• Title/Summary/Keyword: 자원회수

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Current Status and Necessity of Separation Technology to Secure Vanadium Mineral Resources (바나듐 광물자원 확보를 위한 선별 기술 현황 및 필요성)

  • Jeon, Hoseok;Han, Yosep;Baek, Sangho;Davaadorj, Tsogchuluun;Go, Byunghun;Jeong, Dohyun;Chu, Yeoni;Kim, Seongmin
    • Resources Recycling
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    • v.31 no.2
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    • pp.3-11
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    • 2022
  • Owing to the global development of high-strength alloys and renewable energy industries, the demand for vanadium, a key raw material in these industries, is expected to increase. Until now, vanadium has been recovered as a by-product of the industry, but interest in its direct recovery from minerals has increasing with its significantly increasing demand. In particular, the recovery of vanadium from stone coal ore and vanadium titano-magnetite (VTM) containing vanadium has been actively researched in China, which has the largest reserves and production of vanadium in the world. In Korea, a large amount of VTM also occurs in the northern part of Gyeonggi-do, and fundamental research and technical development is being conducted to recover vanadium. It is necessary to understand the current status of the separation technology used worldwide to satisfy the demand for metals such as vanadium, which currently depends on imports.

Development of Vanadium Recovery Process Using Reduction Pre-treatment from Vanadium Titanium-Magnetite (VTM) Ore (VTM광으로부터 환원 전처리를 이용한 바나듐 회수 공정 개발)

  • Go, Byunghun;Jeong, Dohyun;Han, Yosep;Kim, Seongmin;Chu, Yeoni;Kim, Byung-su;Jeon, Ho-Seok
    • Resources Recycling
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    • v.31 no.2
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    • pp.12-19
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    • 2022
  • The study was conducted to develop a vanadium recovery process using reduction pre-treatment in the Vanadium TitanoMagnetite (VTM) The sample for the research was provided by the Gwan-in Mine in Pocheon, Gyeonggi-do. The vanadium content of the sample is 0.54 V2O5% and vanadium is concentrated mainly in magnetite and ilmenite. Magnetic separation of the sample can increase vanadium content up to 1.10 V2O5%. To increase the vanadium content further, reduction pre-treatment was performed, which is a process of concentrating vanadium present in the iron by reducing iron in magnetite using carbon(C). Based on this reduction pre-treatment, the magnetic separation process was developed, which achieved a vanadium grade of 1.31V2O5% and 79.68% recovery. In addition, XRD analysis of the vanadium concentrate before and after reduction and the final vanadium concentrate was performed to confirm the behavior of vanadium by reduction pre-treatment.

A study of recovery and recycling from Tin wasted resources (주석 함유 폐 자원으로부터 주석 회수 및 재활용 방안 연구)

  • Jeong, Hang-Cheol;Jin, Yeon-Ho;Kim, Geon-Hong;Jang, Dae-Hwan;Gong, Man-Sik
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.217-218
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    • 2015
  • 주석은 최근 첨단 전기, 전자 제품의 핵심 소재로써 지속적인 수요 증가가 예상되는 전략 금속이다. 국내의 수요량은 2011년 기준 약 17,000톤 으로 99% 이상 수입에 의존하고 있는 실정이다. 그러나, 국내의 주석 제련 산업은 전무한 상태이며 폐자원에서 재활용하는 회수 기술도 초보 단계이다. 이러한 폐자원 발생량은 12,000톤/year이며, 약 1200억원에 달하는 규모이다. 다양한 폐자원의 선별적 전처리 요소 기술 개발 및 회수 공정 시스템 개발이 절실히 요구된다. 본 연구에서는, 주석 폐자원 중 solder 용융물 및 공정 스크랩 Lead solder, Lead-free solder 등 뿐만 아니라, ITO target 제조 시 발생하는 ITO sludge 등의 고상 폐자원으로부터 페자원의 물성을 파악하여 금속/산화물과의 파/분쇄 및 분급공정을 통하여 고품위의 주석 금속을 회수하였다. 뿐만 아니라, 고순도 주석시 발생하는 양극 슬라임 침출액 등의 액상 폐자원으로부터 희소금속의 추출 및 회수를 위해 습식 전처리 공정을 수행하였다. 침출액은 주석, 구리, 납 등의 유가금속이 이온형태로 존재하고 있으며, Chlorine이 다량 함유되어 있다. 고품위의 주석 산화물을 회수하기 위하여 침출액 내의 구리 제거 공정, Chlorine 제거 공정 등을 순차적으로 수행하여 고품위의 산화물 회수를 수행하였다.

