• Title/Summary/Keyword: 전자스크랩

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Bioleaching of valuable metals from electronic scrap using fungi(Aspergillus niger) as a microorganism (곰팡이균(Aspergillus niger)을 이용(利用)한 전자스크랩중 유가금속(有價金屬)의 미생물(微生物) 침출(浸出) 연구(硏究))

  • Ahn, Jae-Woo;Jeong, Jin-Ki;Lee, Jae-Chun;Kim, Dong-Gin
    • Resources Recycling
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    • v.14 no.5 s.67
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    • pp.24-31
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    • 2005
  • In order to recover valuable metals from fine-grained electronic waste, bioleaching of Cu, Zn, Al, Co, Ni, Fe, Sn and Pb were carried out using Aspergillus niger as a leaching microorganism in a shaking flask. Aspergillus niger was able to grow in the presence of electronic scrap. The formation of organic acids(citric and oxalic acid) from Aspergillus niger caused the mobilization of metals from waste electronic scrap. In a preliminary study, in order to obtain the data on the leaching of Cu, Zn, Al, Fe, Co and Ni from electronic scrap, chemical leaching using organic acid(Citric acid and Oxalic acid) was accomplished. At the electronic scrap concentration of 50 g/L, Aspergillus niger were able to leach more than 95% of the available Cu, Co. But Al, Zn, Pb and Sn were leached about 15-35%. Ni and Fe were detected in the leachate less than 10%.

A Novel Process for Extracting Valuable Metals from Waste Electric and Electronic Scrap Using Waste Copper Slag by a High temperature Melting Method (폐동(廢銅)슬래그를 활용(活用)한 폐전기전자(廢電氣電子) 스크랩으로부터 유가금속(有價金屬) 고온용융추출(高溫鎔融抽出) 공정(工程) 개발(開發))

  • Kim, Byung-Su;Lee, Jae-Chun;Lee, Kwang-Ho
    • Resources Recycling
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    • v.16 no.3 s.77
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    • pp.27-33
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    • 2007
  • It is very important in the view point of resource recycling to recover valuable metals such as copper and tin from waste electric and electronic scrap. The waste electric and electronic scrap contains significant amounts of copper, tin, and so on. In this study, a new process for extracting copper and tin contained in the waste electric and electronic scrap using waste copper slag which is generated from the melting furnace of copper smelter was presented. Advantage of the proposed process is to reuse waste copper slag instead of new fluxes as slag formatives. In each experiment, the waste electric and electronic scrap and waste copper slag were melted inputting suitable amount of CaO as an additional flux. Up to 95% of copper and 85% of tin in the raw material were extracted in a Cu-Fe-Sn alloy phase.

Current Status on the Pyrometallurgical Process for Recovering Precious and Valuable Metals from Waste Electrical and Electronic Equipment(WEEE) Scrap (폐전기전자기기(廢電氣電子機器) 스크랩으로부터 귀금속(貴金屬) 및 유가금속(有價金屬) 회수(回收)를 위한 건식공정(乾式工程) 기술(技術) 현황(現況))

  • Kim, Byung-Su;Lee, Jae-Chun;Jeong, Jin-Ki
    • Resources Recycling
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    • v.18 no.4
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    • pp.14-23
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    • 2009
  • In terms of resources recycling and resolving waste disposal problems, it is very important to recover precious metals like Au, Ag and Pd and valuable metals like Cu, Sn and Ni from the scraps of waste electrical and electronic equipment(WEEE) that consists of detective electrical and electronic parts discarded during manufacturing electrical and electronic equipments and waste electrical and electronic parts generated during disassembling them. In general, the scraps of WEEE are composed of various metals and alloys as well as refractory oxides and plastic components. Precious and valuable metals from the scraps of WEEE can be recovered by gas-phase-volatilization, hydrometallurgical, or pyrometallurgical processes. However, the gas-phase-volatilization and hydrometallurgical processes have been suggested but not yet commercialized. At the present time, most of the commercial plants for recovering precious and valuable metals from the scraps of WEEE adopt pyrometallurgical processes. Therefore, in this paper, the technical and environmental aspects on the important pyrometallurgical processes through literature survey are reviewed, and the scale-up result of a new pyrometallurgical process for recovering the precious and valuable metals contained in the scraps of WEEE using waste copper slag is presented.

Recycling and refining of tantalum scraps by electron beam melting (전자빔용해법(溶解法)에 의한 탄탈럼 스크랩의 재활용(再活用) 및 정련(精鍊))

  • Lee, Back-Kyu;Oh, Jung-Min;Choi, Good-Sun;Kim, Hyung-Seok;Lim, Jae-Won
    • Resources Recycling
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    • v.21 no.2
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    • pp.59-65
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    • 2012
  • The refining effect of tantalum by electron beam melting(EBM) process for recycling tantalum scraps was investigated in the study. The purity of the tantalum metals refined by EBM was evaluated using glow discharge mass spectrometry (GDMS). From the result of GDMS, most impurities in the tantalum metals were removed by EBM down to a few mass ppm levels. The purity of the refined tantalum scraps was improved up to 5N (99.9991%) from 4 N (99.996%) of the initial tantalum scraps. The amount of metallic impurities in the tantalum was decreased from 30 ppm to 8 ppm. In addition, the gaseous impurities in the tantalum were decreased from 470 ppm to 50 ppm. Therefore a possibility of refining method for recycling tantalum scraps by EBM process was confirmed in this study.

