• Title/Summary/Keyword: recovery of metals

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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.

STUDY ON GY NEW MINERAL PROCESSING TECHNOLOGY FOR SHIZHUYUAN POLYMETALLIC ORE

  • Zhang, Zhonghan;Li, Xiaodong;Ye, Zhiping;Guo, Jianguan
    • Proceedings of the IEEK Conference
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    • 2001.10a
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    • pp.325-330
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    • 2001
  • Shizhuyuan W-Mo-Bi-Ca $F_2$polymetallic ore is classified to the refractory one due to its complex property, fine dissemination and close association of minerals. Through several years of researches, in line with GY new mineral processing technology developed by Guangzhou Research Institute of Nonferrous Metals, in sulfide flotation circuit, an iso-flotability flowsheet is used to replace original overall bulk flotation flowsheet, and in tungsten flotation circuit, a new chelating type-GY reagent and a special pulp-conditioning system and a new technology of wolframite slime flotation are used to replace the traditional "Caustic Soda Method"$_{[1]}$, the metallurgical performance is greatly improved. Besides, GY New Method has created a favorable condition for comprehensive recovery of fluoride from tungsten flotation tailings. Notable economic benefit has been achieved.d.

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The Heavy Metals Recovery from Carbonized CCA Treated Wood (CCA방부목재의 탄화가 중금속 회수에 미치는 영향)

  • Son, Dong-won;Cheon, Seon-Hae;Lee, Myung Jae;Lee, Dong-heub
    • Journal of the Korean Wood Science and Technology
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    • v.33 no.6 s.134
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    • pp.95-100
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    • 2005
  • The using amount of preservative-treated wood equipments has been increased. Specially, chromate copper arsenate (CCA) has been widely used to exterior wood. We are faced to the disposal problem after service period of CCA treated wood due to its toxic heavy metals. For the disposal of end-used treated wood, land-filling and incinerating methods are mainly applied. The essential problem of incinerating is an arsenic release into atmosphere. Low pyrolysis is suggested as the methods of protecting arsenic release during incineration. The heavy metals were recovered after combustion of the treated wood at the low temperature which arsenic can not released. The recovery amounts of effectiveness compounds was determined in various solvents (citric acid, nitric acid, sulfuric acid, acetic acid, phosphoric acid) and different temperature (300, 400, $500^{\circ}C$). The higher temperature was applied, the more copper was recovered. The chromium was difficult to be recovered on the carbonized CCA treated wood at 0.5% acid concentration. The recovery mass of arsenic decreased on the higher combustion treated wood. The recovery of chromium was difficult due to the chemical change of the chromium arsenate during pyrolysis.

Recovery of Nickel and Cobalt by a Hydrometallurgical Process from Nickel Laterite Ore with High Magnesium Content (마그네슘함량이 높은 니켈 laterite광으로부터 습식공정에 의한 니켈과 코발트 회수)

  • Lee, Manseung;Kim, Sangbae;Choi, Youngyun;Chae, Jonggwee
    • Korean Journal of Metals and Materials
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    • v.48 no.1
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    • pp.62-70
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    • 2010
  • Leaching and solvent extraction experiments have been performed to develop a hydrometallurgical process for the recovery of nickel and cobalt from nickel laterite ore with high magnesium content. Most of the nickel and magnesium in the laterite ore dissolved at leaching conditions of $80^{\circ}C$ and 100 g/L sulfuric acid concentration. while half of the cobalt and iron were leached at the same conditions. Solvent extraction experiments were carried out with D2EHPA and saponifed D2EHPA from a synthetic solution containing Ni, Co, and Mg. The extraction percentage of Co, Mg. and Ni by D2EHPA was very low in a pH range of 4.4 to 7.3. while the extraction percentage sharply increased by using saponified D2EHPA. The stripping percentage of the metals from the saponified D2EHPA increased with sulfuric acid concentration and reached 99.9% at 1 M $H_2SO_4$ solution.

Considerations of Acid Decomposition System for the Analysis of Heavy Metals in Packaging-grade Paper (포장용지류에서의 중금속 분석을 위한 산분해 전처리 방법의 탐색)

  • Lee, Tai-Ju;Ko, Seung-Tae;Kim, Hyoung-Jin
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.43 no.1
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    • pp.65-73
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    • 2011
  • The fibrous raw materials in packaging-grade paper production in Korea were mainly obtained from waste paper. The use of recycled paper has both positive and negative impacts in papermaking process. The primary positive impacts are the environmental protection and manufacturing cost reduction, and the negative impacts are the quality reduction in paper quality and the accumulation of heavy metals and other pollutants in wet- and dry-end process. This study was carried out to consider the optimum acid decomposition system with the highest recovery rate for the analysis of heavy metals in packaging-grade paper. The open digestion system using Kjeldahl apparatus and the closed digestion system using microwave oven for decomposing the organic materials in paper were compared. In both open and closed digestion method, the combination of nitric acid, hydrochloric acid and hydrogen peroxide showed higher recovery rate than using only nitric acid alone because the presence of Cl- ions in hydrochloric acid stabilizes ligand formation with metal ions. KOCC was observed to have the highest heavy metal content among the recycled paper samples. The heavy metal contents decomposed with the closed digestion system were relatively higher than with open digestion system.

