• 제목/요약/키워드: ED Process

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RO/NF/ED 연계 공정에 의한 고경도 담수 제조 (The Hardness Water Production By RO/NF/ED Linking Process From Deep Seawater)

  • 문덕수;김광수;지호;최미연;정현지;김현주
    • 한국해양환경ㆍ에너지학회지
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    • 제16권4호
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    • pp.227-238
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    • 2013
  • 본 연구의 목적은 해수담수화 과정 중 황산이온과 염소이온은 제거하고 유용미네랄인 마그네슘, 칼슘은 잔존 시키는 미네랄 수질 조정 기술로 먹는물 수질기준에 맞는 고경수 제조 공정 개발에 있다. 역삼투막(RO)에 통과시켜 농축수(Concentrated deep seawater)와 탈염수(desalted deep seawater)를 제조하고, 나노여과막(NF)를 사용하여 염화나트륨이 제거되지 않은 1차 미네랄 농축수(Mineral enriched deep seawater)를 제조하여, 전기투석 이온교환막(ED)을 가동하여 염화나트륨을 제거한 탈염 미네랄농축수(Mineral enriched desalted water)를 제조하여 이를 RO 탈염수와 희석하여 고경도 먹는해양심층수를 제조하였다. 역삼투막은 해수(해양심층수) 원수에서 용존물질과 담수를 분리할 수 있으며, 2차에 걸쳐 역삼투막을 사용하면, 용존성분 중 99.9% 이상 제거되고, 경도 1이하, 염소이온의 농도 2.3 mg/L인 용존물질이 완전히 제거된 탈염수(순수)를 제조할 수 있었다. 나노여과막 (NF 막)의 간극은 $10^{-9}$ m으로 마그네슘과 칼슘은 50%정도 통과시키며, 염소이온과 나트륨 같은 일가이온은 95%이상 통과한다. 나노여과막은 마그네슘과 칼슘과 같은 경도 성분과 나트륨과 염소이온과 같은 염분성분을 분리 농축할 수 있지만, 완벽하게 분리하지는 못한다. 전기투석막(ED)은 전기전도도에 따라 경도성분의 이가이온과 염분성분인 일가이온이 분리된다. 전기전도도 20 mS/cm 이상에서 경도성분(마그네슘이온, 칼슘 이온 등)은 제거되지 않는 반면, 염분성분 (나트륨이온, 염소이온 등)은 지속적으로 제거되었다. 따라서, 나노여과막을 이용하여 마그네슘과 칼슘과 같은 경도 성분을 농축하고, 전기투석막을 이용하여 경도농축수에서 염분성분을 분리하여 경도농도 12,600 mg/L, 염소이온 농도 2,446 mg/L의 염분성분이 배제된 고경도 농축수를 제조할 수 있었다. 이러한 고경도수를 역삼투막을 이용하여 용존물질이 모두 제거된 2차 RO 생산수로 10배 희석하면 염소이온 농도 244 mg/L 로 먹는물 수질기준에 적합하면서 경도농도 1,260 mg/L 인 고경도 수 제조도 가능하였다. RO/NF/ED 또는 NF/ED 연계공정은 해수의 증발 없이 역삼투막, 나노여과막과 전기투석막만을 이용하여 염소이온과 나트륨, 칼륨, 황산이온과 같은 염분성분을 제거하면서 마그네슘과 칼슘과 같은 경도성분은 농축할 수 있어서 먹는물 수질기준에 적합한 고경도수 제조가 가능하였으며, 이 과정 중 소모되는 에너지를 줄일 수 있었다.

전기투석과 이온교환수지를 이용한 스테인레스 산업의 산세폐수 내 질산성 질소의 제거 (Removal of Nitrate-Nitrogen in Pickling Acid Wastewater from Stainless Steel Industry Using Electrodialysis and Ion Exchange Resin)

  • 윤영기;박연진;오상화;신원식;최상준;류승기
    • 한국환경과학회지
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    • 제18권6호
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    • pp.645-654
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    • 2009
  • Lab-scale Electrodialysis(ED) system with different membranes combined with before or after pyroma process were carried out to remove nitrate from two pickling acid wastewater containing high concentrations of $NO_3\;^-$(${\approx}$150,000 mg/L) and F($({\approx}$ 160,000 mg/L) and some heavy metals(Fe, Ti, and Cr). The ED system before Pyroma process(Sample A) was not successful in $NO_3\;^-$ removal due to cation membrane fouling by the heavy metals, whereas, in the ED system after Pyroma process(Sample B), about 98% of nitrate was removed because of relatively low $NO_3\;^-$ concentration (about 30,000 mg/L) and no heavy metals. Mono-selective membranes(CIMS/ACS) in ED system have no selectivity for nitrate compared to divalent-selective membranes(CMX/AMX). The operation time for nitrate removal time decreased with increasing the applied voltage from 10V to 15V with no difference in the nitrate removal rate between both voltages. Nitrate adsorption of a strong-base anion exchange resin of $Cl\;^-$ type was also conducted. The Freundlich model($R^2$ > 0.996) was fitted better than Langmuir mode($R^2$ > 0.984) to the adsorption data. The maximum adsorption capacity ($Q^0$) was 492 mg/g for Sample A and 111 mg/g for Sample B due to the difference in initial nitrate concentrations between the two wastewater samples. In the regeneration of ion exchange resins, the nitrate removal rate in the pickling acid wastewater decreased as the adsorption step was repeated because certain amount of adsorbed $NO_3\;^-$ remained in the resins in spite of several desorption steps for regeneration. In conclusion, the optimum system configuration to treat pickling acid wastewater from stainless-steel industry is the multi-processes of the Pyroma-Electrodialysis-Ion exchange.

