤상
    • Korean Chemical Engineering Research
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    • 제57권4호
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    • pp.484-491
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    • 2019
  • 산업적으로 중요한 가치를 지니는 폴리프로필렌 합성의 원료인 프로필렌을 고순도로 얻기 위해서는 효율적인 프로필렌/프로판 분리 기술이 필요하다. 기존 증류 공정은 프로필렌과 프로판의 유사한 물리화학적 성질로 인해 매우 높은 에너지가 소모되기때문에, 흡착분리 기술이큰관심을받고있다. 본연구에서는 Grand Canonical Monte Carlo (GCMC) 분자 모사를 활용하여 기공의 형태가 다른 두 종류의 유무기복합다공체(Metal-Organic Frameworks)의 빈금속배위자리(open metal sites) 흡착 강도를 임의로 조절하며 프로필렌/프로판 흡착 분리 성능의 변화를 조사하였다. 흡착 분리 성능은 작업 용량, 선택도, Adsorption Figure of Merit (AFM) 등으로 평가하였고, 이를 통해 흡착제가 최적의 프로필렌/프로판 분리 성능을 가지기 위해 필요한 흡착 사이트의 밀도 및 강도 그리고 온도 조건 등을 제시하였다.