• Title/Summary/Keyword: Density Current

검색결과 5,654건 처리시간 0.033초

Development of a predictive model of the limiting current density of an electrodialysis process using response surface methodology

  • Ali, Mourad Ben Sik;Hamrouni, Bechir
    • Membrane and Water Treatment
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    • 제7권2호
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    • pp.127-141
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    • 2016
  • Electrodialysis (ED) is known to be a useful membrane process for desalination, concentration, separation, and purification in many fields. In this process, it is desirable to work at high current density in order to achieve fast desalination with the lowest possible effective membrane area. In practice, however, operating currents are restricted by the occurrence of concentration polarization phenomena. Many studies showed the occurrence of a limiting current density (LCD). The limiting current density in the electrodialysis process is an important parameter which determines the electrical resistance and the current utilization. Therefore, its reliable determination is required for designing an efficient electrodialysis plant. The purpose of this study is the development of a predictive model of the limiting current density in an electrodialysis process using response surface methodology (RSM). A two-factor central composite design (CCD) of RSM was used to analyze the effect of operation conditions (the initial salt concentration (C) and the linear flow velocity of solution to be treated (u)) on the limiting current density and to establish a regression model. All experiments were carried out on synthetic brackish water solutions using a laboratory scale electrodialysis cell. The limiting current density for each experiment was determined using the Cowan-Brown method. A suitable regression model for predicting LCD within the ranges of variables used was developed based on experimental results. The proposed mathematical quadratic model was simple. Its quality was evaluated by regression analysis and by the Analysis Of Variance, popularly known as the ANOVA.

수산을 사용한 크롬도금의 광택성에 미치는 전류밀도와 전류효율의 영향 (Effect of Current Density and Current Efficiency on the Decorative Property of Chromium Deposits using Oxalic Acid)

  • 오이식;박정덕
    • 동력기계공학회지
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    • 제5권1호
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    • pp.89-96
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    • 2001
  • Decorative property of chromium deposition from oxalic acid bath containing chromium oxide and ammonium sulfate, has been examined over a wide range of bath compositions and plating conditions. The followings were determined as optimum bath composition, $CrO_3\;200{\sim}250g/{\ell},\;H_2C_2O_4{\cdot}2H_2O\;500{\sim}700g/{\ell},\;(NH_4){_2}SO_4\;40{\sim}120g/{\ell}$, and operation conditions; pH $2.0{\sim}2.5$, current density of $15{\sim}250Adm^2 $ at the bath temperatures of $30{\sim}80^{\circ}C$. Bright chromium deposits were obtained over a wide range of ammonium sulfate concentration, bath temperature, and current density. The current efficiency decreased with increasing current density and bath pH, and increased with Increasing bath temperature. The highest current efficiency was obtained in the bath containing $80g/{\ell}$ of ammonium sulfate. Bright chromium deposits were not obtained at conditions of all the highest current efficiencies.

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The Investigation of COD Treatment and Energy Consumption of Urban Wastewater by a Continuous Electrocoagulation System

  • DEDE SAGSOZ, Yesim;YILMAZ, Alper Erdem;EKMEKYAPAR TORUN, Fatma;KOCADAGISTAN, Beyhan;KUL, Sinan
    • Journal of Electrochemical Science and Technology
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    • 제13권2호
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    • pp.261-268
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    • 2022
  • In this study, electrochemical treatment of urban wastewater with electrical conductivity of 1000 μS cm-1 and chemical oxygen demand of 250 mg L-1 was investigated using the variables of initial pH value, current density and flow rate. Electrocoagulation was used, in which aluminum and stainless steel were selected, as the electrochemical treatment process. The electrocoagulation process was operated in continuous mode. The data obtained in experimental studies show that the best COD removal efficiency occurred in experiments where the initial pH value was 6. The increase in current density from 5 A to 15 A decreased the removal efficiency from 79 to 67%. The increase in flow rate under constant current density also reduced the efficiency of removal as expected. In experiments in which current density and flow rate were examined together, the increase in flow rate allowed the application of higher current densities. This situation led to considerable reductions in energy consumption values, even if the COD removal efficiency did not significantly increase. The high COD removal obtained with the use of high flow rate and high current density indicates that the electrocoagulation process can be used for high flow rate municipal wastewater treatment.