Analysis of Errors on Death Certificate for Trauma Related Death

  • Chang, Jun Hyuk;Kim, Sun Hyu;Lee, Hyeji;Choi, Byungho
    • Journal of Trauma and Injury
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    • 제32권3호
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    • pp.127-135
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    • 2019
  • Purpose: This study was to investigate errors of death certificate (DC) issued for patients with trauma. Methods: A retrospective review for DC issued after death related to trauma at a training hospital trauma center was conducted. Errors on DC were classified into major and minor errors depending on their influence on the process of selecting the cause of death (COD). All errors were compared depending on the place of issue of DC, medical doctors who wrote the DC, and the number of lines filled up for COD of DC. Results: Of a total 140 DCs, average numbers of major and minor errors per DC were 0.8 and 3.7, respectively. There were a total of 2.8 errors for DCs issued at the emergency department (ED) and 5.4 errors for DCs issued beyond ED. The most common major error was more than one COD on a single line for DCs issued at the ED and incompatible casual relation between CODs for DCs issued beyond ED. The number of major errors was 0.5 for emergency physician and 0.8 for trauma surgeon and neurosurgeon. Total errors by the number of lines filled up for COD were the smallest (3.1) for two lines and the largest (6.0) for four lines. Conclusions: Numbers of total errors and major errors on DCs related to trauma only were 4 and 0.8, respectively. As more CODs were written, more errors were found.

블록직선이송 방전연삭에 의한 미세전극 가공 및 그래핀 강화 알루미나 복합소재의 마이크로 홀 가공특성 (Fabrication of Micro-electrodes using Liner Block Moving Electrical Discharge Grinding and Characteristics of Micro-hole Machining of Graphene Nanoplatelet-reinforced Al2O3Composites)

  • 정현아;이창훈;강명창
    • 한국기계가공학회지
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    • 제16권1호
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    • pp.149-156
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    • 2017
  • Graphene nanoplatelet (GNP)-reinforced alumina ($Al_2O_3$) is a promising material for micro-partapplications, particularly micro-nozzle shapes, because of its excellent wearresistance. In this study, a $Al_2O_3$/GNPcomposite with 15 vol% graphene nanoplatelets (GNP) was highly densified and fabricated via spark plasma sintering for micro-electrical discharge drilling (Micro-ED drilling) and the wear resistance property of the composite is evaluated via the ball-on-disk method. In addition, the diameter and shape of the micro-electrodes machined by wire electrical discharge grinding (WEDG), block electrical discharge grinding (BEDG), and new linear block moving electrical discharge grinding (LBMEDG) methods are systematically compared and analyzed to observe the micro-hole machining in the micro-ED drilling of the $Al_2O_3$/15vol% GNP composite.

Facile Fabrication and Characterization of In2O3 Nanorods on Carbon Fibers

  • Nagaraju, Goli;Ko, Yeong Hwan;Yu, Jae Su
    • Applied Science and Convergence Technology
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    • 제23권4호
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    • pp.187-191
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    • 2014
  • Indium oxide ($In_2O_3$) nanorods (NRs) which can be expected to increase the device performance in various electronic and electrochemical applications were prepared on carbon fibers via an electrochemical deposition (ED) method. During the ED, the indium hydroxide ($In(OH)_3$) NRs were well grown and firmly attached onto the carbon fibers. After that, they were changed into $In_2O_3$ by dehydration through a thermal annealing. The morphological and structural properties were investigated using field-emission scanning electron microscope images. The crystallinity of as-prepared sample was evaluated by X-ray diffraction. The Fourier transform infrared results confirm that the functional groups are present in the $In_2O_3$ NRs. This facile process of metal oxide nanostructures on carbon fiber can be utilized for flexible electronic and energy related applications.

