• Title/Summary/Keyword: Cu 제거효율

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Application of Principle in Metal-Ligand Complexation to Remove Heavy Metals : Kind and Concentration Effects of Organic Ligands (금속-Ligand 착염형성에 의한 중금속(重金屬) 제거(除去) 방법(方法)에 관한 연구(硏究);유기 Ligand의 종류와 농도(濃度) 영향(影響))

  • Yang, Jae-E;Shin, Yong-Keon;Kim, Jeong-Je;Park, Jeong
    • Korean Journal of Environmental Agriculture
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    • v.11 no.3
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    • pp.243-252
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    • 1992
  • This research was conducted to investigate the influence of kind and concentration of organic ligands such as humic (HA) or fulvic acid (FA) on the removal of Cu or Pb from the aqueous solution employing the principles in metal-ligand complexation. Increasing HA concentration enhanced the efficiency of Cu or Pb removal, but there existed upper critical concentrations capable of forming maximum HA-metal complex. which ranged 53-289 and 42-315mg/L for Cu and Pb, respectively. At these concentrations. efficiency of removal was 70 to 95 % for Pb, but 13 to 65 % for Cu. Amounts of Cu and Pb which complexed with 100mg HA were estimated to be 7.5 and 34.1mg, respectively. FA-metal complex forming reactions were fitted significantly to the empirical models of Freundlich for Cu and Langmuir for Pb. Fulvic acid precipitated nearly 100% of Pb in solution, but formed precipitates with Cu in only 13 to 29%. Comparing organic ligands. HA had a higher removal efficiency for Cu but FA had such for Pb. Metalligand complex formation was differed from kinds and concentrations of corresponding ligands and metals. Results demonstrated that this principle has a strong potential to be employed for treating heavy metals in aqueous solution.

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The Removal Characteristics of Caesium Ion by Chemical/Ultrafiltration Combination Process (화학적처리/한외여과막 결합공정에 의한 세슘이온의 제거 특성)

  • 정경환;이근우;김길정;박헌휘
    • Journal of Energy Engineering
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    • v.3 no.1
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    • pp.70-76
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    • 1994
  • 본 연구는 방사성 폐액의 처리를 목적으로 화학처리와 한외여과막(UF)의 결합공정에 의해서 세슘이온의 제거특성을 조사하였다. 이 공정은 대상핵종과 선택성이 크고 한외여과막에 의해서 분리가 가능한 거대분자를 주입하여 핵종을 결합시키고, 이를 한외여과막에 의해서 분리 제거하는 개념이다. 실험은 흡착제로서 K2Cu3(Fe(CN6)2)를 제조하여 주입하였고 회분식 UF stirred cell를 이용하였으며, 용액의 pH, 세슘이온의 농도 및 K2Cu3(Fe(CN6)2)의 농도에 따라 세슘이온의 제거효율을 측정하였다. 세슘의 제거효율은 pH 및 K2Cu3(Fe(CN6)2)의 몰비에 따라 결정되며, pH가 5∼6에서 높은 제거율을 나타내었고 Cs/K2Cu3(Fe(CN6)2)의 몰비가 1.5 이하에서 90% 이상 제거되었다. K2Cu3(Fe(CN6)2)에 대한 Cs의 결합특성은 Langmuir isotherm형태의 식으로 나타내어 평가하였으며, 이때 세슘이온의 최대 흡착용량은 1.72 mM/mM K2Cu3(Fe(CN6)2) 이었다.

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Evaluation of Cu Removal from Mine Water in Passive Treatment Methods : Field Pilot Experiments (자연정화 기반의 현장 파일럿 실험을 통한 광산배수 구리 정화효율 평가)