고성능 아연-이온 전지의 고품질 집전체를 위한 그래핀 필름의 결함 제어 (Controlling Defects in Graphene Film for Enhanced-Quality Current Collector of Zinc-Ion Batteries with High Performance)

  • 이영근;안건형
    • 한국재료학회지
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    • 제33권4호
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    • pp.159-163
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    • 2023
  • Zinc-ion Batteries (ZIBs) are currently considered to be effective energy storage devices for wearable electronics because of their low cost and high safety. Indeed, ZIBs show high power density and safety compared with conventional lithium ion batteries (LIBs) and exhibit high energy density in comparison with supercapacitors (SCs). However, in spite of their advantages, further current collector development is needed to enhance the electrochemical performance of ZIBs. To design the optimized current collector for high performance ZIBs, a high quality graphene film is suggested here, with improved electrical conductivity by controlling the defects in the graphene film. The graphene film showed improved electrical conductivity and good electron transfer between the current collector and active material, which led to a high specific capacity of 346.3 mAh g-1 at a current density of 100 mA g-1, a high-rate performance with 116.3 mAh g-1 at a current density of 2,000 mA g-1, and good cycling stability (68.0 % after 100 cycles at a current density of 1,000 mA g-1). The improved electrochemical performance is firmly because of the defects-controlled graphene film, leading to improved electrical conductivity and thus more efficient electron transfer between the current collector and active material.

3차원 자기공명 전류밀도 영상법의 수치적 해석 (Numerical Analysis of Three-Dimensional Magnetic Resonance Current Density Imaging (MRCDI))

  • B.I. Lee;S.H. Oh;E.J. Woo;G. Khang;S.Y. Lee;M.H. Cho;O. Kwon;J.R. Yoon;J.K. Seo
    • 대한의용생체공학회:의공학회지
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    • 제23권4호
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    • pp.269-279
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    • 2002
  • 인체에 전류주입하면, 내부에는 전압 및 전류밀도의 분포가 형성된다 이때, 인체내부의 전류밀도와 전류를 주입하는 도선에 흐르는 전류는 자장을 형성하게 된다. 인체내부에 유기된 자속밀도는 자기공명영상의 위상을 변화시키므로. 위상영상으로부터 자속밀도를 측정할 수 있다. 자속밀도의 curl을 취하여 전류밀도를 구하면, 주입전류에 의한 내부의 전류밀도 분포를 영상화하는 것이 가능하다. 이러한 자기공명 전류밀도 영상법을 자기공명 임피던스 단층촬영에 응용하여 고해상도의 저항률 영상을 복원하는 연구가 진행되고 있다. 본 논문에서는 인체와 간은 전도성 물체에 전류를 주입할 때. 내부에 형성되는 전압, 전류밀도 및 자속밀도의 3차원적인 분포를 수치적으로 계산하는 방법을 기술한다. 이러한 수치적인 해석기술은 자기공명 전류밀도 영상법의 실험방법 설계와 자기공명 임피던스 단층촬영의 영상복원 알고리즘 개발에 필수적인 부분이다. 본 논문에서는 유한요소법과 Biot-Savart 법칙에 기반하여, 여러가지 모델에서 계산한 결과를 기술하고, 그 해석을 통하여 수치적인 해의 정확도와 유의성을 검증하였다.

Al6061합금의 PEO 피막 형성에 미치는 AC 전류밀도의 영향 (Effect of AC Current Density on the PEO Film Formation of Al6061 Alloy)

  • 박철기;문성모;정인모;윤대수
    • 한국표면공학회지
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    • 제52권3호
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    • pp.138-144
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    • 2019
  • In this work, PEO (Plasma Electrolytic Oxidation) film formation behavior of Al6061 alloy was investigated as a function of applied current density of AC at 310 Hz in the range from $120mA/cm^2$ to $300mA/cm^2$ in 0.5 M $Na_2SiO_3$ solution. When applied current density is lower than a critical voltage of about $132mA/cm^2$, voltage reaches a steady-state values less than 120 V without generation of arcs and metallic color of the alloy surface remains. On the other hand, when applied current density exceeds about $132mA/cm^2$, voltage increases continuously with time and arcs are generated at more than 175 V, resulting in the formation of PEO films with grey colors. Two different types of arcs, large size and small number of arcs with orange color, and small size and large number of arcs with white color, were generated at the same time when the PEO film thickness exceeds about $50{\mu}m$, irrespective of applied current density. Formation efficiency of the PEO films was found to increase with increasing applied current density and the growth rate was obtained to be about $5{\mu}m/min$ at $300mA/cm^2$. It was also found that surface roughness of the PEO films with $70{\mu}m$ thickness is not dependent on the applied current density.

니켈 표면처리공정에서 전류밀도 효과분석 (Effect of Current Density on Nickel Surface Treatment Process)

