• Title/Summary/Keyword: Vacuum Extraction

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A Study on the Recovery of the Valuable Metals from VRDS Spent Catalyst (VRDS 폐촉매로부터 유가금속 회수 연구)

  • 장희동;이희선;박형규;이후인;김준수
    • Resources Recycling
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    • v.4 no.3
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    • pp.19-25
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    • 1995
  • A Study on the recovery of the valuable metals(Vanadium Molybdenium) was carried out using spent catalysts originated from desulfurizing process of oil refinery. Experiments consisted of pre-roasting for Sulfur and Carbon removal, soda roasting and leaching for the extraction of valuable metals, and selective precipitation of Vanadium and Molybdenium. Effects of temperature and time in roasting for Sulfur removal, of $Na_2CO_3$ concentrations in soda roasting, and of pulp density, temperature and time in leaching were investigated for the recovery of Vanadium and Molybdenium. A optimum condition having over 85% in yield of Vanadium and Molybdenium was found. In the selective precipitation, more than 98% of Vanadium and Molybdenium were obtained by the variation of pH and concentration of additives.

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A Study on Measurement and Elimination Methods of Dissolved Nitrogen in Kerosene (케로신 내 용존질소 측정 및 제거 방법 연구)

  • Lee, Wongu;Kim, Seong Lyong;Ahn, Kyubok
    • Journal of the Korean Society of Propulsion Engineers
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    • v.22 no.6
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    • pp.142-148
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    • 2018
  • To improve the performance of a launch vehicle, kerosene, a launch vehicle fuel, undergoes a densification process. Liquid nitrogen injection cooling is an effective densification method which has a simple system and is inexpensive. During the cooling process, however, nitrogen may dissolve in the kerosene, possibly resulting in changes to fuel properties. Therefore, it is essential to measure and eliminate the amount of dissolved nitrogen in the kerosene. In this study, the vacuum extraction principle is introduced to measure the content of dissolved nitrogen in the kerosene. In addition, the experimental results, which used a designed/manufactured nitrogen sampling device, are described. From the results, the validity of the nitrogen sampling device and the dissolved nitrogen measurement/elimination methods was demonstrated.

Core Keywords Extraction forEvaluating Online Consumer Reviews Using a Decision Tree: Focusing on Star Ratings and Helpfulness Votes (의사결정나무를 활용한 온라인 소비자 리뷰 평가에 영향을 주는 핵심 키워드 도출 연구: 별점과 좋아요를 중심으로)

  • Min, Kyeong Su;Yoo, Dong Hee
    • The Journal of Information Systems
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    • v.32 no.3
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    • pp.133-150
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    • 2023
  • Purpose This study aims to develop classification models using a decision tree algorithm to identify core keywords and rules influencing online consumer review evaluations for the robot vacuum cleaner on Amazon.com. The difference from previous studies is that we analyze core keywords that affect the evaluation results by dividing the subjects that evaluate online consumer reviews into self-evaluation (star ratings) and peer evaluation (helpfulness votes). We investigate whether the core keywords influencing star ratings and helpfulness votes vary across different products and whether there is a similarity in the core keywords related to star ratings or helpfulness votes across all products. Design/methodology/approach We used random under-sampling to balance the dataset. We progressively removed independent variables based on decreasing importance through backwards elimination to evaluate the classification model's performance. As a result, we identified classification models that best predict star ratings and helpfulness votes for each product's online consumer reviews. Findings We have identified that the core keywords influencing self-evaluation and peer evaluation vary across different products, and even for the same model or features, the core keywords are not consistent. Therefore, companies' producers and marketing managers need to analyze the core keywords of each product to highlight the advantages and prepare customized strategies that compensate for the shortcomings.

Enhanced Bioslurping System for Remediation of Petroleum Contaminated Soils (Enhanced Bioslurping system을 이용한 유류오염 토양의 복원)

