• Title/Summary/Keyword: 금속리싸이클링

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A Study on the Leaching of Vanadium and Nickel from Heavy Oil Fly Ash (중유회로부터 바나듐과 니켈 침출에 관한 연구)

  • 박경호
    • Resources Recycling
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    • v.1 no.1
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    • pp.29-36
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    • 1992
  • The extration of vanadium and nickel from heavy oil fly ash was carried out by using water ans sulfuric acid as leaching agent. In the leaching with water, vanadium and nickel were extracted 86% and 88% respectively under pulp density of 25g/l, room temperature and leaching time of 60 minutes, but extraction of vanadium decreased with increasing leaching time. Addition of oxidant decreased the extractions of vanadium and nickel, and roasting of fly ash at temperature higher than $300^{\circ}C$ before water leaching decreased the vanadium extraction to about zero. In the leaching with 1N sulfuric acid, the extractions of vanadium and nickel both increased to 96% and the addition of oxidant did not affect the extraction of these metals.

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Recovery of nickel from the spent nickel-cadmium battery (폐 Ni-Cd 전지로부터 니켈의 회수)

  • 박제신;박경호;전호석;손정수;김병규
    • Resources Recycling
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    • v.8 no.5
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    • pp.28-33
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    • 1999
  • Trus paper presenls a hydrometallurgical process Tor recovcnng ~uckcals mckcl sulfate fiom the spent nickel-cadrnlum bauery in whch c:,dmi~lm war re~novcdb y vapowing m e h d in vacuum. F ~ s ts,e lcct~vcc rushing and classification mell~odw ere performed to separate iron physically and the nickel-rich sample (over 80% nickel) was obtained. Ths sarnple was dissolved in sulf~ uiuica cid to obtain a luckcl sulfatc soluho~d~o se to its seluradon painl. TIE Cree acid in the unpurificd nickcl solut~onw as neutl-dized and iron war ve~novedk om the solulmn Thc mckel sulhte solution was c~yst~llizeadt around 45'C to obtain ruckel sulfate henahyril-ate.

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Development of Amalgamated Septic Tank using Mineral Sintered Body (광물 소결체를 이용한 합병정화조 개발에 관한 연구)

  • 김광수;김영훈;강헌찬
    • Resources Recycling
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    • v.9 no.4
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    • pp.56-62
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    • 2000
  • This study was introduced an amalgamated septic tank system using mineral sintered body was made from non-metallic minerals with a ability being attached or accelerating a vitality of soil microorganism for the effective wastewater treatment. Experimentally, we made an amalgamated septic tank appling anaerobic-aerobic process experimental facilities to two personal houses for handling a residental sewage directly on a small scale from the place of origin. The results are shown as follows; The COD\ulcorner and BOD of effluent were about 10 mg/l after the treatments and T-N removal efficiency was 60-70%. Moreover these results suggested the possibility of denitrification without adding organics and more than 80% of T-P removal also showed the possibility of wastewater treatment biologically.

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Hydrochloric Acid Leaching of Arsenic from Arsenic-Bearing Copper Slime. (동전련 부산물인 함비소 동슬라임으로부터 염산에 의한 비소의 침출)

  • 유용주;황필규
    • Resources Recycling
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    • v.1 no.1
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    • pp.51-57
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    • 1992
  • The hydrochloric acid leaching has been studied as a fundamental experiment on the recovery of arsenic from arsenic-bearing copper slime in copper electrorefining. The slime is mainly composed of $\beta-Cu_3As$ Which is intermetallic compound of CU and As. And the minor components are $CU_2O$ and CusAs in the slime. The optimum conditions of leaching of the slime were found to be as follows : 6N hydrochloric acid, particle size passed through 140 mesh, leaching for 150 min at $60^{\circ}C$, ratio of HCI/slime of 3 to 1 ; where 98 percent of arsenic were leached out of the As-bearing slime.

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Preparation of Alum for Water Treatment Product Using Waste Aluminum Dross (알루미늄 폐드로스로부터 수처리응집제용 황산알루미늄 제조)

  • Park, Hyung-Kyu;Choi, Young-Yoon;Eom, Hyung-Choon;Bae, Dong-Su
    • Resources Recycling
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    • v.15 no.4 s.72
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    • pp.60-63
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    • 2006
  • Waste aluminum dross was leached with sulfuric acid to prepare alum used for water treatment product. The remained metallic aluminum in the waste aluminum dross was extracted into the solution to make aluminum sulfate solution. The solution could be used as alum for water treatment product after adjusting the required alumina concentration and the basicity. Comparing to the conventional method for alum using aluminum hydroxide, material cost could be saved in this method. Also, there is an additional merit in view of recycling of the waste aluminum dross by reducing the amount of waste dross to be landfilled.