  • Oh, Youn Soo;Park, Hyun Sung;Kim, Dong Kwan;Lee, Jin Soo;Ji, Won Hyun
    • Economic and Environmental Geology
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    • v.53 no.3
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    • pp.235-244
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    • 2020
  • Copper (Cu), one of the main contaminants in the mine drainage from the closed mine area, needs to be removed before exposed to environment because of its toxicity even in the low concentration. In this study, passive treatment based field pilot experiments using limestone and compost media were conducted during 9 months for enhancing Cu removal efficiency of the mine water treatment facility of S mine located in Goseong, Gyeongsangnam-do in South Korea. The pH increase and Cu removal efficiency showed high value at Successive Alkalinity Producing System ( SAPS) > Reducing and Alkalinity Producing System (RAPS) > limestone reactor in a sequence. The compost media using in SAPS and RAPS contributed to raise pH by organic material decomposition with generating alkalinity, thus, Cu removal efficiency increased. Also, experimental results showed that Cu removal efficiency was proportional to pH increase, meaning that pH increase is the main mechanism for Cu removal. Moreover, Sulfate Reduction Bacteria (SRB) was identified to be most activated in SAPS. It is inferred that the sulfate reduction reaction also contributed to Cu removal. This study has the site significance in that the experiments were conducted at the place where the mine water generates. In the future, the results will be useful to select the more effective reactive media used in the treatment facility, which is most appropriate to remediate mine water from the S mine.

Practical Application of Mn-Cu Metal Catalyst for the Removal of Acetaldehyde (아세트알데히드 제거를 위한 Mn-Cu 금속촉매 실용화에 관한 연구)

  • Jung, Sung-Chul;Lee, Seung-Hwan
    • Journal of Digital Convergence
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    • v.10 no.8
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    • pp.201-210
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    • 2012
  • Because sensing odor varies depending on each person, even if the odor is released in line with the legal emission permission concentration levels, it can still become a social issue if a civil complaint is made. The purpose of this research is to study the possibility of putting Mn-Cu metallic oxide catalysts into practical use to economically eliminate acetaldehyde which produces a odor in the industrial process. An optimal operating parameter to eliminate acetaldehyde was deduced through a performance evaluation in the research laboratory and the performance was verified by applying the parameter into an actual facility as an on-the-site experiment through a Scale-up of pilot size. The operating temperature of the metallic oxide catalysts researched so far was at the minimum close to $220^{\circ}C$, and the $220^{\circ}C$ elimination efficiency was 50% or below. However, having experimented by using a Mn-Cu metallic oxide catalyst in this research, optimum elimination efficiency showed when space velocity (GHSV) was equal to or below 6,000 $hr^{-1}$. The average elimination efficiency was 61.2% when the catalyst controlling temperature was $120^{\circ}C$, 93.3% when the catalyst controlling temperature was $160^{\circ}C$, and 94.9% when catalyst controlling temperature was $180^{\circ}C$, thereby reflecting high elimination efficiency. The specific surface area of the catalyst was $200m^2/g$ before use, however, was reduced to $47.162m^2/g$ after 24 months and therefore showed that despite the decrease in specific surface area as time passed, there was no significant influence on the performance. Having operated Mn-Cu metallic oxide catalyst systems for at least two years on a site where there was no inflow of toxins like sulfur compounds and acidic gases, we were able to confirm that elimination efficiency of at least 90% was maintained.

Treatment of Cu(II)-EDTA using Solar/$TiO_2$ Photocatalysis (태양광/$TiO_2$ 광산화를 이용한 Cu(II)-EDTA의 제거)

  • Shin, In-Soo;Lee, Seung-Mok;Yang, Jae-Kyu;Shin, Won-Tae
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.2
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    • pp.163-169
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    • 2005
  • Photocatalytic oxidation of Cu(II)-EDTA has been studied using solar/$TiO_2$ photocatalysis as an energy source. Photocatalysis efficiency on the treatment of Cu(II)-EDTA was investigated using different types of solar collectors as well as by variation of the angles of solar collector solar light intensities, flow rates, and areas of solar collector. effect of $H_2O_2$ and types of $TiO_2$ catalyst on the treatment of Cu(II)-EDTA was also investigated. Removal of Cu(II) and DOC was favorable with a hemispherical collector than with a flat collector Removal of Cu(II) and DOC increased with increasing angles of solar collector up to $38^{\circ}$. Slurry type $TiO_2$ showed four-times higher removal efficiency than immobilized type $TiO_2$. Removal of both Cu(II) and DOC at a clear sky of solar light intensity ranging from 0.372 to $2.265\;mW/cm^2$ was greater than removal at a cloudy day of solar light intensity ranging from 0.038 to $1.129\;mW/cm^2$. From the result of this research that the removal efficiency of Cu(II) and DOC increased as the solar light intensity increased, it can be inferred that quantum yield in the destruction of Cu(II)-EDTA may directly related with the solar light intensity. Removal of Cu(II) increased as increasing the area of solar collector and was similar at lower flow rates white removal of Cu(II) was interfered at higher flow rates. When immobilized $TiO_2$ was used, removal efficiency of Cu(II) increased in the presence of $H_2O_2$ while negligible effect was found in the use of $TiO_2$ slurry.