  • Kim Dae-Eun;Seo Seung-Won;Kim Min-Kyoung;Kong Sung-Ho
    • Journal of Soil and Groundwater Environment
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    • v.10 no.2
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    • pp.35-43
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    • 2005
  • Bioslurping combines the three remedial approaches of bioventing, vacuum-enhanced free-product recovery, and soil vapor extraction. Bioslurping is less effective in tight (low-permeability) soils. The greatest limitation to air permeability is excessive soil moisture. Optimum soil moisture is very soil-specific. Too much moisture can reduce air permeability of the soil and decrease its oxygen transfer capability. Too little moisture will inhibit microbial activity. So Modified Fenton reaction as chemical treatment which can overcome the weakness of Bioslurping was experimented for simultaneous treatment. Although the diesel removal efficiency of SVE process increased in proportion to applied vacuum pressure, SVE process was difficulty to remediation quickly semi- or non-volatile compounds absorbed soil strongly. And SVE process had variation of efficiency with distance from the extraction well and depth a air flow form of hemisphere centering around the well. Below 0.1 % hydrogen peroxide shows the potential of using hydrogen peroxide as oxygen source but the co-oxidation of chemical and biological treatment was impossible because of the low efficiency of Modified Fenton reaction at 0.1 % (wt) hydrogen peroxide. NTA was more efficiency than EDTA as chelating agent and diesel removal efficiency of Modified Fenton reaction increased in proportion to hydrogen peroxide concentration. Hexadecane as typical aliphatic compound was removed less than Toluene as aromatic compound because of its structural stability in Modified Fenton reaction. What minimum 10% hydrogen peroxide concentration has good remediation efficiency of diesel contaminated groundwater may show the potential use of Modified Fenton reaction after bioslurping treatment.

Experimental Results of New Ion Source for Performance Test

  • Kim, Tae-Seong;Jeong, Seung-Ho;Jang, Du-Hui;Lee, Gwang-Won;In, Sang-Yeol
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.269-269
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    • 2012
  • A new ion source has been designed, fabricated, and installed at the NBTS (Neutral Beam Test Stand) at the KAERI (Korea Atomic Energy Research Institute) site. The goalis to provide a 100 keV, 2MW deuterium neutral beam injection as an auxiliary heating of KSTAR (Korea Super Tokamak Advanced Research). To cope with power demand, an ion current of 50 A is required considering the beam power loss and neutralization efficiency. The new ion source consists of a magnetic cusp bucket plasma generator and a set of tetrode accelerators with circular copper apertures. The plasma generator for the new ion source has the same design concept as the modified JAEA multi-cusp plasma generator for the KSTAR prototype ion source. The dimensions of the plasma generator are a cross section of $59{\times}25cm^2$ with a 32.5 cm depth. The anode has azimuthal arrays of Nd-Fe permanent magnets (3.4 kG at surface) in the bucket and an electron dump, which makes 9 cusp lines including the electron dump. The discharge properties were investigated preliminarily to enhance the efficiency of the beam extraction. The discharge of the new ion source was mainly controlled by a constant power mode of operation. The discharge of the plasma generator was initiated by the support of primary electrons emitted from the cathode, consisting of 12 tungsten filaments with a hair-pin type (diameter = 2.0 mm). The arc discharge of the new ion source was achieved easily up to an arc power of 80 kW (80 V/1000 A) with hydrogen gas. The 80 kW capacity seems sufficient for the arc power supply to attain the goal of arc efficiency (beam extracted current/discharge input power = 0.8 A/kW). The accelerator of the new ion source consists of four grids: plasma grid (G1), gradient grid (G2), suppressor grid (G3), and ground grid (G4). Each grid has 280 EA circular apertures. The performance tests of the new ion source accelerator were also finished including accelerator conditioning. A hydrogen ion beam was successfully extracted up to 100 keV /60 A. The optimum perveance is defined where the beam divergence is at a minimum was also investigated experimentally. The optimum hydrogen beam perveance is over $2.3{\mu}P$ at 60 keV, and the beam divergence angle is below $1.0^{\circ}$. Thus, the new ion source is expected to be capable of extracting more than a 5 MW deuterium ion beam power at 100 keV. This ion source can deliver ~2 MW of neutral beam power to KSTAR tokamak plasma for the 2012 campaign.

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Growth of $ZnGa_2O_4:Mn^{2+}$ Thin Film Phosphors by RF Magnetron Sputtering (박막 형광체 $ZnGa_2O_4:Mn^{2+}$의 RF Magnetron Sputtering법을 이용한 생장)

  • Kim J.S.;Lee S.H.;Park J.H.;Park H.W.;Choi J.C.;Park H.L.
    • Journal of the Korean Vacuum Society
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    • v.15 no.4
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    • pp.404-409
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    • 2006
  • Thin-film $ZnGa_2O_4 : Mn^{2+}$ phosphors of spinel structure were grown on quartz substrate by RF magnetron sputtering method at room temperature. As an increase of post-annealing temperatures, crystallinity, surface roughness and stoichiometry of thin films were varied. At the post-annealing temperatures of $500^{\circ}C$ and $600^{\circ}C$, the luminescence intensity was poor due to the poor crystallinity. The smallest surface roughness was observed at the sample post-annealed at $700^{\circ}C$ leading to low external extraction efficiency, and poor luminescence intensity. The highest luminescence intensity was shown at the sample post-annealed at $800^{\circ}C$. It was because both the surface roughness and crystallnity were optimized. On the other hand, at $900^{\circ}C$, the luminescence intensity was poor due to the violation of stoichiometry.

