• 제목/요약/키워드: Fourier method

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겔화 반응 시간 조절을 통한 상온에서의 폴리우레탄 폼 합성 (Synthesis of Polyurethane Foam at Room Temperature by Controlling the Gelling Reaction Time)

  • 이호준;오충익;;김소연;한영준;오민석;주형욱;장수호;홍승범
    • 공업화학
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    • 제31권6호
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    • pp.630-634
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    • 2020
  • We developed a processing recipe to synthesize flexible polyurethane foam with a pore size of 335 ± 107 ㎛. The gelling reaction time was varied from 0 to 30 minutes and the physical properties of the foam were evaluated. The gelling reaction where the polypropylene glycol and tolylene 2,4-diisocyanate (TDI) were reacted to form urethane prepolymer, proceeded until a chemical blowing agent, deionized water, was introduced. Fourier transform infrared (FT-IR) spectra showed that the composition of the foam did not change but the foam height reached a peak value when the gelling reaction time was 10 minutes. We found that increasing the gelling time lessened the coalescence and helped the formation of cells. Lastly, the repeatability of polyurethane foam was confirmed by one-way analysis of variance (ANOVA) by synthesizing ten identical polyurethane foams under the same experimental conditions, including the gelling reaction time. Overall, the new time parameter in-between the gelling and blowing reactions will give extra stability in manufacturing identical polyurethane foams and can be applied to various polyurethane foam processes.

오목 렌즈 함수를 이용한 초 고해상도 Computer generated hologram 생성 기법 (Extremely High-Definition Computer Generated Hologram Calculation Algorithm with Concave Lens Function)

  • 이창주;최우영;오관정;홍기훈;최기홍;전상훈;박중기;이승열
    • 방송공학회논문지
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    • 제25권6호
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    • pp.836-844
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    • 2020
  • 아날로그 홀로그램과 동등 이상의 대면적과 넓은 시야각을 가진 Computer generated hologram(CGH)을 생성하기 위해서는 매우 많은 픽셀 수가 요구된다. 이로 인해 고해상도의 CGH를 생성하기 위해서는 높은 성능의 연산장치를 바탕으로도 오랜 연산 시간이 필요한 문제점이 존재한다. 이를 해결하기 위해 본 논문에서는 미리 계산된 저해상도 CGH를 배열한 후 평행이동된 오목 렌즈 함수를 곱해주는 것을 통하여 고해상도 CGH를 생성하는 기법을 제안한다. Point cloud 방식으로 기록된 0.1기가픽셀의 CGH를 계산하고, 여기에 제안된 기법을 도입하여 2.5기가픽셀의 CGH를 매우 빠른 속도로 생성할 수 있었으며, 이렇게 생성된 CGH를 실험을 통하여 기록한 이미지상이 정상적으로 복원되는 것을 확인하였다.

Fe0/C-bentonite alginate beads and oyster shell fixed-bed column combined process to continuously remove N-acetyl-p-aminophenol in persulfate system

  • Wang, Bing-huang;Zhang, Qian;Honga, Jun-ming
    • Journal of Industrial and Engineering Chemistry
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    • 제67권
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    • pp.301-311
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    • 2018
  • In this study, the ion-gelation method was applied to fabricate novel Fe-carbon-bentonite-alginate beads ($Fe^0$/C-BABs). $Fe^0$/C-BABs could effectively control Fe release during persulfate (PS) activation in N-acetyl-p-aminophenol (APAP) oxidation. A novel two-stage approach that combined $Fe^0$/C-BABs and an oyster-shell-filled bed (OSFB) column was developed to address the low pH and high Fe concentration of the effluent of the traditional PS process. The application of the $Fe^0$/C-BABs and OSFB column regulated pH levels and Fe release during the advanced oxidation of APAP. The characteristics of $Fe^0$/C-BABs were also investigated through scanning electron microscopy, energy dispersive spectrometry, and Fourier transform infrared spectroscopy. The long-term operation performance of $Fe^0$/C-BABs in a continuous fixed-bed reactor under simultaneous PS and APAP feeding was also evaluated. The effects of initial PS concentration, pH, fixed-bed weight, in-flow rate, and dissolved oxygen (DO) were investigated. Under selected conditions, 86.3% efficiency was achieved during the first stage of APAP degradation (effluent pH of 3.05, Fe contents: $106.25mgL^{-1}$). Water quality improved after the effluent was passed through the OSFB column (effluent pH of 6.32, Fe contents: $21.43mgL^{-1}$). Moreover, this study analyzed the free radicals and intermediates produced during APAP degradation to identify the possible routes of APAP degradation.