Improved Parallel Merge Scheme for Hardware Video Encoder (하드웨어 비디오 인코더를 위한 개선된 병렬 머지 방법)

  • Kim, Dae-Yeon;Lim, Sung-Chang;Kang, Jungwon
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2018.06a
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    • pp.149-151
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    • 2018
  • H.265/HEVC(High Efficiency Video Coding)에서는 하드웨어 비디오 인코더의 처리율(Throughput)을 높이기 위하여 동일 CU(Coding Unit) 내 PU(Prediction Unit)들이 병렬로 머지 후보 리스트를 생성할 수 있는 병렬 머지 방법이 표준 기술로 사용되고 있다. 하지만 이 방법은 동일 CU 내의 PU 간의 의존성만 제거할 수 있고 코딩 순서상의 이전 CU 와의 의존성은 제거할 수 없다. 결국 이전 CU 의 모드 결정 과정이 완료된 후에 현재 CU 내의 PU 가 머지 후보 리스트를 생성할 수 있기 때문에 높은 처리율 향상을 기대할 수 없다. 또한 CU 내의 대부분의 PU 들이 가장 인접한 MV(Motion Vector)를 머지 후보로 사용하지 못하여 압축 효율에 대한 손실도 크다. 본 논문에서는 이전 CU 와의 의존성을 제거함으로써 높은 처리율을 갖으면서 압축 효율에 대한 손실을 최소화할 수 있는 개선된 병렬 머지 방법을 제안한다. 실험 결과, 제안된 방법은 기존 병렬 머지 방법 대비 동일 화질에서 평균 약 1.8%의 압축률이 향상되는 것으로 나타났다.

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Reaction Characteristics of SOx/NOx Removal Using CuO/γ-Al2O3 Sorbent/Catalyst (CuO/γ-Al2O3 흡수제/촉매를 이용한 SOx/NOx 제거 반응특성)

  • Yoo, Kyung Seun;Kim, Sang Done
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.4
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    • pp.671-678
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    • 2000
  • Reaction characteristics of simultaneous removal of SOx and NOx have been investigated in a thermogravimetric analyzer and tubular fixed bed reactor using the $CuO/{\gamma}-Al_2O_3$ sorbent/catalyst. Sulfur removal capacity of $CuO/{\gamma}-Al_2O_3$ sorbent/catalyst is largely enhanced above both the temperature of $450^{\circ}C$ and the loading of 6wt% due to the participation of alumina support in a sulfation reaction. The NO reduction efficiency of 8wt% $CuO/{\gamma}-Al_2O_3$ sorbent/catalyst shows the maximum value at $370^{\circ}C$ and then decreases with the increase of reaction temperature due to the oxidation of $NH_3$ gas. The presence of sulfate on the surface of sorbent/catalyst enhances the optimum reaction temperature showing the maximum deNOx efficiency. In the simultaneous removal of SOx and NOx at $250^{\circ}C$. deNOx activity of $CuO/{\gamma}-Al_2O_3$ sorbent/catalyst is rapidly decreased due to the formation of ammonium salts such as $NH_4HSO_4$. In the simultaneous removal reaction of SOx and NOx, the optimum temperature showing the maximum deNOx efficiency increases to $400^{\circ}C$ due to the presence of $SO_2$ gas.