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Recovery of the Metal and Energy Resources from the Wasted PCB (폐 인쇄회로기판의 유가금속 및 에너지자원 회수)

  • Kim, Yu-Sang
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.10a
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    • pp.104-104
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    • 2009
  • 금값 폭등과 에너지자원 고갈에 따라 폐 인쇄회로기판의 유가금속 및 에너지자원을 효과적으로 회수하고자, 최근 국내외 금 회수 및 폐백보드 활용방안을 제시하였다. 금을 회수하는 방법으로는 침적박리, 농축처리, 중화처리, 수용액환원처리, 이온교환수지, 전해채취 등의 방법이 있다. 금은 상온침적박리 회수하며 폐백보드는 이동식 건축내장재로 활용하고자 한다.

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A Study on the Recovery of Valuable Resources from Abandoned Fold Mine Tailings (금 광산 폐망미로부터 유가자원 회수에 관한 연구)

  • 채영배;정수복;윤평란
    • Resources Recycling
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    • v.8 no.3
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    • pp.37-42
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    • 1999
  • Ths sludy was canied out to recover gold and sllics from abandoned gold mine talings with about 4.5 ghonAu and 84.88 wt% SOz. Tl~bee nef~cialiop~ro~c esses including crushing, screening, magnelic and gravity (humprey sp~rals,h aking table) separation \ulcornervex employed. Results were Feasible to rccovn h e gold concentrates (307.1 gltoilon .4u . 0.60 wr%, 97.7 giton Au : 0.27 wl%, 15.3 &/ton Au . 5.23 wt%, 21.2 g/ton Au : 2.42 wl%) and silica (96.40 wi% SiO\ulcorner yield 60 65 ~ 1 % )

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Study for Seperation Process of Copper from the Low-grade Copper Ore by Hydrometallrugical Process (저품위 동광으로부터 습식제련공정에 의한 구리의 분리 공정 연구)

  • Shin, Dong Ju;Joo, Sung-Ho;Lee, Dongseok;Jeon, Ho-Seok;Shin, Shun Myung
    • Resources Recycling
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    • v.30 no.5
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    • pp.57-66
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    • 2021
  • In this study, we attempted to separate and recover Cu from low-grade copper ore by a hydrometallurgical process. The leaching sample obtained after crushing and sieving by 0.355 mm of low-grade copper ore contained 1.5% Cu, 4.7% Fe, 1.0% Mn, and 0.3% Zn. The Cu in the oxide ore was very well leached into sulfuric acid and 97% Cu leaching efficiency was achieved at 80℃ and 3 M sulfuric acid (H2SO4). From the leaching solution, Cu was separated by solvent extraction from Fe, Mn, and Zn using LIX984N. The separation tendency between Cu and other metals was confirmed through the distribution ratio and separation factor. By plotting the McCabe-Thiele Diagram, the optimum condition for recovering Cu is 5 vol.% LIX984N, 2-stage counter-current solvent extraction, and an O/A ratio of 0.5. Using this method, 99% of the Cu was extracted and a CuSO4 solution was finally obtained that contained 1.6 g/L Cu after the stripping process using 2 M H2SO4.