  • 김용운;정구형;홍인권
    • 공업화학
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    • 제19권2호
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    • pp.228-235
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    • 2008
  • 니켈 표면처리 공정에서 전류밀도에 따라 니켈의 전착두께가 증가되었으며, 증가폭은 $6{\sim}10A/dm^2$에서 저전류보다 높게 나타났다. 전류밀도를 측정하기 위해 Hull-cell 분석을 수행 하였다. 최적 공정온도는 $60^{\circ}C$, pH는 3.5~4.0이었고, 전해용액 중 니켈이온의 농도는 300 g/L 이상에서 농도에 따라 전착두께가 증가되었다. 전류밀도에 따라 용액 중 니켈이온 감소 속도가 증가되었는데, 이는 음극표면에서 니켈 전착 량에 따른 전착두께의 증가를 나타낸다. 그러나 전착속도가 빠를 경우 니켈 전착 층의 치밀성은 저하되며, 표면의 상태는 불규칙하게 변화된다. 니켈이온의 전착과정이 불규칙하게 일어나 조직의 pin hole 등을 야기해 표면특성을 저하시키는 것으로 확인되었다. 광택니켈 전착 후 25 h 내식을 유지한 결과, 낮은 전류밀도를 유지하는 것이 내식특성이 우수한 것으로 나타났다. 프로그램모사 결과, 전류밀도가 높아질수록 확산 층의 두께는 증가하며, 음극표면의 농도는 낮아진다. 농도분포는 낮은 전류밀도에서 고른 분포를 나타내었으며 이는 일정한 전착두께를 예측할 수 있다. 생산성 저하를 예방하기 위해 공정시간은 크게 변화시키지 않았으며, 전류밀도와 전착두께를 변화시키면서 공정변수를 조절하였다. 본 연구의 표면분석 결과 조직특성이나 내식성 등의 표면 물성이 낮은 전류밀도를 사용할 경우에 더욱 우수한 것으로 나타났다.

Flip Chip Assembly Using Anisotropic Conductive Adhesives with Enhanced Thermal Conductivity

  • Yim, Myung-Jin;Kim, Hyoung-Joon;Paik, Kyung-Wook
    • 마이크로전자및패키징학회지
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    • 제12권1호
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    • pp.9-16
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    • 2005
  • This paper presents the development of new anisotropic conductive adhesives with enhanced thermal conductivity for the wide use of adhesive flip chip technology with improved reliability under high current density condition. The continuing downscaling of structural profiles and increase in inter-connection density in flip chip packaging using ACAs has given rise to reliability problem under high current density. In detail, as the bump size is reduced, the current density through bump is also increased. This increased current density also causes new failure mechanism such as interface degradation due to inter-metallic compound formation and adhesive swelling due to high current stressing, especially in high current density interconnection, in which high junction temperature enhances such failure mechanism. Therefore, it is necessary for the ACA to become thermal transfer medium to improve the lifetime of ACA flip chip joint under high current stressing condition. We developed thermally conductive ACA of 0.63 W/m$\cdot$K thermal conductivity using the formulation incorporating $5 {\mu}m$ Ni and $0.2{\mu}m$ SiC-filled epoxy-bated binder system to achieve acceptable viscosity, curing property, and other thermo-mechanical properties such as low CTE and high modulus. The current carrying capability of ACA flip chip joints was improved up to 6.7 A by use of thermally conductive ACA compared to conventional ACA. Electrical reliability of thermally conductive ACA flip chip joint under current stressing condition was also improved showing stable electrical conductivity of flip chip joints. The high current carrying capability and improved electrical reliability of thermally conductive ACA flip chip joint under current stressing test is mainly due to the effective heat dissipation by thermally conductive adhesive around Au stud bumps/ACA/PCB pads structure.

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중성염화물욕에서 아연의 고전류밀도 전착특성 (Electrodeposition behaviors of zinc from neutral chloride baths at high current density)

  • 김영근
    • 한국표면공학회지
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    • 제29권4호
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    • pp.219-228
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    • 1996
  • Neutral Zinc Electroplating(NZE) utilizing the electrolyte of pH 6 to 8 has advantages in waste treatment and the protection of equipment. NZE is beneficially used in chromating treatment, but the limiting current density and the current efficiency are low. Therefore this study is investigated to analyse the characteristics of NZE and to obtain high current density and current efficiency. The deposition potential of zinc in the NZE bath is about 110mV, which is lower than acidic bath. The current density possibily increases up to 60A/d$\m^2$ in lower complexing agent content and pH 6. More than 90% of cathodic current efficiency was obtained in NZE bath. The NZE morphology shows smaller grains than acidic bath. The addition of 4$m\ell$/1 second brightener gives finer morphology. As pH becomes higher, (002) plan decreases and (100), (101) and (110) planes increase in the no additives solution.

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$\mu$SMES 코일용 초전도도체의 전류용량에 관한 연구 (Study on Current Capacity of the SC Conductor for $\mu$SMES Coil)

  • 김해종;성기철;조전욱;진홍범;류강식;류경우
    • 한국초전도ㆍ저온공학회논문지
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    • 제1권1호
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    • pp.22-27
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    • 1999
  • Recently, small-sized superconducting magnetic storage($\mu$SMES) coils become commercially as an energy storage device for a power conditioner. In design and fabrication of the $\mu$SMES coils, to determine optimum current capacity of the superconducting(SC) conductors is one of the important things. We thus investigated the effect of conductor's current capacity, current density, and stability on the coil's maximum stored energy density in consideration of AC losses and switching device's capacities in a power converter. The results show that the smaller current capacity of the SC conductors is preferred for the $\mu$SMES coils but can increase their induced voltage excessively.

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