Low Cost Alcoholic Breath Sensor Based on SnO2 Modified with CNTs and Graphene

  • Morsy, M.;Yahia, I. S.;Zahran, H.Y.;Ibrahim, M.
    • Journal of the Korean Physical Society
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    • 제73권10호
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    • pp.1437-1443
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    • 2018
  • In this work, $SnO_2$ modified with reduced graphene oxide (rGO) and carbon nanotubes (CNTs) separately and combined sensitized by using the co-precipitation method and their sensing behavior toward ethanol vapor at room temperature were investigated. An interdigitated electrode (IDE) gold substrate is very expensive compared to a fluorine doped tin oxide (FTO) substrate; hence, we used the latter to reduce the fabrication cost. The structure and the morphology of the studied materials were characterized by using differential thermal analyses (DTA) and thermogravimetric analysis (TGA), transmission electron microscope (TEM), X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectroscopy, Brunauer-Emmett-Teller surface area and Barrett-Joyner-Halenda (BJH) pore size measurements. The studied composites were subjected to ethanol in its gas phase at concentrations from 10 to 200 ppm. The present composites showed high-performance sensitivity for many reasons: the incorporation of $SnO_2$ and CNTs which prevents the agglomeration of rGO sheets, the formation of a 3D mesopourus structure and an increase in the surface area. The decoration with rGO and CNTs led to more active sites, such as vacancies, which increased the adsorption of ethanol gas. In addition, the mesopore structure and the nano size of the $SnO_2$ particles allowed an efficient diffusion of gases to the active sites. Based on these results, the present composites should be considered as efficient and low-cost sensors for alcohol.

An organofunctionalized MgO∙SiO2 hybrid support and its performance in the immobilization of lipase from Candida rugosa

  • Kolodziejczak-Radzimska, Agnieszka;Zdarta, Jakub;Ciesielczyk, Filip;Jesionowski, Teofil
    • Korean Journal of Chemical Engineering
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    • 제35권11호
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    • pp.2220-2231
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    • 2018
  • Lipase from Candida rugosa was immobilized on $MgO{\cdot}SiO_2$ hybrid grafted with amine, thiol, cyano, phenyl, epoxy and carbonyl groups. The products were analyzed using Fourier transform infrared spectroscopy, nuclear magnetic resonance, low-temperature $N_2$ sorption and elemental analysis. Additionally, the degree of coverage of the oxide material surface with different functional groups and the number of surface functional groups were estimated. The Bradford method was used to determine the quantity of immobilized enzyme. The largest quantity of enzyme (25-28 mg/g) was immobilized on the hybrid functionalized with amine and carbonyl groups. On the basis of hydrolysis reaction of p-nitrophenyl palmitate to p-nitrophenol, it was determined how the catalytic activity of the obtained biocatalysts is affected by pH, temperature, storage time, and repeated reaction cycles. The best results for catalytic activity were obtained for the lipase immobilized on $MgO{\cdot}SiO_2$ hybrids with amine and carbonyl groups. The biocatalytic system demonstrated activity above 40% in the pH range 4-10 and in the temperature range $30-70^{\circ}C$. Lipase immobilized on the $MgO{\cdot}SiO_2$ systems with amine and epoxy groups retains, respectively, around 80% and 60% of its initial activity after 30 days of storage, and approximately 60-70% after 10 reaction cycles.

