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Contents

Recovery of silver from nitrate leaching solution of silicon solar cells = 실리콘 태양전지 질산침출액에서 LIX63를 이용한 은(Ag) 회수 / Sung-Yong Cho ; Tae-Young Kim ; Pan-Pan Sun 1

요약 1

Abstract 1

1. Introduction 2

2. Experimental 3

2.1. Materials 3

2.2. Solvent extraction and stripping procedure 3

3. Results and discussions 3

3.1. Effect of acid and extractant concentrations 3

3.2. Effect of metal concentrations in the feed solution on the metal extraction 4

3.3. Effect of phase ratio on the extraction of metals 4

3.4. Stripping of Ag(I) from the loaded LIX63 5

3.5. Effect of phase ratio on the stripping of Ag(I) with ammonia water 5

3.6. Process flowsheet for the separation of Ag(I) and Al(III) with LIX63 6

4. Conclusions 6

References 6

[저자소개] 7

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
국내산 저품위 실리카를 이용한 포름알데히드 제거용 다공성 촉매의 제조 및 특성 = Preparation and characterization of porous catalyst for formaldehyde removal using domestic low-grade silica 한요셉, 전호석, 김성민 p. 68-74

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타이타늄 밀링/터닝 스크랩의 절삭공구 소재화 = Chipped titanium scraps as raw materials for cutting tools 권한중, 임재원 p. 61-67

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코발트와 니켈 금속혼합물로부터 무기산 및 유기산에 의한 침출 = Leaching of cobalt and nickel from metallic mixtures by inorganic and organic acid solutions 문현승, 송시정, Thanh Tuan Tran, 이만승 p. 53-60

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YCl3-MgCl2 혼합 용융염 중 용융 Mg에 의한 Off-grade Ti 스크랩의 탈산 = Deoxidation of off-grade Ti scrap by molten Mg in YCl3-MgCl2 molten salt 정재헌, 이소영, 박성훈, 손호상 p. 46-52

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Recovery of silver from nitrate leaching solution of silicon solar cells = 실리콘 태양전지 질산침출액에서 LIX63를 이용한 은(Ag) 회수 Sung-Yong Cho, Tae-Young Kim, Pan-Pan Sun p. 39-45

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황산철(Ⅲ)용액에서 란타넘(Ⅲ)의 선택적 침전 분리 = Separation of lanthanum(Ⅲ) by selective precipitation from sulfuric acid solution containing iron(Ⅲ) 송시정, 이만승 p. 31-38

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염화주석용액을 이용한 폐인쇄회로기판으로부터 부품의 분리 = Dismantling of components from waste printed circuit boards using stannic chloride solution 박유진, 유경근 p. 24-30

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Acidithiobacillus ferrooxidans와 Acidithiobacillus thiooxidans를 활용한 고농도 비소 함유 광석 내 중금속 용출 거동 연구 = Leaching behavior of heavy metals from an ore containing high concentration as utilizing Acidithiobacillus ferrooxidans and Acidithiobacillus thiooxidans 김가희, 김리나, 김관호, 유광석 p. 14-23

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니켈 제련기술의 현황 = Current status of nickel smelting technology 손호상 p. 3-13

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참고문헌 (18건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 AbdEl-Ghaaffar, M.A., Abdel-Wahab, Z.H., Elwakeel, K.Z., 2009 : Extraction and separation studies of silver (I) and copper (II) from their aqueous solution using chemically modified melamine resins, Hydrometallurgy, 96, pp.27-34. 미소장
2 Song, X., Gunawan, P., Jiang, R., et al., 2011 : Surface activated carbon nanospheres for fast adsorption of silver ions from aqueous solutions, J. Hazard. Mater., 194, pp. 162-168. 미소장
3 Fornalczyk, A., 2012 : Industrial catalysts as a source of valuable metals, J. Achievements Mater. Manuf. Eng., 55, pp.864-869. 미소장
4 Sari, A., Tüzen, M., 2013 : Adsorption of silver from aqueous solution onto raw vermiculite and manganese oxide-modified vermiculite, Microporous Mesoporous Mater, 170, pp.155-163. 미소장
5 Kuczyńska-Łażewska, A., Klugmann-Radziemska, E., Sobczak, Z., et al., 2018 : Recovery of silver metallization from damaged silicon cells, Sol. Energy Mater. Sol. Cells, 176, pp.190-195. 미소장
6 Tao, J ., Yu, S., 2015 : Review on feasi blerecycli ng pathways and technologies of solar photovoltaic modules, Solar Energy Mater. Solar Cells, 141, pp.108-124. 미소장
7 Dias, P., Javimczik, S., Benevit, M., et al., 2016 : Recycling WEEE: extraction and concentration of silver from waste crystalline silicon photovoltaic modules, Waste Manag, 57, pp.220-225. 미소장
8 Klugmann-Radziemska, E., Ostrowski, P., Drabczyk, K., et al., 2010 : Experimental validation of crystalline silicon solar cells recycling by thermal and chemical methods, Sol. Energy Mater. Sol. Cells, 94, pp.2275-2282. 미소장
9 Kang, S., Yoo, S., Lee, J., et al., 2012 : Experimental investigations for recycling of silicon and glass from waste photovoltaic modules, Renew. Energy, 47, pp.152-159. 미소장
10 Jung, B., Park, J., Seo, D., et al., 2016 : Sustainable system for raw-metal recovery from crystalline silicon solar panels: from noble-metal extraction to lead removal, ACS sustainable Chem. Eng., 4, pp.4079-4083. 미소장
11 Choi, C., Cui, Y., 2012 : Recovery of silver from wastewater coupled with power generation using a microbial fuel cell, Bioresour, Technol, 107, pp.522-525. 미소장
12 Aktas, S., 2010 : Silver recovery from spent silver oxide button cells, Hydrometallurgy, 104, pp.106-111. 미소장
13 Laki, S., Shamsabadi, A.A., Kargari, A., 2016 : Comparative solvent extraction study of silver(I) by MEHPA and Cyanex 302 as acidic extractants in a new industrial diluent (MIPS), Hydrometallurgy 160, pp.38-46. 미소장
14 Tang, B., Yu, G., Fang, J., et al., 2010 : Recovery of high-purity silver directly from dilute effluents by an emulsion liquid membrane-crystallization process, J. Hazard. Mater, 177, pp.377-383. 미소장
15 Miller, J.D., Wan, R.Y., Parga, J.R., 1990 : Characterization and electrochemical analysis of gold cementation from alkaline cyanide solution by suspended zinc particles, Hydrometallurgy, 24, pp.373-392. 미소장
16 Sole, K.C., Hiskey, J.B., 1995 : Solvent extraction of copper by Cyanex 272, Cyanex 302 and Cyanex 301, Hydrometallurgy, 37, pp.129-147. 미소장
17 Sun, P.P., Min, B.J., Kim, S.T., et al., 2017 : Separation of silver (I) and zinc (II) from nitrate solutions by solvent extraction with LIX63, Mater. Trans, 58, pp.287-290. 미소장
18 Song, H.I., Min, B.J., Cho, S.Y., et al., 2015 : Solvent extraction of silver from nitric acid solution with 5,8-Diethyl-7-hydroxy-dodecan-6-oxime, J. Chem. Eng. of Jpn, 48, pp.829-833. 미소장