• 제목/요약/키워드: gas recovery

검색결과 1,082건 처리시간 0.034초

MEMBRANE-BASED GAS AND VAPOR SEPARATIONS

  • Wijmans, Hans
    • 한국막학회:학술대회논문집
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    • 한국막학회 2004년도 Proceedings of the second conference of aseanian membrane society
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    • pp.3-6
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    • 2004
  • Industrial gas separation by membranes began in 1980 with the introduction of hollow-fiber polysulfone membrane systems by Permea, at that time a division of Monsanto. This first application was the recovery of hydrogen from ammonia reactor purge gas and was soon followed by the generation of nitrogen from air. Today, membrane gas separation ranks second behind cryogenic distillation in terms of nitrogen production, and this application has drawn the industrial gas companies into the membrane field.(omitted)

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껌씹기가 개복수술 환자의 장운동 회복과 구강불편감에 미치는 효과 (The Effects of Gum-Chewing on the Recovery of Bowel Movement and Oral Cavity Discomfort after Abdominal Surgery)

  • 방설영;정금자;정혜연;안소현
    • 임상간호연구
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    • 제14권3호
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    • pp.15-25
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    • 2008
  • Purpose: This study was aimed to investigate the effects of gum-chewing on the recovery of bowel movement and oral cavity discomfort after abdominal surgery. Method: The nonequivalent control group, non-syncronized repeated treatment design was used. A total of 99 patients were participated in the study. The 44 patients were in the experimental group and the rest in the control group. The experimental group chewed gum three times a day until they passed gas. As the patient reported gas-passing, bowel movement time, subjective symptoms of oral cavity, and oral status were recorded precisely. The frequency, percentage, $x^2$-test and t-test were analyzed by SPSS PC 12.0. Results: There were significant differences in bowel movement, gas passing, oral cavity symptoms, and oral status scores between the experimental and the control group. Conclusion: The findings of the study demonstrated the fact that gum-chewing helps early recovery from post-operative ileus and thirst. It is because gum chewing stimulates bowel mobility and secretion of saliva. Thus gum-chewing seems to be an effective nursing intervention in reducing post-operative side effects for patients with abdominal surgery.

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Sol-Gel 방법으로 제작된 SnO2 seed layer를 적용한 고반응성 ZnO 가스 센서 (High-sensitivity ZnO gas Sensor with a Sol-gel-processed SnO2 Seed Layer)

  • 김상우;박소영;한태희;이세형;한예지;이문석
    • 센서학회지
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    • 제29권6호
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    • pp.420-426
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    • 2020
  • A metal oxide semiconductor gas sensor is operated by measuring the changes in resistance that occur on the surface of nanostructures for gas detection. ZnO, which is an n-type metal oxide semiconductor, is widely used as a gas sensor material owing to its high sensitivity. Various ZnO nanostructures in gas sensors have been studied with the aim of improving surface reactions. In the present study, the sol-gel and vapor phase growth techniques were used to fabricate nanostructures to improve the sensitivity, response, and recovery rate for gas sensing. The sol-gel method was used to synthesize SnO2 nanoparticles, which were used as the seed layer. The nanoparticles size was controlled by regulating the process parameters of the solution, such as the pH of the solution, the type and amount of solvent. As a result, the SnO2 seed layer suppressed the aggregation of the nanostructures, thereby interrupting gas diffusion. The ZnO nanostructures with a sol-gel processed SnO2 seed layer had larger specific surface area and high sensitivity. The gas response and recovery rate were 1-7 min faster than the gas sensor without the sol-gel process. The gas response increased 4-24 times compared to that of the gas sensor without the sol-gel method.

Dual Path Magnetic-Coupled AC-PDP Sustain Driver with Low Switching Loss

  • Lee Jun-Young
    • Journal of Power Electronics
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    • 제6권3호
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    • pp.205-213
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    • 2006
  • A cost-effective magnetic-coupled AC-PDP sustain driver with low switching loss is proposed. The transformer reduces current stress in the energy recovery switches which affects circuit cost and reliability. The turns-ratio can be used to adjust the sustain pulse slopes which affect gas discharge uniformity. Dividing the recovery paths prevents abrupt changes in the output capacitance and thereby switching losses of the recovery switches is reduced. In addition, the proposed circuit has a more simple structure because it does not use the recovery path diodes which also afford a large recovery current. By reducing the current stress and device count in the energy recovery circuit, the proposed driver may have decreased circuit cost and improved circuit reliability.

Implementing a Dielectric Recovery Strength Measuring System for Molded Case Circuit Breakers

  • Cho, Young-Maan;Rhee, Jae-ho;Baek, Ji-Eun;Ko, Kwang-Cheol
    • Journal of Electrical Engineering and Technology
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    • 제13권4호
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    • pp.1752-1758
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    • 2018
  • In a low-voltage distribution system, the molded case circuit breaker (MCCB) is a widely used device to protect loads by interrupting over-current; however the hot gas generated from the arc discharge in the interrupting process depletes the dielectric recovery strength between electrodes and leads to re-ignition after current-zero. Even though the circuit breaker is ordinarily tripped and successfully interrupts the over-current, the re-ignition causes the over-current to flow to the load again, which carries over the failure interruption. Therefore, it is necessary to understand the dielectric recovery process and the dielectric recovery voltage of the MCCB. To determine these characteristics, a measuring system comprised of the experimental circuit and source is implemented to apply controllable recovery voltage and over-current. By changing the controllable recovery voltage, in this work, re-ignition is driven repeatedly to obtain the dielectric recovery voltage V-t curve, which is used to analyze the dielectric recovery strength of the MCCB. A measuring system and an evaluation technique for the dielectric recovery strength of the MCCB are described. By using this system and method, the measurement to find out the dielectric recovery characteristics after current-zero for ready-made products is done and it is confirmed that which internal structure of the MCCB affects the dielectric recovery characteristics.

