• Title/Summary/Keyword: Rhodium Recycling

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Economic and Environmental Effect Analysis of Rhodium Recycling System (로듐 재자원화의 경제적 및 환경적 효과 분석)

  • Seong You Lee;Kayoung Shin;Doo Hwan Kim;Yong Woo Hwang;Hong-Yoon Kang;Sung Min Hong;Da-Yeon Kim
    • Resources Recycling
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    • v.32 no.3
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    • pp.45-56
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    • 2023
  • This study analyzed the economic and environmental effect of recycling rhodium used in the non-catalytic field. As an analysis methodology, economic effect analysis applied cost-benefit analysis and resource-saving effect analysis and the environmental effect analysis applied life cycle assessment (LCA). The results show that from an economic point of view, the cost-benefit ratio was 1.28, which was feasible, and the cost reduction was 237,000 won based on 1 g of rhodium recycled and the amount of rhodium recycled was 7.17 billion won in 2025. As for the environmental effect, the greenhouse gas(GHG) emissions were compared between the case of recycling based on rhodium 1 kg and the case of overseas sales. The calculation results show that based on rhodium 1 kg, greenhouse gas emissions were reduced by 99.8%, from 65 kg CO2eq./kg-Rh when recycling to 28,800 kg CO2eq. when sold overseas. The results obtained from this study could suggest that rhodium recycling is necessary in Korea where resources are scarce by analyzing the economic and environmental effect of recycling rhodium used in the non-catalytic field.

Separation of Platinum(IV) and Rhodium(III) from Acidic Chloride Solution by Solvent Extraction with Tri 2-Ethylhexyl Amine(TEHA) (염산용액(鹽酸溶液)에서 Tri 2-Ethylhexyl Amine(TEHA)에 의한 백금과 로듐의 분리(分離))

  • Sun, Pan-Pan;Lee, Man-Seung
    • Resources Recycling
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    • v.22 no.5
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    • pp.29-34
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    • 2013
  • Solvent extraction experiments were performed to separate platinum and rhodium from mixed chloride solution by using tri 2-ethylhexyl amine (TEHA) and its mixture with TBP and LIX 63. Effects of extraction conditions on the separation of the two metals were investigated as a function of extractant concentration in the HCl concentration range from 1 to 9 M. The concentration of Pt (IV) and Rh(III) was controlled to $1{\times}10^{-3}M$ and $2{\times}10^{-4}M$, respectively. In the extraction with TEHA and its mixture, Pt was quantitatively extracted irrespective of HCl concentration, while the extraction percentage of Rh depended on the extraction condition. When the concentration of HCl in the mixed solution was low, the extraction of Rh was nil and separation of Pt and Rh was possible. Adding TBP to TEHA had little effect on the extraction of both metals, while adding LIX63 to TEHA favored the extraction of Rh.

Properties and Recovery Technologies for Rare-Platinum Group using Patent Information (특허정보(特許情報)를 이용한 희소백금족(稀少白金族) 특성(特性)과 회수기술(回收技術))

  • Ahn, Jong-Gwan;Lee, Kang-Myoung;Lee, Jae-Ryeong
    • Resources Recycling
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    • v.18 no.4
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    • pp.3-13
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    • 2009
  • Rare platinum group (RPG)including rhodium, ruthenium, iridium, osmium, exists at the rate of 0.4 ppb or less in the earth's crust. For the purpose of suggestion to developing necessity for recycling technology with the RPG, survey on the characteristics and the recovery technologies was carried out by using patent information.

A Review on Recycling of Spent Autocatalyst in Korea (국내 자동차 폐촉매의 발생 및 재활용 현황)

  • Kwon, Young-Shik;Lee, Jae-Chun;Shin, Do Yun;Yi, Seung-Hoon;Kim, Hyung-Jin;Choi, Yoon-Geun
    • Resources Recycling
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    • v.23 no.1
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    • pp.3-16
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    • 2014
  • Recycling of spent autocatalyst that includes the platinum group metals (PGMs), namely palladium, platinum and rhodium, is a very profitable endeavor. In order to ensure an efficient promotion of an appropriate policy-making and the technical development of the recycling process of spent autocatalyst in Korea, the generated amount, trading conditions, and recycling technology for spent autocatalyst were surveyed. The generated amount of spent autocatalyst was estimated by analyzing the domestic statistical data of registration & disuse of automobiles and the records of autocatalyst installation to new cars. The review of the recycling technology was carried out by surveying the recycling processes of 'Heesung PMTech Ltd.', which is the largest company in the recycling industry for spent autocatalyst in Korea. In addition to the above, some policy suggestions for the improvement of recycling industries for spent autocatalyst were offered.