나노급 두께의 Ni50Co50 복합 실리사이드의 적외선 흡수 특성 연구 (IR Absorption Property in NaNo-thick Nickel Cobalt Composite Silicides)

  • 송오성;김종률;최용윤
    • 대한금속재료학회지
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    • 제46권2호
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    • pp.88-96
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    • 2008
  • Thermal evaporated 10 nm-$Ni_{50}Co_{50}$/(70 nm-poly)Si films were deposited to examine the energy saving properties of silicides formed by rapid thermal annealing at temperature ranging from 500 to $1,100^{\circ}C$ for 40 seconds. Thermal evaporated 10 nm-Ni/(70 nm-poly)Si films were also deposited as a reference using the same method for depositing the 10 nm-$Ni_{50}Co_{50}$/(70 nm-poly)Si films. A four-point probe was used to examine the sheet resistance. Transmission electron microscopy (TEM) and X-ray diffraction XRD were used to determine cross sectional microstructure and phase changes, respectively. UV-VIS-NIR and FT-IR (Fourier transform infrared spectroscopy) were used to examine the near-infrared (NIR) and middle-infrared (MIR) absorbance. TEM analysis confirmed that the uniform nickel-cobalt composite silicide layers approximately 21 to 55 nm in thickness had formed on the single and polycrystalline silicon substrates as well as on the 25 to 100 nm thick nickel silicide layers. In particular, nickel-cobalt composite silicides showed a low sheet resistance, even after rapid annealing at $1,100^{\circ}C$. Nickel-cobalt composite silicide and nickel silicide films on the single silicon substrates showed similar absorbance in the near-IR region, while those on the polycrystalline silicon substrates showed excellent absorbance until the 1,750 nm region. Silicides on polycrystalline substrates showed high absorbance in the middle IR region. Nickel-cobalt composite silicides on the poly-Si substrates annealed at $1,000^{\circ}C$ superior IR absorption on both NIR and MIR region. These results suggest that the newly proposed $Ni_{50}Co_{50}$ composite silicides may be suitable for applications of IR absorption coatings.

Midinfrared Pulse Compression in a Dispersion-decreasing and Nonlinearity-increasing Tapered As2S3 Photonic Crystal Fiber

  • Shen, Jianping;Zhang, Siwei;Wang, Wei;Li, Shuguang;Zhang, Song;Wang, Yujun
    • Current Optics and Photonics
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    • 제5권3호
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    • pp.250-260
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    • 2021
  • A tapered As2S3 photonic crystal fiber (PCF) with four layers of air holes in a hexagonal array around the core is designed in this paper. Numerical simulation shows that the dispersion D decreases and the nonlinearity coefficient γ increases from the thick to the thin end along the tapered PCF. We simulate the midinfrared pulse compression in the tapered As2S3 PCF using the adaptive split-step Fourier method. Initial Gaussian pulses of 4.4 ps and a central wavelength of 2.5 ㎛ propagating in the tapered PCF are located in the anomalous dispersion region. With an average power of assumed input pulses at 3 mW and a repetition frequency of 81.0 MHz, we theoretically obtain a pulse duration of 56 fs and a compression factor of 78 when the pulse propagates from the thick end to the thin end of the tapered PCF. When confinement loss in the tapered PCF is included in the simulation, the minimum pulse duration reaches 72 fs; correspondingly, the maximum compression factor reaches 61. The results show that in the anomalous-dispersion region, midinfrared pulses can be efficiently compressed in a dispersion-decreasing and nonlinearity-increasing tapered As2S3 PCF. Due to confinement loss in the tapered fiber, the efficiency of pulse compression is suppressed.