A Process for Recycling of Used Steel Can and Automatic Treatment System (스틸 폐캔 再活用방법과 自動化 처리장치)

  • 박형규
    • Resources Recycling
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    • v.9 no.6
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    • pp.53-57
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    • 2000
  • In the present paper, a current technical progress for recycling of used steel can is described. The developed technology was a kind of pre-treatment through an automatic equipment system to increase recycling and melting efficiency of used steel co. The process consisted of several unit processes such as breaking of steel can bale, removing dust, separation of aluminum can, delacquering, and compressing to bale. Also, aluminum powders were recovered as a by-product at the delacquering step. The process was carried out automatically through by use of the developed equipment system. The automatic system could be very available in mass treatment of used steel can.

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A Study of the Metal Recovery from the Aluminium Scrap (Al 스크랩으로부터 금속회수에 관한 연구)

  • 김준수;임병모;윤의박
    • Resources Recycling
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    • v.4 no.1
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    • pp.25-30
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    • 1995
  • In the preparatIon of reclaimed aluminium lllgot from alumimum scrap, the aluminium recovery was studied a as a function of the preliminary treatment of samples, addition of flux and melting atmosphere. AI dross is produced by an oxidation reaction at the surface of liquid metal. The recovery of AI metal increases u up to maximum 95% by adding salt up to 7%, The recovery of AI metal in the compacted chip bale without oil removal mcrease about 14% compared io non-compacted chip. In the case of the AI seed melting process, the recovery of Al metal of the crushed and compacted chip hale is 97%, In meltmg of alumimum scrap under the atmosphere of carbon and nitrogen gas, the recovery of AI metal increase, but it is decreased when the mixture of salt and carbon powder is added excessively.

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Application of Adsorption Isotherms for Manganese Nodule-Cadmium Interaction (망간단괴-Cd 상호작용에 대한 등온흡착식 적용)

  • 전영신;김진화;김동수
    • Resources Recycling
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    • v.8 no.1
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    • pp.37-43
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    • 1999
  • Studies have been conducted for the purpose of using manganese nodule and residue remained after extracting valuable metals [mm it as the adsorbent of cadmium wastewater. The study observed the adsorption percentage according to initial cadmium concentration and interpreted each adsorption systems by applying the Freundlich, Langmuir, and Temkin isotherms. The adsorption amounts increased as the initial concentration at cadmium ion increased, whereas the adsorption percentage decreased. Linearity was shown when applied to the Freundlich and Langmuir isotherms. The k value which evaluates the adsorption capacity of adsorbent in Freundlich isotherm, turned out to be 11.72, the highest in case of manganese nodule. The Xm value, the maximum adsorption amount of the adsorbate that adsorbs as a monolayer in Langmuir isotherm of manganese nodule, was estimated as 0.16, representing higher value compared with those of leached residue, leached residue-raw manganese nodule mixture, and activated carbon.

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Overview and Future Concerns for Recycling Glass Wastes (폐(廢)스마트 유리제품(琉璃製品) 재활용(再活用) 현황(現況)과 기술(技術) 전망(展望))

  • Hong, Hyun Seon;Cho, Bong-Gyoo
    • Resources Recycling
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    • v.22 no.4
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    • pp.22-32
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    • 2013
  • Glass materials possess unique functional characteristics of ceramics different from those of metals, which has marked glass as one of the mainstay materials in the history of mankind. Nowadays, industrial sophistication necessitates comparable "smart" attributes of glass materials as a significantly advanced form of sophistication. Smart glasses are increasingly applied in many state-of-the-art digital appliances such as displays and semiconductors and waste is also expected to accumulate therefrom in the near future: More than 60,000 tons of smart glass wastes were reported as of 2012, for example. In the present paper, current status of domestic Korean smart glass industry and related recycling enterprise have been comprehensively investigated. Finally, Korean domestic smart glass recycling technology and its future prospect are also briefly presented.

Lithium Ion Battery Recycling Industry in South Korea (국내 리튬이온전지 재활용 산업현황)

  • Kyoungkeun Yoo
    • Resources Recycling
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    • v.32 no.1
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    • pp.13-20
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    • 2023
  • The objective of this article is to summarize the commercial lithium ion battery (LIB) recycling processes in Korea and to suggest new direction for LIB recycling. A representative LIB recycler, SungEel Hitech Co. has successfully operated the LIB recycling process for over 10 years, and new recycling processes were recently proposed or developed by many recycling companies and battery manufacturers. In the new recycling processes, lithium is recovered before nickel and cobalt due to the rapid rise in lithium prices, and metal sulfate solution as final product of recycling process can be supplied to manufacturers. The main problem that the new recycling process will face is impurities, which will mainly come from end-of-life electric vehicles or new additives in LIB, although the conventional processes must be improved for mass processing.