Solvent Extraction of Platinum Group Metals from the leach Liquor of Spent Automotive Catalyst (자동차(自動車) 폐촉매(廢觸媒)의 침출액(浸出液)으로부터 백금족(白金族) 금속(金屬)의 용매추출(溶媒抽出))

  • Kim, Mi-Ae;Lee, Jae-Chun;Kim, Chi-Kwon;Kim, Min-Seuk;Kim, Byung-Su;Yoo, Kyoung-Keun
    • Resources Recycling
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    • v.15 no.5 s.73
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    • pp.3-10
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    • 2006
  • The solvent extraction for the separation of platinum group metals from the leach liquor of spent automotive catalysts has been studied. Tri-n-butyl phosphate (TBP), tri-n-octylamine (TOA) and di-n-hexyl sulfide (DHS) were used as extractants and kerosene as a diluent. The extraction behavior of platinum, palladium and rhodium has been investigated as functions of different kinds of extractants and their concentrations. In addition, the extraction behavior of the major metal impurities such as cerium, lead, iron, magnesium and aluminum has been investigated. Platinum and palladium were extracted with TBP. And platinum, palladium and rhodium were extracted with TOA. Platinum was co-extracted with palladium into the organic phase by solvent extraction using SFI-6 of DHS extractant, but only palladium was selectively extracted with SFI-6R. The selective extraction of palladium with SFI-6R was found better than that with SFI-6, but the kinetics of extraction with SFI-6R was found poor in comparison to SFI-6. The metal impurities extracted simultaneously during the extraction of platinum group metals should be removed in scrubbing and stripping processes. A suitable process has been proposed for the separation of platinum group metals from the leach liquor of spent automotive catalysts. Initially palladium was extracted with SFI-6R, followed by the separation of platinum with TBP or TOA leaving rhodium in the raffinate.

Selective Recovery of Platinum Group Metals by Solvent Extraction and Electrolysis in Non-aqueous Solution Based on Ionic Liquids (이온성액체 기반 비수계 용액에서 용매추출과 전해에 의한 백금족 금속의 분리회수)

  • Park, Gwang-won;Park, Jesik;Lee, Churl Kyoung
    • Resources Recycling
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    • v.28 no.2
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    • pp.46-53
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    • 2019
  • In this study, the extraction and reduction behavior of platinum group metals in a non-aqueous solvent based on ionic liquids was investigated in order to confirm a new extraction technology of platinum group metals. Platinum was selectively extracted using an ionic liquid $[C_4mim]PF_6$ from a mixed solution of $PdCl_2$, $PtCl_4$ and $RhCl_3$ dissolved with concentration ratio of 10:1:0.5 M. After stripping of the metals by 1 M $HNO_3$ solution, the platinum was preferentially reduced by aqueous electrolysis on gold electrode at -0.8 V (vs. Pt-QRE). The residual palladium and rhodium were transferred to ionic liquid of $[C_4mim]Cl$. The metallic palladium and rhodium could be sequentially reduced on gold and STS304 as working electrodes by non-aqueous electrolysis, respectively.

Preparation of Platinum Amine Complex Solution from Pt Scrap and its Catalytic Activity of Soot Oxidation (백금 스크랩으로부터 아민산백금용액 제조 및 Soot Oxidation 특성)

  • Choi, Seung Hoon
    • Resources Recycling
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    • v.27 no.3
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    • pp.93-99
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    • 2018
  • Effective extraction of platinum group elements by dissolving waste platinum scrap from the display industry and solvent extraction, was studied. The extracted platinum solution was prepared as a precursor solution for diesel automotive exhaust gas purification catalyst and its catalytic activity was tested. The behavior of aqueous species of platinum was investigated through solution chemistry and based on the existence and behavior of these chemical species, the possibility of extraction and separation was established. By dissolving waste scrap by electrochemical method, the dissolution time of scrap was shortened and the extraction efficiency was increased. Through separation and removal of rhodium component, solvent extraction by TBP, and stripping by hydrochloric acid, Pt-Chloride-$H_2O$ solution was prepared. And then, an platinum amine complex solution through amination reaction with this solution as a raw material was prepared. The possibility of producing high-value platinum compounds from platinum group waste scrap was investigated by preparing platinum amine complex solution and then examining the catalytic activity with this amine precursor on the combustion reaction of carbon black.