산화아연 투명전극의 패터닝 및 나노막대 구조를 이용한 질화갈륨계 LED의 광추출효율 향상에 대한 연구

  • Park, Ji-Yeon;Son, Hyo-Su;Choe, Nak-Jeong;Lee, Jae-Hwan;Han, Sang-Hyeon;Lee, Seong-Nam
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.313-313
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    • 2014
  • GaN계 물질 기반의 광 반도체는 조명 및 디스플레이 관련 차세대 광원으로 많은 관심을 받고 있고, 효율 증대를 위한 에피, 소자 구조 및 패키지 등의 많은 연구가 진행되고 있다. 특히, 투명 전극을 이용한 광 추출 효율의 증가에 대한 연구는 전체 외부양자효율을 증가시키는 중요한 기술로 각광을 받고 있다. 이러한 투명전극은 가시광 영역의 빛을 투과하면서도 전기 전도성을 갖는 기능성 박막 전극으로 산화인듐주석이 널리 사용되고 있으나 인듐 가격의 상승과 산화인듐주석 전극 자체의 크랙 특성으로 인하여 많은 문제점이 지적되고 있다. 이러한 문제를 극복하기 위하여 GaN계 발광 다이오드에 있어서 산화인듐주석 투명 전극의 대체 물질들에 대한 많은 연구들이 활발하게 이루어 지고 있다. 특히, 투명전극 층으로 사용되는 산화인듐주석 대체 박막으로 산화아연에 대한 연구가 각광을 받고 있는 실정이다. 또한, 발광 다이오드의 효율 증가를 위해 발광소자에 표면 요철 구조 형성과 나노구조체 형성 등 박막 표면의 구조 변화를 통한 광추출효율 향상에 대한 많은 연구가 진행되고 있다. 본 연구에서는 산화아연 박막을 투명전극으로 사용하였으며 광추출효율 향상을 위해 산화아연 투명전극에 패터닝을 형성하고, 그 위에 산화아연 나노막대를 형성하여 기존에 사용하던 산화아연 투명전극보다 우수한 추출효율 및 전류 퍼짐 향상 구조를 제안하고 이에 따른 LED 소자의 광추출효율 향상을 연구하였다. 금속유기화학증착법을 이용하여 c-면 사파이어 기판에 n-GaN, 5주기의 InGaN/GaN 다중양자우물 구조 및 p-GaN의 간단한 LED구조를 성장한 후, p-GaN층 상부에 원자층 증착법을 이용하여 투명전극인 산화아연 박막을 60 nm 두께로 증착하였다. 산화아연 투명전극만 증착한 LED-A와 이후 0.1% HCl을 이용한 습식식각을 통하여 산화아연 투명전극에 육각형 모양의 패턴을 형성한 LED-B, 그리고 LED-B위에 전기화학증착법을 이용하여 $1.0{\mu}m$의 산화아연 나노 막대를 증착한 LED-C를 제작하였다. LED-A, -B 및 -C에 대한 표면 구조는 SEM이미지를 통하여 확인한 바 산화아연의 육각 패턴과 그 상부에 산화아연의 나노막대가 잘 형성된 것을 확인하였다. I-L 분석으로부터 패턴이 형성되지 않은 산화아연 투명전극으로만 구성된 LED-A에 비하여 산화아연 투명 전극에 육각 패턴을 형성한 LED-B의 전계 발광 세기가 더욱 큰 것을 확인하였다. 또한, 육각 패턴에 산화아연 나노막대를 성장시켜 융합구조를 형성한 LED-C에서는 LED-B와 -A보다 더 큰 전계 발광세기를 확인할 수 있었다. 특히, 인가 전류가 고전류로 갈수록 LED-C의 발광세기가 더욱 강해지는 것으로 효율저하현상 또한 나노융합구조의 LED-C에서 확인할 수 있었다. 이는 기존 산화아연 투명전극에 육각형의 패턴 및 나노막대융합구조를 형성할 경우 전류퍼짐현상을 극대화 할 뿐 아니라, 추가적인 광추출효율 향상 효과에 의해 질화갈륨 기반LED 소자의 광효율이 증가된 것으로 판단된다.