Recycling Status of Gold, Silver, Platinum and Palladium (금, 은, 백금, 팔라듐의 재활용 현황)

  • Kim, Bumchoong;Kim, Jinsoo;Yoo, Kyoungkeun
    • Journal of the Korean Society of Mineral and Energy Resources Engineers
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    • v.56 no.4
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    • pp.359-366
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    • 2019
  • This article aims to summarize the recycling status of scrap gold, silver, platinum, and palladium by regions and industries in order to utilize the data for securing raw materials of the domestic urban mining industry. The amount of gold from scrap has shown a tendency to decrease in countries other than China over the last ten years, which is attributed to the increase in scrap containing gold in China. The industry demand for gold is the highest in electronic products, but it is decreasing. The amount of scrap recycling for silver has declined but total silver production has increased by increasing mine products. As production and demand from platinum and palladium scrap are mostly for catalysts, their demand could be affected by the electric vehicle industry.

Nitric acid leaching of electronic scraps and the removal of free nitric acid from the leaching solution for the recovery of copper and tin. (전자(電子)스크랩에서 구리 및 주석의 회수(回收)를 위한 질산(窒酸) 침출(浸出) 및 침출액(浸出液)에서 유리질산(遊離窒酸) 제거(除去) 연구(硏究))

  • Ahn, Jae-Woo;Seo, Jae-Seong
    • Resources Recycling
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    • v.18 no.5
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    • pp.44-51
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    • 2009
  • Fundamental study has been made on the recovery of copper from the electronic scrap by hydrometallurgical process. Nitric acid was used as a leaching agent to dissolve the metals such as Cu, Sn, Pb, Fe etc. from the crushed electronic scraps. TBP was employed to extract nitric acid from the strong nitric acid leaching solutions and to reclaim nitric acid. From the experimental results, Cu was effectively leached by 3.0-4.0 M nitric acid. And 95% of nitric acid in the leaching solution was extracted by 60% TBP, and 98% of nitric acid was stripped from the loaded organic phase by distilled water and it was possible to reuse as a leaching agent.

Oversea Production Status of Gold, Silver, Platinum and Palladium from Scrap (스크랩으로부터 금, 은, 백금, 팔라듐 해외생산현황)

  • Kim, Bum-Choong;Chae, Sujin;Kim, Jinsoo;Yoo, Kyoungkeun
    • Resources Recycling
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    • v.27 no.6
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    • pp.76-83
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    • 2018
  • This article aims to summarize the scrap recycling status of gold, silver, platinum and palladium from foreign countries by courntires and industries in order to utilize the data for securing the raw materials of the domestic urbanmining industry. The amount of gold from scrap has shown a tendency to decrease in countries other than China, which is attributed to the large imports of scrap containing gold in China. The industry demand for gold is the highest in electronic products, but demand is decreasing. The amount of scrap recycling in silver has declined in other regions compared to those in Europe, indicating that the world's overall scrap recycling volume has declined. Production and demand from scrap of platinum and palladium are mostly for catalysts and have been steadily increasing until now. However, it is expected that the amount of waste catalysts in automobiles will decrease with the increase of electric vehicle use.

I-V characteristics of ground electrode fabricated using an aluminium scrap (알루미늄 스크랩을 이용하여 제작한 접지 전극의 전압-전류 특성)

  • 이우선;정용호;박진성
    • Electrical & Electronic Materials
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    • v.9 no.8
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    • pp.806-812
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    • 1996
  • I-V characteristics of ground electrode fabricated using an aluminium scrap are presented. We fabricated several shapes of aluminium scraps and aluminium electrodes. The results show that the current of aluminium electrode increased linearly by the voltage increase. AC breakdown voltage of copper plate electrode was higher than that of aluminium electrode. AC breakdown current of aluminium electrode was higher than that of copper plate electrode. As applied voltage increased, grounding resistance of aluminum electrode decreased linearly.

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Recovery of Cu and Sn from the Bioleaching Solution of Electronic Scrap (전자(電子)스크랩의 미생물(微生物) 침출액(浸出液)으로부터 구리 및 주석의 회수(回收)에 관한 연구(硏究))

  • Ahn, Jae-Woo;Kim, Meong-Woon;Jeong, Jin-Ki;Lee, Jae-Chun
    • Resources Recycling
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    • v.15 no.6 s.74
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    • pp.41-47
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    • 2006
  • A study for recovering of copper and lead from electronic scraps has been carried out using a combination of bioleaching and solvent extraction. It was found that the citric acid generated by Aspergillus niger could be an imporant leaching agent acting in the solubilization of copper, iron, lead and tin from the electronic scrap. Copper could be selectively extracted by 10% LIX84 from the leaching solution and it recoved 99.9% of metallic copper by electrowinning process. Tin and iron were extracted from the remaining solution by 10% Alamine336 and stripped by NaCl solution. Finally, tin could be recovered as a metallic precipitates from the mixed solution of tin and iron by cementation with iron powder.

Current Status on the Domestic Recycling of Magnesium (국내(國內) 마그네슘 리싸이클링 현황(現況))

  • Park, Hyung-Kyu;Kang, Min-Cheol
    • Resources Recycling
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    • v.20 no.3
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    • pp.3-11
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    • 2011
  • Magnesium has been used as parts of vehicles, case materials of notebook PC and mobile phone, and its demand has been increasing recently. So until now, there has little magnesium scraps from the end of life vehicles or electronic parts, and most scraps has been generated from magnesium processing lines such as melting, die casting and machining. It is to review the present status of magnesium recycling. Here, domestic demand of magnesium, recycling amount and technologies used in domestic recycling companies were surveyed in recent years. In 2010, 8,840 tons of magnesium scraps were processed and used as raw materials for die casting products. The recycling ratio was estimated as 32.5%.