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A Study on Removal of Heavy Metals (Cu, Zn, and Pb) from Contaminated Soil by Soil Washing (토양세척에 의한 오염토양의 중금속(Cu, Zn, Pb) 제거에 관한 연구)

  • Kim, Myoung-Jin
    • Economic and Environmental Geology
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    • v.46 no.6
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    • pp.509-520
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    • 2013
  • In this study, heavy metals are removed by soil washing from soils contaminated with Cu, Zn, and Pb, whose maximum concentrations are up to 3350, 1220, and 2240 mg/kg, respectively. Through various soil washing experiments, the optimum conditions, including type and concentration of washing reagent, washing time, mixing ratio of soil and washing reagent, and stirring speed, are derived for effective removal of the heavy metals. It is found that the most effective washing reagent and its concentration are hydrochloric acid and 50 mM, respectively. The most suitable washing time is 30 minutes and the optimal mixing ratio of soil and washing reagent is 1:30 (g/mL). The removal efficiency, on the other hand, is not affected by stirring speed. The removal efficiencies of the heavy metals decrease when washing reagent is reused. Furthermore, the heavy metals are readsorbed onto soil in case of consecutive reuse of washing reagent.

Treatability of Heavy Metals in the Washing Technology of Marine Sediments Contaminated with Organic Matter (세척기반처리에 의한 해양오염퇴적물에 함유된 유기 오염물질 제거 공정 중 중금속 처리 가능성)

  • Sim, Young Sub;Kim, Kyoung Rean;Kim, Suk Hyun
    • Journal of Korean Society of Environmental Engineers
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    • v.36 no.12
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    • pp.851-857
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    • 2014
  • Treatability of heavy metals in marine sediments contaminated with mainly organic matter was investigated on the basis of washing technology using oxidizers and surfactants. Sediment samples were collected at N area which expected for remediation project of contaminated marine sediment. For additives, hydrogen peroxide ($H_2O_2$) and Tween-80 were used at oxidizer and nonionic surfactant, respectively. In experiments, sediments was mixed with sea water at the ratio of 1 : 3 than $H_2O_2$ (1 M, 3 M, 4 M, 5 M) and Tween-80 (0.05%) were added. Samples were gathered at following reaction time (10, 20, 30, 40, 50, 60, 70, 80 min and 24 h). Total Organic Carbon (TOC) was 55.2% at the conditions of 5 M $H_2O_2+0.05%$ Tween-80 24 h. Hence total heavy metals were Cu 29.5%, Zn 42.3%, Cd 73.0% and bioavailable heavy metals were Cu 60.0%, Zn 77.7%, Cd 90.2% at the conditions of 5 M $H_2O_2+0.05%$ Tween-80 10 min. The correlations for between bioavailable metals (Cu, Zn, Cd) and TOC were significant (Cu, Zn, Cd; $r^2=0.94$, 0.85, 0.69, respectively).

A Study on the Removal of Phosphorus from Wastewater by Redox Reaction of Cu-Zn metal alloy (Cu-Zn 금속합금의 산화 환원 반응을 이용한 수중 탈인처리에 관한 연구)

  • Kim, Tae-Kyeong;Kim, Jong-Hwa;Song, Ju-Yeong
    • Journal of the Korean Applied Science and Technology
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    • v.32 no.1
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    • pp.78-84
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    • 2015
  • The purpose of this study is to evaluate the removal efficiency of phosphorus from synthetic waste water by reduction and oxidation reaction of Cu-Zn metal alloy. Cu-Zn metal alloy applied in this study is composed of 40% of Zn and 60% of Cu, which is so called Muntz metal. And the fibrous type of metal alloy has approximately $200{\mu}m$ of thickness. Metal is oxidized in an aqueous solution to generate electron and metal ion. The mechanism of phosphate treatment is co-precipitation of metal ion and phosphorous ion at various pH and temperature. The treatment efficiency showed the maximum at a one cycle treatment. This result means that the surface area of reaction material is sufficient enough to get reaction equilibrium. Experiment is conducted at various pH from 5 to 9, and showed the maximum efficiency at pH 8. Phosphorous is dominated as a type of $H_2PO_4{^-}$ and $HPO_4{^{2-}}$ at this pH condition. We could not consider the temperature effect independently, because phosphorous removal efficiency showed such a complex mechanism. We could get high efficiency at lower temperature in this research.