터보 팽창기를 활용한 NGL 회수공정 최적화에 대한 연구 (An Optimization Study on the NGL Recovery Process Using Turbo-expander)

  • 김유미;조정호
    • 한국산학기술학회논문지
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    • 제12권3호
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    • pp.1473-1478
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    • 2011
  • 본 연구에서는 전처리 공정을 거친 천연가스로부터 에탄 이상의 성분을 회수하기 위한 탈메탄탑에 대한 전산모사와 공정 최적화를 수행하였다. 전처리된 천연가스는 탈메탄탑 상부의 차가운 기상류와의 열교환 및 프로판 냉동 사이클이 포함된 예냉공정을 거친 후에 기상과 액상이 분리된다. 기상은 터보 팽창기를 거치면서 생산되는 동력을 residue gas의 압력을 높이기 위한 압축기에 전달한 후에 부분적으로 응축되어 탈메탄탑 상부로 주입된다. 액상류는 줄-톰슨 팽창 밸브를 거친 후 더욱 냉각되어 탈메탄탑의 중간부로 주입된다. 원료 대비 에탄의 회수율은 75% 이상으로 정하였으며, 탈메탄탑의 탑저에서 에탄에 대한 메탄의 몰비는 0.015로 정하였다. 한편 프로판 냉동 사이클의 heat duty를 최소화시키기 위해서 원료를 분리하여 side reboiler와 열교환시킴으로써 냉열의 일부 회수할 수 있었다.

Installation and Test Run of Comprehensive Analysis System for SF6 in Power Equipment

  • Lee, Jeong Eun;Kim, Kwang Sin;Kim, Ah Reum;Park, Seoksoon;Kim, Kyeongsook
    • KEPCO Journal on Electric Power and Energy
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    • 제3권1호
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    • pp.41-47
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    • 2017
  • After $SF_6$, which is being used in power equipment as an insulating material, is classified as one of the 6 major greenhouse gases, the maintenance and the refinement of used $SF_6$ started to get attention. In regard to this, KEPCO Research Institute (KEPRI) is developing $SF_6$ recovery and refinement technology starting with establishing a comprehensive $SF_6$ analysis system. With the analysis system, qualitative and quantitative analyses of the purity and the impurities of $SF_6$ before and after recovery, and before and after refinement have been carried out. The analysis system is comprised of GC-DID (Gas Chromatograph -Discharge Ionization Detector) for trace impurities analysis, GC-TCD (Thermal Conductivity Detector) for analyses of $SF_6$ purity and major impurities concentration from several hundred ppm up to percent range, GC-MSD (Mass Selective Detector) for analyses of impurities not included in standard gas, FT-IR (Fourier Transform-Infrared) Spectrometer for analysis of HF and $SO_2$, and moisture analyzer for analysis of moisture below 100 ppm. With this analysis system, complete analysis method of $SF_6$ has been established. This analysis system is being used in the maintenance of power equipment and the development of $SF_6$ recovery and refinement technologies. In this paper, the analysis results of four samples - gas and liquid phase $SF_6$ samples from a $SF_6$ refinement system before and after refinement are presented.

핵융합 수소동위원소의 회수공정과 위험관리에 관한 연구 (Study on the Recovery Process and Risk Management for Fusion Hydrogen Isotopes)

  • 정우찬;문흥만;장민호;이현곤;황명환;우인성
    • 한국가스학회지
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    • 제23권6호
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    • pp.81-89
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    • 2019
  • 본 연구는 핵융합 배기가스에서 수소동위원소를 회수하기 위한 공정에 관한 것이다. 이 공정은 불순물을 제거하고 수소동위원소만을 최대로 회수하는 것이 목표이다. 수소와 중수소를 이용한 실험을 통해 수소동위원소의 회수가능성을 확인하고자 하였다. 수소가 포함된 배기가스는 주로 분리막 공정에서 불순물을 제거하여 순수한 수소만을 회수하고, 헬륨-글로우 방전 세척 공정의 배기가스는 초저온 흡착 공정을 이용해서 수소를 회수하였다. 또한 정성적 위험성 평가를 위해 HAZOP 분석을 실시하였다. 시나리오 분석을 위해서 피해 예측 ALOHA 프로그램을 사용하여 영향 범위를 산출하고, 안전성 방안을 모색하였다.

DEVELOPMENT OF HIGH EFFICIENCY COGENERATION SYSTEM USING BIOGAS FOR THE LOWER POLLUTION OF THE ENVIRONMENTAL

  • Park, J.S.;Ishii, K.;Terao, H.
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2000년도 THE THIRD INTERNATIONAL CONFERENCE ON AGRICULTURAL MACHINERY ENGINEERING. V.III
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    • pp.670-675
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    • 2000
  • The purpose of the study is development and investigation about basic performance of the system operation on a dual fueled cogeneration system(CGS), which is operated with biogas and gas oil. As often seen in dual fueled CGS performance, the electric generating efficiency was obtained about 26□. Methane contained in the biogas could not bum completely at lower load, and it was discharged into exhaust gas. Considerable amount of the methane burned in the exhaust pipe, and the heat recovery ratio was 42□ on heat balance. As a result, the total heat efficiency, which is a summation of generating efficiency and heat recovery efficiency reached to about 70□. The supply of biogas into the engine reduces smoke density and NOx concentration in exhaust gas. At lower load, methane burned slowly and large portion of it was discharged without burning. Therefore the measures are desirable that promotes combustion of methane at lower load.

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