타이로신이 풍부한 펩타이드를 사용한 금 나노입자의 손쉬운 합성과 4-니트로페놀의 촉매 환원 응용 (Facile Synthesis of Gold Nanoparticles Using Tyrosine-Rich Peptide and Its Applications to Catalytic Reduction of 4-Nitrophenol)

  • 허윤미;민경익
    • 공업화학
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    • 제32권1호
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    • pp.15-19
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    • 2021
  • 본 연구에서는 타이로신이 풍부한 펩타이드, Tyr-Tyr-Gly-Tyr-Tyr (YYGYY)를 환원제 및 안정화제로 사용하여 구형의 금 나노 입자의 간단한 합성 방법을 연구하였다. 펩타이드로 둘러싸인 구형의 다결정 금 나노 입자는 UV 조사 하에서 펩타이드 및 금속 전구체의 농도를 조절하여 3~15 nm 크기로 합성되었다. 합성된 금 나노 입자의 특성을 확인하기 위하여 투과 전자 현미경(TEM), 자외선-가시광선 분광광도계(UV-Vis spectroscopy), 주사 투과 전자 현미경 및 에너지 분산 X선 분광법(STEM-EDS), 푸리에 변환 적외선 분광법(FT-IR), X선 회절 분석법(XRD)을 사용하여 분석하였다. 또한, 합성된 금 나노입자는 4-니트로페놀의 환원 반응을 통해 7.3 × 10-3 s-1의 반응속도 상수를 갖는 촉매 활성을 확인하였다.

딥러닝 기반 자동 변조 인식 성능 분석 (Performance analysis in automatic modulation classification based on deep learning)

  • 강종진;김재현
    • 한국정보통신학회논문지
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    • 제25권3호
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    • pp.427-432
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    • 2021
  • 본 논문에서는 미상의 통신신호에 대한 자동 변조 인식을 위하여 심층신경망인 딥뉴럴네트워크를 적용하여 변조 형태를 식별하고 그 성능을 분석하였다. 신경망 입력 데이터는 변조된 신호의 시간영역 디지털샘플 데이터, FFT(Fast Fourier Transform)를 적용한 주파수영역 데이터, 시간 및 주파수영역 혼합데이터를 사용하여 각각의 변조인식 성능을 확인하였다. 아날로그 변조 및 디지털 변조 신호 11종에 대하여 -20~18 dB 까지 다양한 SNR(Signal to Noise Ratio) 환경에서 변조인식 성능을 확인하고 그 성능을 분석하였으며, 입력 데이터의 종류에 따른 학습 속도를 확인함으로써 제안한 방법이 실제적인 자동변조 인식 시스템 구축에 효과적인 방법임을 확인 하였다.

N2 plasma treatment of pigments with minute particle sizes to improve their dispersion properties in deionized water

  • Zhang, Jingjing;Park, Yeong Min;Tan, Xing Yan;Bae, Mun Ki;Kim, Dong Jun;Jang, Tae Hwan;Kim, Min Su;Lee, Seung Whan;Kim, Tae Gyu
    • Journal of Ceramic Processing Research
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    • 제20권6호
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    • pp.589-596
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    • 2019
  • Pigments with minute particle sizes, such as carbon black (CB) and pigment red 48:2 (P.R.48:2), are the most important types of pigment and have been widely used in many industrial applications. However, minute particles have large surface areas, high oil absorption and low surface energy. They therefore tend to be repellent to the vehicle and lose stability, resulting in significant increases in viscosity or reaggregation in the vehicle. Therefore, finding the best way to improve the dispersion properties of minute particle size pigments presents a major technical challenge. In this study, minute particle types of CB and P.R.48:2 were treated with nitrogen gas plasma generated via radio frequency-plasma enhanced chemical vapor deposition (RF-PECVD) to increase the dispersion properties of minute particles in deionized (DI) water. The morphologies and particle sizes of untreated and plasma treated particles were evaluated using scanning electron microscopy (SEM) and atomic force microscopy (AFM). The average distributions of particle size were measured using a laser particle sizer. Fourier transform infrared spectroscopy was carried out on the samples to identify changes in molecular interactions during plasma processing. The results of our analysis indicate that N2 plasma treatment is an effective method for improving the dispersibility of minute particles of pigment in DI water.