Solvent Extraction for the Separation of Pd(II), Pt(IV), Ir(IV) and Rh(III) from 3 M Hydrochloric Acid Solution (3 M의 염산용액에서 팔라듐(II), 백금(IV), 이리듐(IV) 및 로듐(III)의 분리를 위한 용매추출)

  • Nguyen, Thi Hong;Lee, Man Seung
    • Resources Recycling
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    • v.26 no.3
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    • pp.26-31
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    • 2017
  • LIX 63 showed a selectivity for the extraction of Pd(II) over other PGMs, such as Pt(IV), Ir(IV) and Rh(III) from 6 M HCl solution. Moreover, HCl solution has significant effect on the oxidation-reduction reaction between Ir(IV) and LIX 63. Therefore, the applicability of employing LIX 63 for the separation of the 4 PGMs was investigated from 3 M HCl solution. From 3 M HCl solution, only Pd(II) was selectively extracted by LIX 63 and its extraction percentage was higher than from 6 M HCl solution. Extraction of the Pd(II) free raffinate with TBP led to the selective extraction of Pt(IV). After oxidation of Ir(III) with $NaClO_3$ to Ir(IV), extraction of the Pt(IV) free raffinate with Aliquat 336 selectively extracted Ir(IV). For each extraction step, optimum stripping conditions were obtained. By this process, it was possible to separate the 4 PGMs by solvent extraction from 3 M HCl solution.

Solvent Extraction of Rhodium(III) and Iridium(IV) from Hydrochloric Acid Solution (염산용액에서 로듐(III)과 이리듐(IV)의 용매추출)

  • Lee, Maseung;Lee, Jinyoung;Sun, Panpan
    • Korean Journal of Metals and Materials
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    • v.48 no.5
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    • pp.430-435
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    • 2010
  • Solvent extraction experiments of Rh(III) and Ir(IV) were performed on the HCl solution by using Alamine336 and TBP. The extraction percentage of Rh and Ir by Alamine336 was much higher than that by TBP. For the solvent extraction with Alamine336, the extraction percentage of Rh and Ir decreased with a HCl concentration. However, the extraction percentage of both metals by TBP was below 12% in our experimental range and increased with an increasing HCl concentration of up to 8 M. From the mixed solution of Ir with an excess SnCl$_{2}$, most of the tin was extracted by Alamine336 and TBP. However, the extraction percentage of Ir by Alamine336 was reduced and no iridium was extracted by TBP. The extraction behavior of Ir and Sn was investigated by scrubbing experiments on the loaded Ir with a SnCl$_{2}$ solution.

Recovery of Platinum Group Metals from the Leach Solution of Spent Automotive Catalysts by Cementation (자동차(自動車) 폐촉매(廢觸媒)의 침출액(浸出液)으로부터 시멘테이션에 의한 백금족(白金族) 금속(金屬)의 회수(回收))

  • Kim, Min-Seuk;Kim, Byung-Su;Kim, Eun-Young;Kim, Soo-Kyung;Ryu, Jae-Wook;Lee, Jae-Chun
    • Resources Recycling
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    • v.20 no.4
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    • pp.36-45
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    • 2011
  • The recovery of platinum group metals (PGMs) from the leach solution of spent auto-catalyst and the wash solution of the leach residue was investigated in the laboratory scale experiments by the cementation process using metal powders as the reductant. In this study, the effect of Al, Mg and Zn powders on the cementation process was particularly examined. Aluminum powder was selected as the most suitable reductant for the cementation of PGMs. At the cementation time of 10 minute under the aluminium stoichimetric amount of 19.3 and the reaction temperature of $50{\sim}60^{\circ}C$, the recovery of platinum group metals from the leach solution of the spent auto-catalyst was found to be 99.3%, 99.4%, 90.2% for Pt, Pd and Rh, respectively. Under the same conditions with the aluminium stoichimetric amount of 45, the recovery of platinum group metals from the wash solution of the leach residue of spent catalyst was observed to be 97%, 97% and 90% for Pt, Pd and Rh, respectively. In addition, it was possible to upgrade the platinum group metals in the precipitates obtained from the cementation process by about 10% through the removal of metal impurities by the nitric acid leaching at ambient temperature.