Taguchi법에 의한 방전가공의 공정변수 최적화 (Optimization of Process Parameters for EDM using Taguchi Design)

  • 최만성
    • 반도체디스플레이기술학회지
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    • 제14권4호
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    • pp.78-83
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    • 2015
  • The method of electrical discharge machining (EDM), one of the processing methods based on non-traditional manufacturing procedures, is gaining increased popularity, since it does not require cutting tools and allows machining involving hard, brittle, thin and complex geometry. Modern ED machinery is capable of machining geometrically complex or hard material components, that are precise and difficult-to-machine such as heat treated tool steels, composites, super alloys, ceramics, etc. This paper reports the results of an experimental investigation by Taguchi method carried out to study the effects of machining parameters on material surface roughness in electric discharge machining of SM45C. The work material was ED machined with graphite and copper electrodes by varying the pulsed current, voltage and pulse time. Investigations indicate that the surface roughness is strongly depend on pulsed current.

에탄올 생산 향상을 위한 발효저해물질 제거와 리그닌 유래 발효저해물질이 에탄올 발효에 미치는 영향 (Enhancement of Ethanol Production by The Removal of Fermentation Inhibitors, and Effect of Lignin-derived Inhibitors on Fermentation)

  • 엄민;신경진;이재원
    • Journal of the Korean Wood Science and Technology
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    • 제44권3호
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    • pp.389-397
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    • 2016
  • 본 연구에서는 옥살산 전처리 바이오매스의 액상가수분해산물에 포함된 발효저해물질을 전기투석과 XAD 수지 처리하여 제거한 후 에탄올을 생산하였다. 전기투석 과정에서 아세트산은 대부분 제거되었으며(95.6%), 비이온성 발효저해물질(Total phenolic compound: TPC, 5-hydroxymethyl furfural: HMF, furfural)은 XAD 수지 처리에 의해 효과적으로 제거되었다. 전기투석과 XAD 수지 처리된 액상가수분해산물로 발효를 수행한 결과 XAD 수지의 침지시간이 짧을수록 에탄올 생산이 향상되었다. 최대 에탄올 생산은 발효 72시간 후 $6.16g/{\ell}$로 전기투석 후 액상가수분해산물을 XAD-4 수지에서 5분 침지하였을 때 나타났다. 리그닌 유래 발효저해물질 중 syringaldehyde는 저농도(1 mM, 2 mM)에서 에탄올 생산을 향상시켰으며 5 mM에서는 발효에 부정적인 영향을 주었다. 리그닌 유래 발효저해물질의 시너지 효과를 확인하고자 합성배지로 발효를 수행하였으며, Syringaldehyde (1 mM)와 ferulic acid (1 mM) 합성배지를 이용하여 발효를 수행한 결과 syringaldehyde보다 ferulic acid의 영향으로 에탄올 생산이 감소했다.

금형면 자동 다듬질 장치의 D/B 구축을 위한 실험적 연구 (Experimental Study of Developing D/B for Polishing Automation of Die and Mold)

  • 안유민
    • 한국생산제조학회지
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    • 제9권2호
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    • pp.80-86
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    • 2000
  • Although polishing process take 30-50% of whole process of manufacturing die and mold it has not been fully automat-ed yet. Considering current trend of manufacturing it is necessary to study on polishing automation. To accomplish automation reliable database must be developed. For developing it polishing mechanism should be defined and a general empirical formula that can be applied widely should be created. In this paper it is found that polishing process must be separated into 2 process such as removing cusp and getting fine surface process and the polishing parameter which is com-posed of major machining parameters and normalization of data can be applied efficiently in making reliable database.

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고온선박엔진용 MoSi$_2$금속간화합물의 경도와 방전가공특성 (Hardness and EDM Processing of MoSi$_2$Intermetallics for High Temperature Ship Engine)

  • 윤한기;이상필
    • 한국해양공학회지
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    • 제16권6호
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    • pp.60-64
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    • 2002
  • This paper describes the machining characteristics of the MoSi$_2$--based composites through the process of electric discharge drilling with various tubular electrodes. In addition to hardness characteristics, microstructures of Nb/MoSi$_2$laminate composites were evaluated from the variation of fabricating conditions, such as preparation temperature, applied pressure, and pressure holding time. MoSi$_2$-based composites have been developed in new materials for jet engines of supersonic-speed airplanes and gas turbines for high-temperature generators. These high performance engines may require new hard materials with high strength and high temperature-resistance. Also, with the exception of grinding, traditional machining methods are not applicable to these new materials. Electric discharge machining (EDM) is a thermal process that utilizes a spark discharge to melt a conductive material. The tool electrode is almost -unloaded, because there is n direct contact between the tool electrode and the work piece. By combining a non-conducting ceramic with more conducting ceramic, it was possible to raise the electrical conductivity. From experimental results, it was found that the lamination from Nb sheet and MoSi$_2$ powder was an excellent strategy to improve hardness characteristics of monolithic MoSi$_2$. However, interfacial reaction products, like (Nb, Mo)SiO$_2$and Nb$_2$Si$_3$formed at the interface of Nb/MoSi$_2$, and increased with fabricating temperature. MoSi$_2$composites, with which a hole drilling was not possible through the conventional machining process, enhanced the capacity of ED-drilling by adding MbSi$_2$, relative to that of SiC or ZrO$_2$reinforcements.