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Influences of direction for hexagonal-structure arrays of lens patterns on structural, optical, and electrical properties of InGaN/GaN MQW LEDs

  • Lee, Kwang-Jae;Kim, Hyun-June;Park, Dong-Woo;Jo, Byoung-Gu;Oh, Hye-Min;Hwang, Jeong-Woo;Kim, Jin-Soo;Lee, Jin-Hong;Leem, Jae-Young
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.153-153
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    • 2010
  • Recently, to develop GaN-based light-emitting diodes (LEDs) with better performances, various approaches have been suggested by many research groups. In particular, using the patterned sapphire substrate technique has shown the improvement in both internal quantum efficiency and light extraction properties of GaN-based LEDs. In this paper, we discuss the influences of the direction of the hexagonal-structure arrays of lens-shaped patterns (HSAPs) formed on sapphire substrates on the crystal, optical, and electrical properties of InGaN/GaN multi-quantum-well (MQW) LEDs. The basic direction of the HSAPs is normal (HSAPN) with respect to the primary flat zone of a c-plane sapphire substrate. Another HSAP tilted by 30o (HSAP30) from the HSAPN structure was used to investigate the effects of the pattern direction. The full width at half maximums (FWHMs) of the double-crystal x-ray diffraction (DCXRD) spectrum for the (0002) and (1-102) planes of the HSAPN are 320.4 and 381.6 arcsecs., respectively, which are relatively narrower compared to those of the HSP30. The photoluminescence intensity for the HSAPN structure was ~1.2 times stronger than that for the HSAP30. From the electroluminescence (EL) measurements, the intensity for both structures are almost similar. In addition, the effects of the area of the individual lens pattern consisting of the hexagonal-structure arrays are discussed using the concept of the planar area fraction (PAF) defined as the following equation; PAF = [1-(patterns area/total unit areas)] For the relatively small PAF region up to 0.494, the influences of the HSAP direction on the LED characteristics were significant. However, the direction effects of the HSAP became small with increasing the PAF.

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Development of 80 kW RF Thermal Plasma Torch System for Mass Production and Research of Si Nano-Powder Manufacturing Process (양산용 80 kW급 RF Plasma Torch System 개발 및 Si 나노분말 제조 공정 연구)

  • Song, Seok-Kyun;Son, Byungkoo;Kim, Byunghoon;Lee, Moonwon;Sin, Myungsun;Choi, Sunyong;Lee, Kyu-Hang;Kim, Seong-In
    • Journal of the Korean Vacuum Society
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    • v.22 no.2
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    • pp.66-78
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    • 2013
  • In order to develop of 80 kW RF plasma torch system, we achieved three-dimensional simulations for the extraction of more information as temperature in torch and fluid behavior analysis, etc. The position of powder injection tube, the plasma discharge characteristics with various input current and various length of ceramic tube, and the plasma temperature characteristics with process gas flow rate such those was simulated. RF thermal plasma torch designed by simulation was manufactured that was measured to the maximum of 89.3 kW power. The mass production using developed 80 kW RF thermal plasma torch system were investigated by characteristics manufactured of Si nano powder. The mass-production level of Si nano-powder was average of 539 g/hr and high yield rate of 71.6%, respectively. The particle size distribution $D_{99}/D_{50}$ of manufacturing nano-powder was investigated to 1.98 as a good uniform.

Development of a Noble Gas Isotope Dilution Mass Spectrometric System Combined with a Cryogenic Cold Trap (초저온 냉각 트랩을 결합한 비활성기체 동위원소 희석 질량분석 시스템의 제작)

  • HONG, BONGJAE;SHIN, DONGYOUB;PARK, KEYHONG;HAHM, DOSHIK
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.27 no.3
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    • pp.144-157
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    • 2022
  • Noble gases, which are chemically inert and behave conservatively in marine environments, have been used as tracers of physical processes such as air-sea gas exchange, mixing of water masses, and distribution of glacial meltwater in the ocean. For precise measurements of Ne, Ar, and Kr, we developed a mass spectrometric system consisting of a quadrupole mass spectrometer (QMS), a high vacuum preparation line, an activated charcoal cryogenic trap (ACC), and a set of isotope standard gases. The high vacuum line consists of three sections: (1) a sample extraction section that extracts the dissolved gases in the sample and mixes them with the standard gases, (2) a gas preparation section that removes reactive gases using getters and separates the noble gases according to their evaporation points with the ACC, and (3) a gas analysis section that measures concentrations of each noble gas. The ACC attached to the gas preparation section markedly lowered the partial pressures of Ar and CO2 in the QMS, which resulted in a reduced uncertainty of Ne isotope analysis. The isotope standard gases were prepared by mixing 22Ne, 36Ar, and 86Kr. The amounts of each element in the mixed standard gases were determined by the reverse isotope dilution method with repeated measurements of the atmosphere. The analytical system achieved precisions for Ne, Ar, and Kr concentrations of 0.7%, 0.7%, and 0.4%, respectively. The accuracies confirmed by the analyses of air-equilibrated water were 0.5%, 1.0%, and 1.7% for Ne, Ar, and Kr, respectively.