Analysis of Crushing/Classification Process for Recovery of Black Mass from Li-ion Battery and Mathematical Modeling of Mixed Materials (폐배터리 블랙 매스(black mass) 회수를 위한 파쇄/분급 공정 분석 및 2종 혼합물의 수학적 분쇄 모델링)

  • Kwanho Kim;Hoon Lee
    • Resources Recycling
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    • v.31 no.6
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    • pp.81-91
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    • 2022
  • The use of lithium-ion batteries increases significantly with the rapid spread of electronic devices and electric vehicle and thereby an increase in the amount of waste batteries is expected in the near future. Therefore, studies are continuously being conducted to recover various resources of cathode active material (Ni, Co, Mn, Li) from waste battery. In order to recover the cathode active material, black mass is generally recovered from waste battery. The general process of recovering black mass is a waste battery collection - discharge - dismantling - crushing - classification process. This study focus on the crushing/classification process among the processes. Specifically, the particle size distribution of various samples at each crushing/classification step were evaluated, and the particle shape of each particle fraction was analyzed with a microscope and SEM (Scanning Electron Microscopy)-EDS(Energy Dispersive Spectrometer). As a result, among the black mass particle, fine particle less than 74 ㎛ was the mixture of cathode and anode active material which are properly liberated from the current metals. However, coarse particle larger than 100 ㎛ was present in a form in which the current metal and active material were combined. In addition, this study developed a PBM(Population Balance Model) system that can simulate two-species mixture sample with two different crushing properties. Using developed model, the breakage parameters of two species was derived and predictive performance of breakage distribution was verified.

A Study on Physical Properties of Recyclables obtained from MSW (재활용(再活用) 대상(對象) 폐자원( 廢資源)의 물리적(物理的) 성상(性狀) 분석(分析)에 관한 연구(硏究))

  • Choi, Woo Zin;Yoon, Kun Duk
    • Resources Recycling
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    • v.21 no.5
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    • pp.72-78
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    • 2012
  • In general, recyclable items are separately discharged from households and then, hand-sorted into different types of valuables at materials recovery facilities (MRF). However, most of residues after hand-sorting are finally end up with landfill and/or incineration due to lack of separation technologies and economical reasons. In the present study, physical properties on recyclable items obtained from an MRF are investigated to improve the recovery of valuable items. The results of physical compositions based on the sizing tests are also presented.

Priority-Based Resource Allocation Algorithm for Virtual Network (가상 네트워크를 위한 우선순위 기반 자원 할당 알고리즘)

  • Kim, Hak-Suh;Lee, Sang-Ho
    • Journal of Digital Convergence
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    • v.14 no.10
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    • pp.303-310
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    • 2016
  • Due to the ossification of the Internet, it is difficult to accommodate variety services. One of the efficient solution to this problem is network virtualization. It allows multiple parallel virtual networks to run on the shared physical infrastructure. It needs new resource allocation mechanism to share efficient physical resources. In this paper, we present efficient bandwidth allocation algorithm for virtual network request with high service priority. Our proposed algorithm can withdraw allocated bandwidth from low-level priority virtual network and maintain low-level virtual network service. We evaluated the performance of our proposed algorithm using simulation and found the improvement of approximately 8% acceptance rate.

R&D Trends of Rare Metals Recovery from Seawater (해수(海水)로부터 희유금속(稀有金屬) 회수(回收) 연구동향(硏究動向))

  • Kim, Jong-Heon;Noh, Kyung-Ran;Kim, Sang-Woo;Choi, Sung-Bae;Kil, Sang-Cheol
    • Resources Recycling
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    • v.22 no.6
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    • pp.73-80
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    • 2013
  • Marine mineral resources are classified into submarine and seawater mineral resources. In seawater, huge amounts of useful minerals, such as uranium, lithium, magnesium, aluminum, zinc, iron, silver, copper, vanadium, nickel, titanium and cobalt are present. If the rare metals recovery technology from seawater is developed, the commercialization of the precess will be possible. For the 21st century, countries rich in resoures tend to weaponize the resources, according to the depletion of reserves and quality degradation of metal resources in the land. Therefore, Korea that relies on imports for most of the metal resources, should focus on the research and development of the rare metals recovery technology from seawater by using the geographical characteristics of the country that is on three sea-sides.