Removal/Recovery of Heavy Metals Using Biopolymer (생물고분자를 이용한 중금속 제거/회수에 관한 연구)

  • 안대희;정윤철
    • KSBB Journal
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    • v.8 no.4
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    • pp.336-340
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    • 1993
  • Zoogloea ramigera 115, well known type of bacteria to produce slime in sewage plants, was selected for biopolymer production. The extracted biopolymer showed high uptake capacity of metals such as cadmium and zinc. Especially the fermentor broth itself showed high adsorption of metal and could be used a biosorbent without an additional separation process. Biopolymer was immobilized into beads of calcium alginate and used in a packed bed reactor for the purpose of valued metals recovery. The biopolymer showed high removal efficiencies of 80% or greater for Cu, Cd, Mn and Zn, and high stability in sorption-desorption-resorption experiments. The immobilized biopolymer systems were found to be comparable to other metal removal systems such as ion exchange resins and to be of potential industrial application value.

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The Recovery of Non-ferrous Metals from Broken Light Bulbs using the Magnetic Liquid Based Separation

  • Chioran, Viorica;Ardelean, Ioan
    • Journal of Magnetics
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    • v.15 no.2
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    • pp.91-98
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    • 2010
  • The paper presents results of a study on the selective separation technology of ferrous and non-ferrous metals from broken light bulbs. The proposed method is to use magnetic fluids to obtain a magnetic fluid based- separation. [1] The study was conducted using three types of waste materials: regular light bulbs, auto light bulbs and neon tubes. In order to process the waste materials, a six stages technologic flow was developed: a) separation of light bulbs components; b) Physical and chemical analysis of raw materials; c) grain conditioning of the raw material; d) dry magnetic separation of ferrous components; e) magnetic fluid separation of non-magnetic material; f) recovery of the magnetic fluid adhered to the surface of the separated material grains. [2] This study shows that magnetic fluid separation is only profitable for regular and auto light bulbs and is not profitable in the case of neon tubes.

Simultaneous Determination of Trace Metals in Infant Formula by AAS Method (AAS법에 의한 유아용 분유중 미량 금속의 동시정량에 관한 연구)

  • Park Kyung-Lyeoull
    • Journal of environmental and Sanitary engineering
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    • v.3 no.2 s.5
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    • pp.99-106
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    • 1988
  • In order to analyze trace metals by Atomic absorption spectrophotometer in infant formula milk powder, Wet digestion method using nitric acid, perchloric acid mainly and D.D.T.C.-M.I.B.K. extraction method were done. The r-value of calibration curve were more than 0.999 in Cu, Mn, Zn. Recovery test showed high recovery rate of $97-104\%$. The results were as follows: Averages of total samples were Cu $1.92\pm1.24 ppm,\;Mn\;1.18\pm1.01ppm,\;Zn\;22.43\pm8.88ppm.$ Averages of Common Infant formula were Cu1.96\pm1.26ppm,\;Mn\;1.0\pm0.57ppm,\;Zn\;21.52\pm9.72ppm.$ Averages of follow-up infant formula were Cu$1.89\pm1.26ppm,\;Mn\;1.36\pm1.31ppm,\;Zn\;23.34\pm8.7 ppm$.

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Parametric study for enhanced performance of Cu and Ni electrowinning

  • Kim, Joohyun;Kim, Han S.;Bae, Sungjun
    • Membrane and Water Treatment
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    • v.10 no.3
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    • pp.201-206
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    • 2019
  • In this study, we performed an electrowinning process for effective removal of metals (Cu and Ni) in solution and their recovery as solid forms. A complete removal of Cu and Ni (1,000 mg/L) was observed during four times recycling test, indicating that our electrowinning system can ensure the efficient metal removal with high stability and durability. In addition, we investigated effect of operation parameters (i.e., concentration of boric acid only for Ni, variation of pH, concentration of electrolyte ($H_2SO_4$), and cell voltage) on the efficiency of metal removal (Cu and Ni) during the electrowinning. The addition of boric acid significantly enhanced removal efficiency of Ni as the concentration of boric acid increased up to 10 g/L. Compared to negligible pH effect (pH 1, 2, and 4) on the Cu removal, we observed the increase in removal efficiency of Ni as the pH increased from 1 to 4. The electrolyte concentration did not significantly influence the removal of Cu and Ni in this study. We also obtained great removal rates of Cu and Ni at 2.5 V and 4.0 V, which were much faster than those at lower voltages. Finally, almost 99% of each Cu and Ni (1,000 mg/L) was selectively removed from the mixture of metals by adjusting pH and addition of boric acid after the completion of Cu removal. The findings in this study can provide a fundamental knowledge about effect of important parameters on the efficiency of metal recovery during the electrowinning.

Current Technology Trends Analysis on the Recovery of Rare Earth Elements from Fluorescent Substance in the Cold Cathode Fluorescent Lamps of Waste Flat Panel Displays (폐디스플레이 CCFL에 존재하는 형광체 내 희토류 원소 회수 기술 동향 분석)

  • Kang, Leeseung;Shin, Dongyoon;Lee, Jieun;Ahn, Joong Woo;Hong, Hyun-Seon
    • Journal of Powder Materials
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    • v.22 no.1
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    • pp.27-31
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    • 2015
  • Flat panel display devices are mainly used as information display devices in the 21st century. The worldwide waste flat panel displays are expected at 2-3 million units but most of them are land-filled for want of a proper recycling technology More specifically, rare earth metals of La and Eu are used as fluorescent materials of Cold Cathode Flourscent Lamp(CCFL)s in the waste flat panel displays and they are critically vulnerable and irreplaceable strategic mineral resources. At present, most of the waste CCFLs are disposed of by land-filling and incineration and proper recovery of 80-plus tons per annum of the rare earth fluorescent materials will significantly contribute to steady supply of them. A dearth of Korean domestic research results on recovery and recycling of rare earth elements in the CCFLs prompts to initiate this status report on overseas research trends and noteworthy research results in related fields.